faricimab

faricimab

VABYSMO

6

MG

INTRAVITREAL

SOLUTION

Marketed

[ "faricimab" ]

Product Monograph

[ "Monoclonal Antibodies" ]

[ "Ophthalmic Vascular Endothelial Growth Factor (VEGF) Inhibitors" ]

[]

04cc9ef7-c02a-4e92-a655-0062674e8487

VABYSMO- faricimab injection, solution

1 Indications And Usage

1.1 Neovascular (Wet) Age-Related Macular Degeneration (Namd)

1.2 Diabetic Macular Edema (Dme)

1.3 Macular Edema Following Retinal Vein Occlusion (Rvo)

2 Dosage And Administration

2.1 General Dosing Information

For intravitreal injection. VABYSMO must be administered by a qualified physician.

VABYSMO is available as:

[see How Supplied/Storage and Handling (16)]

2.2 Neovascular (Wet) Age-Related Macular Degeneration (Namd)

The recommended dose for VABYSMO is 6 mg (0.05 mL of 120 mg/mL solution) administered by intravitreal injection every 4 weeks (approximately every 28 ± 7 days, monthly) for the first 4 doses, followed by optical coherence tomography and visual acuity evaluations 8 and 12 weeks later to inform whether to give a 6 mg dose via intravitreal injection on one of the following three regimens: 1) Weeks 28 and 44; 2) Weeks 24, 36 and 48; or 3) Weeks 20, 28, 36 and 44. Although additional efficacy was not demonstrated in most patients when VABYSMO was dosed every 4 weeks compared to every 8 weeks, some patients may need every 4 week (monthly) dosing after the first 4 doses. Patients should be assessed regularly.

2.3 Diabetic Macular Edema (Dme)

VABYSMO is recommended to be dosed by following one of these two dose regimens: 1) 6 mg (0.05 mL of 120 mg/mL solution) administered by intravitreal injection every 4 weeks (approximately every 28 days ± 7 days, monthly) for at least 4 doses. If after at least 4 doses, resolution of edema based on the central subfield thickness (CST) of the macula as measured by optical coherence tomography is achieved, then the interval of dosing may be modified by extensions of up to 4 week interval increments or reductions of up to 8 week interval increments based on CST and visual acuity evaluations; or 2) 6 mg dose of VABYSMO can be administered every 4 weeks for the first 6 doses, followed by 6 mg dose via intravitreal injection at intervals of every 8 weeks (2 months). Although additional efficacy was not demonstrated in most patients when VABYSMO was dosed every 4 weeks compared to every 8 weeks, some patients may need every 4 week (monthly) dosing after the first 4 doses. Patients should be assessed regularly.

2.4 Macular Edema Following Retinal Vein Occlusion (Rvo)

The recommended dose for VABYSMO is 6 mg (0.05 mL of 120 mg/mL solution) administered by intravitreal injection every 4 weeks (approximately every 28 ± 7 days, monthly) for 6 months.

2.5 Preparation For Administration - Prefilled Syringe

<div class="scrollingtable"><table class="Noautorules" width="90%"> <col align="left" valign="top" width="7%"/> <col align="left" valign="top" width="93%"/> <tbody class="Headless"> <tr class="Botrule"> <td align="left" colspan="2"><span class="Bold"><span class="XmChange">Before you start</span></span></td> </tr> <tr> <td align="left"><span class="XmChange"><img alt="Image" src="/dailymed/image.cfm?name=vabysmo-01.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></span></td><td align="left">Read all the instructions carefully before using VABYSMO.</td> </tr> <tr> <td align="left" colspan="2"><span class="XmChange">The VABYSMO carton includes:</span></td> </tr> <tr> <td align="left"><span class="XmChange"><img alt="Image" src="/dailymed/image.cfm?name=vabysmo-02.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></span></td><td align="left">A sterile prefilled syringe in a sealed tray. The prefilled syringe is for treatment of a single eye.</td> </tr> <tr> <td align="left"><span class="XmChange"><img alt="Image" src="/dailymed/image.cfm?name=vabysmo-03.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></span></td><td align="left" class="Botrule">A sterile injection filter needle (30-gauge × ½ inch, Extra Thin Wall) with an integrated filter in the hub. The injection filter needle is for single use only.</td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="left" class="Botrule"><span class="Bold">Only use the provided injection filter needle for the administration.</span></td> </tr> <tr> <td align="left"><span class="XmChange"><img alt="Image" src="/dailymed/image.cfm?name=vabysmo-04.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></span></td><td align="left">VABYSMO should be refrigerated at temperatures between 2°C to 8°C (36°F to 46°F).<br/> <span class="Bold">Do not</span> freeze.</td> </tr> <tr> <td align="left"><span class="XmChange"><img alt="Image" src="/dailymed/image.cfm?name=vabysmo-05.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></span></td><td align="left">Allow VABYSMO to reach room temperature, 20°C to 25°C (68°F to 77°F) before proceeding with the administration.</td> </tr> <tr> <td align="left"><span class="XmChange"><img alt="Image" src="/dailymed/image.cfm?name=vabysmo-06.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></span></td><td align="left">Prior to use, keep the sealed tray in the original carton to <span class="Bold">protect the prefilled syringe from light</span>. The prefilled syringe may be kept at room temperature in the original carton for up to <span class="Bold">24 hours</span>.</td> </tr> <tr> <td align="left"><span class="XmChange"><img alt="Image" src="/dailymed/image.cfm?name=vabysmo-07.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></span></td><td align="left">VABYSMO should be inspected visually prior to administration.</td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="left"><span class="Bold">Do not</span> use if the carton seals have been tampered with.</td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="left"><span class="Bold">Do not</span> use if the packaging, prefilled syringe, injection filter needle is expired, damaged, or have been tampered with.</td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="left"><span class="Bold">Do not</span> use if the injection filter needle is missing.</td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="left"><span class="Bold">Do not</span> remove the finger grip from the syringe.</td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="left"><span class="Bold">Do not</span> use if the syringe cap is detached from the Luer lock. </td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="left"><span class="Bold">Do not </span>use if particulates, cloudiness, or discoloration are visible. VABYSMO is a clear to opalescent and colorless to brownish-yellow liquid solution.</td> </tr> <tr> <td align="left" colspan="2"><span class="XmChange">Prefilled Syringe Description</span></td> </tr> <tr> <td align="center" colspan="2"><img alt="Figure A" src="/dailymed/image.cfm?name=vabysmo-08.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="center">Figure A</td> </tr> <tr> <td align="left" colspan="2"><span class="XmChange"><span class="Bold">Note: the dose must be set to the 0.05 mL dose mark.</span></span></td> </tr> <tr> <td align="left" colspan="2"><span class="XmChange">Use aseptic technique to carry out the following preparation steps:</span></td> </tr> <tr> <td align="left" colspan="2"><span class="XmChange"><span class="Bold">Open Tray and Remove Syringe Cap</span></span></td> </tr> <tr class="Botrule"> <td align="left"><span class="XmChange"><span class="Bold">1</span></span></td><td align="left">Peel the lid off the syringe tray and aseptically remove the prefilled syringe. </td> </tr> <tr> <td align="left"><span class="XmChange"><span class="Bold">2</span></span></td><td align="left">Hold the syringe by the white collar; snap off the syringe cap (<span class="Bold">see <a href="#figb">Figure B</a></span>).</td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="left"><span class="Bold">Do not</span> twist off the cap.</td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="center"> <p class="First"> <a name="figb"></a><img alt="Figure B" src="/dailymed/image.cfm?name=vabysmo-09.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="center">Figure B</td> </tr> <tr> <td align="left" colspan="2"><span class="XmChange"><span class="Bold">Attach Injection Filter Needle</span></span></td> </tr> <tr class="Botrule"> <td align="left"><span class="XmChange"><span class="Bold">3</span></span></td><td align="left">Aseptically remove the provided injection filter needle from its packaging.</td> </tr> <tr> <td align="left"><span class="XmChange"><span class="Bold">4</span></span></td><td align="left">Aseptically and firmly attach the injection filter needle onto the syringe Luer lock (<span class="Bold">see <a href="#figc">Figure C</a></span>).</td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="center"> <p class="First"> <a name="figc"></a><img alt="Figure C" src="/dailymed/image.cfm?name=vabysmo-10.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="center">Figure C</td> </tr> <tr> <td align="left"><span class="XmChange"><span class="Bold">5</span></span></td><td align="left">Carefully remove the needle cap by pulling it straight off.</td> </tr> <tr> <td align="left" colspan="2"><span class="XmChange"><span class="Bold">Dislodge Air Bubbles</span></span></td> </tr> <tr class="Botrule"> <td align="left"><span class="XmChange"><span class="Bold">6</span></span></td><td align="left">Hold the syringe with the injection filter needle pointing up. Check the syringe for air bubbles. </td> </tr> <tr> <td align="left"><span class="XmChange"><span class="Bold">7</span></span></td><td align="left">If there are any air bubbles, gently tap the syringe with your finger until the bubbles rise to the top (<span class="Bold">see <a href="#figd">Figure D</a></span>).</td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="center"> <p class="First"> <a name="figd"></a><img alt="Figure D" src="/dailymed/image.cfm?name=vabysmo-11.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="center">Figure D</td> </tr> <tr> <td align="left" colspan="2"><span class="XmChange"><span class="Bold">Expel Air and Adjust the Dose</span></span></td> </tr> <tr> <td align="left"><span class="XmChange"><span class="Bold">8</span></span></td><td align="left">Hold the syringe at eye level and <span class="Bold">slowly</span> push the plunger rod until the <span class="Bold">lower edge of the rubber stopper's dome</span> is aligned with the 0.05 mL dose mark (<span class="Bold">see <a href="#fige">Figure E</a></span>). This will expel the air and the excess solution and set the dose to 0.05 mL.</td> </tr> <tr> <td align="left"></td><td align="left">Ensure that the injection is given <span class="Bold">immediately</span> after preparation of the dose.</td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="center"> <p class="First"> <a name="fige"></a><img alt="Figure E" src="/dailymed/image.cfm?name=vabysmo-12.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td> </tr> <tr> <td align="left"><span class="XmChange"></span></td><td align="center">Figure E</td> </tr> </tbody> </table></div>

2.6 Preparation For Administration - Vial

<div class="scrollingtable"><table class="Noautorules" width="90%"> <col align="left" valign="top" width="7%"/> <col align="left" valign="top" width="43%"/> <col align="left" valign="top" width="50%"/> <tbody class="Headless"> <tr class="Botrule"> <td align="left" colspan="3"><span class="Bold">Before you start</span></td> </tr> <tr> <td align="left"><img alt="Image" src="/dailymed/image.cfm?name=vabysmo-13.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></td><td align="left" colspan="2">Read all the instructions carefully before using VABYSMO.</td> </tr> <tr> <td align="left"><img alt="Image" src="/dailymed/image.cfm?name=vabysmo-14.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></td><td align="left" colspan="2">The VABYSMO kit includes a glass vial and transfer filter needle. The glass vial is for a single dose only. The filter needle is for treatment of a single eye.</td> </tr> <tr> <td align="left"><img alt="Image" src="/dailymed/image.cfm?name=vabysmo-15.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></td><td align="left" colspan="2">VABYSMO should be stored refrigerated at temperatures between 2°C to 8°C (36°F to 46°F). <br/> <span class="Bold">Do not</span> freeze.<br/> <span class="Bold">Do not</span> shake.</td> </tr> <tr> <td align="left"><img alt="Image" src="/dailymed/image.cfm?name=vabysmo-16.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></td><td align="left" colspan="2">Allow VABYSMO to reach room temperature, 20°C to 25°C (68°F to 77°F) before proceeding with the administration. Keep the vial in the original carton to <span class="Bold">protect from light.</span></td> </tr> <tr> <td align="left"></td><td align="left" colspan="2">The VABYSMO vial may be kept at room temperature for up to <span class="Bold">24 hours</span>.</td> </tr> <tr> <td align="left"><img alt="Image" src="/dailymed/image.cfm?name=vabysmo-17.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></td><td align="left" colspan="2">The VABYSMO vial should be inspected visually for particulate matter and discoloration prior to administration. VABYSMO is a clear to opalescent and colorless to brownish-yellow liquid solution.<br/> <span class="Bold">Do not</span> use if particulates, cloudiness, or discoloration are visible.<br/> <span class="Bold">Do not</span> use if the packaging, vial and/or transfer filter needle are expired, damaged, or have been tampered with (see <span class="Bold"><a href="#figf">Figure F</a></span>).</td> </tr> <tr> <td align="left"></td><td align="center" colspan="2"> <p class="First"> <a name="figf"></a><img alt="Figure F" src="/dailymed/image.cfm?name=vabysmo-18.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td> </tr> <tr> <td align="left"></td><td align="center" colspan="2">Figure F</td> </tr> <tr> <td align="left" colspan="3">Use aseptic technique to carry out the preparation of the intravitreal injection.</td> </tr> <tr class="Botrule"> <td align="left"><span class="Bold">1</span></td><td align="left" colspan="2">Gather the following supplies: <ul class="Disc"> <li>One VABYSMO vial (included)</li> <li>One sterile 5-micron blunt transfer filter needle 18-gauge × 1½ inch (included)</li> <li>One sterile 1 mL Luer lock syringe with a 0.05 mL dose mark (<span class="Bold">not included</span>) <dl> <dt> </dt> <dd> <span class="Bold">Note</span> that a 30-gauge injection needle is recommended to avoid increased injection forces that could be experienced with smaller diameter needles.</dd> </dl> </li> <li>One sterile injection needle 30-gauge × ½ inch (<span class="Bold">not included</span>)</li> <li>Alcohol swab (<span class="Bold">not included</span>).</li> </ul> </td> </tr> <tr class="Botrule"> <td align="left"><span class="Bold">2</span></td><td align="left" colspan="2">To ensure all liquid settles at the bottom of the vial, place the vial upright on a flat surface (for about 1 minute) after removal from packaging (see <span class="Bold"><a href="#figg">Figure G</a></span>). Gently tap the vial with your finger (see <span class="Bold"><a href="#figh">Figure H</a></span>), as liquid may stick to the top of the vial. </td> </tr> <tr> <td align="left"></td><td align="center"> <p class="First"> <a name="figg"></a><img alt="Figure G" src="/dailymed/image.cfm?name=vabysmo-19.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td><td align="center"> <p class="First"> <a name="figh"></a><img alt="Figure H" src="/dailymed/image.cfm?name=vabysmo-20.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td> </tr> <tr class="Botrule"> <td align="left"></td><td align="center">Figure G</td><td align="center">Figure H</td> </tr> <tr> <td align="left"><span class="Bold">3</span></td><td align="left" colspan="2">Remove the flip-off cap from the vial (see <span class="Bold"><a href="#figi">Figure I</a></span>) and wipe the vial septum with an alcohol swab (see <span class="Bold"><a href="#figj">Figure J</a></span>).</td> </tr> <tr> <td align="left"></td><td align="center"> <p class="First"> <a name="figi"></a><img alt="Figure I" src="/dailymed/image.cfm?name=vabysmo-21.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td><td align="center"> <p class="First"> <a name="figj"></a><img alt="Figure J" src="/dailymed/image.cfm?name=vabysmo-22.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td> </tr> <tr class="Botrule"> <td align="left"></td><td align="center">Figure I</td><td align="center">Figure J</td> </tr> <tr> <td align="left"><span class="Bold">4</span></td><td align="left" colspan="2">Aseptically and firmly attach the included 18-gauge × 1½ inch transfer filter needle onto a 1 mL Luer lock syringe (see <span class="Bold"><a href="#figk">Figure K</a></span>).</td> </tr> <tr> <td align="left"></td><td align="center" colspan="2"> <p class="First"> <a name="figk"></a><img alt="Figure K" src="/dailymed/image.cfm?name=vabysmo-23.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td> </tr> <tr class="Botrule"> <td align="left"></td><td align="center" colspan="2">Figure K</td> </tr> <tr> <td align="left"><span class="Bold">5</span></td><td align="left" colspan="2">Using aseptic technique, push the transfer filter needle into the center of the vial septum (see <span class="Bold"><a href="#figl">Figure L</a></span>), push it all the way in, then tilt the vial slightly so that the needle touches the bottom edge of the vial (see <span class="Bold"><a href="#figm">Figure M</a></span>).</td> </tr> <tr> <td align="left"></td><td align="center"> <p class="First"> <a name="figl"></a><img alt="Figure L" src="/dailymed/image.cfm?name=vabysmo-24.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td><td align="center"> <p class="First"> <a name="figm"></a><img alt="Figure M" src="/dailymed/image.cfm?name=vabysmo-25.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td> </tr> <tr class="Botrule"> <td align="left"></td><td align="center">Figure L</td><td align="center">Figure M</td> </tr> <tr> <td align="left"><span class="Bold">6</span></td><td align="left" colspan="2">Hold the vial slightly inclined and <span class="Bold">slowly</span> withdraw all the liquid from the vial (see <span class="Bold"><a href="#fign">Figure N</a></span>). Keep the bevel of the transfer filter needle submerged in the liquid, to avoid introduction of air.</td> </tr> <tr> <td align="left"></td><td align="center" colspan="2"> <p class="First"> <a name="fign"></a><img alt="Figure N" src="/dailymed/image.cfm?name=vabysmo-26.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td> </tr> <tr class="Botrule"> <td align="left"></td><td align="center" colspan="2">Figure N</td> </tr> <tr class="Botrule"> <td align="left"><span class="Bold">7</span></td><td align="left" colspan="2">Ensure that the plunger rod is drawn sufficiently back when emptying the vial, in order to completely empty the transfer filter needle (see <span class="Bold"><a href="#fign">Figure N</a></span>).</td> </tr> <tr> <td align="left"><span class="Bold">8</span></td><td align="left" colspan="2">Disconnect the transfer filter needle from the syringe and dispose of it in accordance with local regulations. </td> </tr> <tr class="Botrule"> <td align="left"></td><td align="left" colspan="2">          <span class="Bold">Do not use the transfer filter needle for the intravitreal injection.</span></td> </tr> <tr> <td align="left"><span class="Bold">9</span></td><td align="left" colspan="2">Aseptically and firmly attach a 30-gauge × ½ inch injection needle onto the Luer lock syringe (see <span class="Bold"><a href="#figo">Figure O</a></span>).</td> </tr> <tr> <td align="left"></td><td align="center" colspan="2"> <p class="First"> <a name="figo"></a><img alt="Figure O" src="/dailymed/image.cfm?name=vabysmo-27.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td> </tr> <tr class="Botrule"> <td align="left"></td><td align="center" colspan="2">Figure O</td> </tr> <tr class="Botrule"> <td align="left"><span class="Bold">10</span></td><td align="left" colspan="2">Carefully remove the plastic needle shield from the needle by pulling it straight off.</td> </tr> <tr> <td align="left"><span class="Bold">11</span></td><td align="left" colspan="2">To check for air bubbles, hold the syringe with the needle pointing up. If there are any air bubbles, gently tap the syringe with your finger until the bubbles rise to the top (see <span class="Bold"><a href="#figp">Figure P</a></span>).</td> </tr> <tr> <td align="left"></td><td align="center" colspan="2"> <p class="First"> <a name="figp"></a><img alt="Figure P" src="/dailymed/image.cfm?name=vabysmo-28.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td> </tr> <tr class="Botrule"> <td align="left"></td><td align="center" colspan="2">Figure P</td> </tr> <tr> <td align="left"><span class="Bold">12</span></td><td align="left" colspan="2">Carefully expel the air from the syringe and needle, and <span class="Bold">slowly</span> depress the plunger to align the rubber stopper tip to the 0.05 mL dose mark. The syringe is ready for the injection (see <span class="Bold"><a href="#figq">Figure Q</a></span>). Ensure that the injection is given <span class="Bold">immediately</span> after preparation of the dose.</td> </tr> <tr> <td align="left"></td><td align="center" colspan="2"> <p class="First"> <a name="figq"></a><img alt="Figure Q" src="/dailymed/image.cfm?name=vabysmo-29.jpg&amp;setid=04cc9ef7-c02a-4e92-a655-0062674e8487"/></p> </td> </tr> <tr> <td align="left"></td><td align="center" colspan="2">Figure Q</td> </tr> </tbody> </table></div>

2.7 Injection Procedure

The intravitreal injection procedure must be carried out under aseptic conditions, which includes the use of surgical hand disinfection, sterile gloves, a sterile drape and a sterile eyelid speculum (or equivalent), and the availability of sterile paracentesis equipment (if required). Adequate anesthesia and a broad-spectrum microbicide should be administered prior to the injection.

Inject slowly until the rubber stopper reaches the end of the syringe to deliver the volume of 0.05 mL.

Note for the prefilled syringe: Do not recap or detach the injection filter needle from the syringe.

Any unused drug product or waste material should be disposed of in accordance with local regulations.

Immediately following the intravitreal injection, patients should be monitored for elevation in intraocular pressure. Appropriate monitoring may consist of a check for perfusion of the optic nerve head or tonometry. If required, a sterile paracentesis needle should be available. Following intravitreal injection, patients should be instructed to report any symptoms suggestive of endophthalmitis or retinal detachment (e.g., vision loss, eye pain, redness of the eye, photophobia, blurring of vision) without delay [see Patient Counseling Information (17)].

Each syringe should only be used for the treatment of a single eye. If the contralateral eye requires treatment, a new syringe should be used and the sterile field, syringe, gloves, drapes, eyelid speculum, filter, and injection needles should be changed before VABYSMO is administered to the other eye.

3 Dosage Forms And Strengths

VABYSMO is a clear to opalescent, colorless to brownish-yellow solution available as:

{ "type": "p", "children": [], "text": "VABYSMO is a clear to opalescent, colorless to brownish-yellow solution available as:" }

{ "type": "ul", "children": [ "Injection: 6 mg (0.05 mL of 120 mg/mL solution) in a single-dose prefilled glass syringe", "Injection: 6 mg (0.05 mL of 120 mg/mL solution) in a single-dose glass vial " ], "text": "" }

4 Contraindications

4.1 Ocular Or Periocular Infections

VABYSMO is contraindicated in patients with ocular or periocular infections.

4.2 Active Intraocular Inflammation

VABYSMO is contraindicated in patients with active intraocular inflammation.

4.3 Hypersensitivity

VABYSMO is contraindicated in patients with known hypersensitivity to faricimab or any of the excipients in VABYSMO. Hypersensitivity reactions may manifest as rash, pruritus, urticaria, erythema, or severe intraocular inflammation.

5 Warnings And Precautions

5.1 Endophthalmitis And Retinal Detachments

Intravitreal injections, including Vabysmo, have been associated with endophthalmitis and retinal detachments [see Adverse Reactions (6.1)]. Proper aseptic injection techniques must always be used when administering VABYSMO. Patients should be instructed to report any signs or symptoms suggestive of endophthalmitis or retinal detachment without delay, to permit prompt and appropriate management [see Dosage and Administration (2.6) and Patient Counseling Information (17)].

5.2 Increase In Intraocular Pressure

Transient increases in intraocular pressure (IOP) have been seen within 60 minutes of intravitreal injection, including with VABYSMO [see Adverse Reactions (6.1)]. IOP and the perfusion of the optic nerve head should be monitored and managed appropriately [see Dosage and Administration (2.6)].

5.3 Thromboembolic Events

Although there was a low rate of arterial thromboembolic events (ATEs) observed in the VABYSMO clinical trials, there is a potential risk of ATEs following intravitreal use of VEGF inhibitors. ATEs are defined as nonfatal stroke, nonfatal myocardial infarction, or vascular death (including deaths of unknown cause).

The incidence of reported ATEs in the nAMD studies during the first year was 1% (7 out of 664) in patients treated with VABYSMO compared with 1% (6 out of 662) in patients treated with aflibercept [see Clinical Studies (14.1)].

The incidence of reported ATEs in the DME studies from baseline to week 100 was 5% (64 out of 1,262) in patients treated with VABYSMO compared with 5% (32 out of 625) in patients treated with aflibercept [see Clinical Studies (14.2)].

The incidence of reported ATEs in the RVO studies during the first 6 months was 1.1% (7 out of 641) in patients treated with VABYSMO compared with 1.4% (9 out of 635) in patients treated with aflibercept [see Clinical Studies (14.3)].

5.4 Retinal Vasculitis And/Or Retinal Vascular Occlusion

Retinal vasculitis and/or retinal vascular occlusion, typically in the presence of intraocular inflammation, have been reported with the use of VABYSMO [see Adverse Reactions (6.2)]. Discontinue treatment with VABYSMO in patients who develop these events. Patients should be instructed to report any change in vision without delay.

6 Adverse Reactions

6.1 Clinical Trials Experience

Because clinical trials are conducted under widely varying conditions, adverse reaction rates observed in the clinical trials of a drug cannot be directly compared to rates in other clinical trials of the same or another drug and may not reflect the rates observed in practice.

The data described below reflect exposure to VABYSMO in 2,567 patients, which constituted the safety population in six Phase 3 studies [see Clinical Studies (14.1, 14.2, 14.3)].

<div class="scrollingtable"><table width="90%"> <caption> <span>Table 1: Common Adverse Reactions (≥ 1%)</span> </caption> <col align="left" valign="top" width="22%"/> <col align="center" valign="top" width="13%"/> <col align="center" valign="top" width="13%"/> <col align="center" valign="top" width="13%"/> <col align="center" valign="top" width="13%"/> <col align="center" valign="top" width="13%"/> <col align="center" valign="top" width="13%"/> <thead> <tr class="Botrule First"> <th align="left" class="Lrule Rrule" rowspan="2">Adverse Reactions</th><th align="center" class="Rrule" colspan="3">VABYSMO</th><th align="center" class="Rrule" colspan="3">Active Control (aflibercept)</th> </tr> <tr class="Last"> <th align="center" class="Rrule">AMD<br/>N=664</th><th align="center" class="Rrule">DME<br/>N=1,262</th><th align="center" class="Rrule">RVO<br/>N=641</th><th align="center" class="Rrule">AMD<br/>N=662</th><th align="center" class="Rrule">DME<br/>N=625</th><th align="center" class="Rrule">RVO<br/>N=635</th> </tr> </thead> <tfoot> <tr> <td align="left" colspan="7"> <dl class="Footnote"> <dt> <a href="#footnote-reference-1" name="footnote-1">*</a> </dt> <dd>AMD only</dd> <dt> <a href="#footnote-reference-2" name="footnote-2">†</a> </dt> <dd>Including iridocyclitis, iritis, uveitis, vitritis</dd> </dl> </td> </tr> </tfoot> <tbody> <tr class="Botrule First"> <td align="left" class="Lrule Rrule">Cataract</td><td align="center" class="Rrule">3%</td><td align="center" class="Rrule">15%</td><td align="center" class="Rrule">&lt; 1%</td><td align="center" class="Rrule">2%</td><td align="center" class="Rrule">12%</td><td align="center" class="Rrule">1%</td> </tr> <tr class="Botrule"> <td align="left" class="Lrule Rrule">Conjunctival hemorrhage</td><td align="center" class="Rrule">7%</td><td align="center" class="Rrule">8%</td><td align="center" class="Rrule">3%</td><td align="center" class="Rrule">8%</td><td align="center" class="Rrule">7%</td><td align="center" class="Rrule">4%</td> </tr> <tr class="Botrule"> <td align="left" class="Lrule Rrule">Vitreous detachment</td><td align="center" class="Rrule">3%</td><td align="center" class="Rrule">5%</td><td align="center" class="Rrule">2%</td><td align="center" class="Rrule">3%</td><td align="center" class="Rrule">4%</td><td align="center" class="Rrule">2%</td> </tr> <tr class="Botrule"> <td align="left" class="Lrule Rrule">Vitreous floaters</td><td align="center" class="Rrule">3%</td><td align="center" class="Rrule">4%</td><td align="center" class="Rrule">2%</td><td align="center" class="Rrule">2%</td><td align="center" class="Rrule">3%</td><td align="center" class="Rrule">2%</td> </tr> <tr class="Botrule"> <td align="left" class="Lrule Rrule">Retinal pigment epithelial tear<a class="Sup" href="#footnote-1" name="footnote-reference-1">*</a></td><td align="center" class="Rrule">3%</td><td align="center" class="Rrule"></td><td align="center" class="Rrule"></td><td align="center" class="Rrule">1%</td><td align="center" class="Rrule"></td><td align="center" class="Rrule"></td> </tr> <tr class="Botrule"> <td align="left" class="Lrule Rrule">Intraocular pressure increased</td><td align="center" class="Rrule">3%</td><td align="center" class="Rrule">4%</td><td align="center" class="Rrule">1%</td><td align="center" class="Rrule">2%</td><td align="center" class="Rrule">3%</td><td align="center" class="Rrule">3%</td> </tr> <tr class="Botrule"> <td align="left" class="Lrule Rrule">Eye pain</td><td align="center" class="Rrule">3%</td><td align="center" class="Rrule">3%</td><td align="center" class="Rrule">&lt; 1%</td><td align="center" class="Rrule">3%</td><td align="center" class="Rrule">3%</td><td align="center" class="Rrule">&lt; 1%</td> </tr> <tr class="Botrule"> <td align="left" class="Lrule Rrule">Intraocular inflammation<a class="Sup" href="#footnote-2" name="footnote-reference-2">†</a></td><td align="center" class="Rrule">2%</td><td align="center" class="Rrule">1%</td><td align="center" class="Rrule">1%</td><td align="center" class="Rrule">1%</td><td align="center" class="Rrule">1%</td><td align="center" class="Rrule">&lt; 1%</td> </tr> <tr class="Botrule"> <td align="left" class="Lrule Rrule">Eye irritation</td><td align="center" class="Rrule">1%</td><td align="center" class="Rrule">&lt; 1%</td><td align="center" class="Rrule">&lt; 1%</td><td align="center" class="Rrule">&lt; 1%</td><td align="center" class="Rrule">1%</td><td align="center" class="Rrule">&lt; 1%</td> </tr> <tr class="Botrule"> <td align="left" class="Lrule Rrule">Lacrimation increased</td><td align="center" class="Rrule">1%</td><td align="center" class="Rrule">1%</td><td align="center" class="Rrule">0</td><td align="center" class="Rrule">1%</td><td align="center" class="Rrule">&lt; 1%</td><td align="center" class="Rrule">&lt; 1%</td> </tr> <tr class="Botrule Last"> <td align="left" class="Lrule Rrule">Ocular discomfort</td><td align="center" class="Rrule">1%</td><td align="center" class="Rrule">1%</td><td align="center" class="Rrule">&lt; 1%</td><td align="center" class="Rrule">&lt; 1%</td><td align="center" class="Rrule">&lt; 1%</td><td align="center" class="Rrule">&lt; 1%</td> </tr> </tbody> </table></div>

Less common adverse reactions reported in < 1% of the patients treated with VABYSMO were corneal abrasion, eye pruritus, ocular hyperemia, blurred vision, sensation of foreign body, endophthalmitis, conjunctival hyperaemia, visual acuity reduced, visual acuity reduced transiently, vitreous hemorrhage, retinal tear and rhegmatogenous retinal detachment.

6.2 Postmarketing Experience

The following adverse reactions have been identified during postapproval use of VABYSMO. Because these reactions are reported voluntarily from a population of uncertain size, it is not always possible to reliably estimate their frequency or establish a causal relationship to drug exposure.

Eye disorders: retinal vasculitis with or without retinal vascular occlusion.

8 Use In Specific Populations

8.1 Pregnancy

Risk Summary

There are no adequate and well-controlled studies of VABYSMO administration in pregnant women.

Administration of VABYSMO to pregnant monkeys throughout the period of organogenesis resulted in an increased incidence of abortions at intravenous (IV) doses 158 times the human exposure (based on Cmax) of the maximum recommended human dose [see Animal Data]. Based on the mechanism of action of VEGF and Ang-2 inhibitors, there is a potential risk to female reproductive capacity, and to embryo-fetal development. VABYSMO should not be used during pregnancy unless the potential benefit to the patient outweighs the potential risk to the fetus.

All pregnancies have a background risk of birth defect, loss, and other adverse outcomes. The background risk of major birth defects and miscarriage for the indicated population is unknown. In the U.S. general population, the estimated background risk of major birth defects is 2%-4% and of miscarriage is 15%-20% of clinically recognized pregnancies.

Data

Animal Data

An embryo fetal developmental toxicity study was performed on pregnant cynomolgus monkeys. Pregnant animals received 5 weekly IV injections of VABYSMO starting on day 20 of gestation at 1 or 3 mg/kg. A non-dose dependent increase in pregnancy loss (abortions) was observed at both doses evaluated. Serum exposure (Cmax) in pregnant monkeys at the low dose of 1 mg/kg was 158 times the human exposure at the maximum recommended intravitreal dose of 6 mg once every 4 weeks. A no observed adverse effect level (NOAEL) was not identified in this study.

8.2 Lactation

Risk Summary

There is no information regarding the presence of faricimab in human milk, the effects of the drug on the breastfed infant, or the effects of the drug on milk production. Many drugs are transferred in human milk with the potential for absorption and adverse reactions in the breastfed child.

The developmental and health benefits of breastfeeding should be considered along with the mother's clinical need for VABYSMO and any potential adverse effects on the breastfed child from VABYSMO.

8.3 Females And Males Of Reproductive Potential

Contraception

Females of reproductive potential are advised to use effective contraception prior to the initial dose, during treatment and for at least 3 months following the last dose of VABYSMO.

Infertility

No studies on the effects of faricimab on human fertility have been conducted and it is not known whether faricimab can affect reproduction capacity. Based on the mechanism of action, treatment with VABYSMO may pose a risk to reproductive capacity.

8.4 Pediatric Use

The safety and efficacy of VABYSMO in pediatric patients have not been established.

8.5 Geriatric Use

In the six clinical studies, approximately 58% (1,496/2,571) of patients randomized to treatment with VABYSMO were ≥ 65 years of age. No significant differences in efficacy or safety of faricimab were seen with increasing age in these studies. No dose adjustment is required in patients 65 years and above.

11 Description

Faricimab-svoa is a humanized bispecific immunoglobulin G1 (IgG1) antibody that binds both vascular endothelial growth factor A (VEGF-A) and angiopoietin-2 (Ang-2). The fragment crystallizable (Fc) region of faricimab was engineered by selected point mutations to abolish binding interactions with Fcγ and FcRn receptors. Faricimab-svoa has a total molecular weight of approximately 149 kDa and is produced by recombinant DNA technology using mammalian Chinese Hamster Ovary (CHO) cell culture.

{ "type": "p", "children": [], "text": "Faricimab-svoa is a humanized bispecific immunoglobulin G1 (IgG1) antibody that binds both vascular endothelial growth factor A (VEGF-A) and angiopoietin-2 (Ang-2). The fragment crystallizable (Fc) region of faricimab was engineered by selected point mutations to abolish binding interactions with Fcγ and FcRn receptors. Faricimab-svoa has a total molecular weight of approximately 149 kDa and is produced by recombinant DNA technology using mammalian Chinese Hamster Ovary (CHO) cell culture." }

VABYSMO (faricimab-svoa) injection is a sterile, clear to opalescent, colorless to brownish-yellow solution in a single-dose prefilled glass syringe or glass vial for intravitreal administration. Each single-dose prefilled syringe or single-dose vial is designed to deliver 0.05 mL (50 microliters) of solution containing 6 mg faricimab-svoa, L-histidine (155 mcg), L-methionine (52.2 mcg), polysorbate 20 (20 mcg), sodium chloride (73.1 mcg), D-sucrose (2.74 mg) and Water for Injection, adjusted to pH 5.5 with acetic acid. The product does not contain an anti-microbial preservative.

{ "type": "p", "children": [], "text": "VABYSMO (faricimab-svoa) injection is a sterile, clear to opalescent, colorless to brownish-yellow solution in a single-dose prefilled glass syringe or glass vial for intravitreal administration. Each single-dose prefilled syringe or single-dose vial is designed to deliver 0.05 mL (50 microliters) of solution containing 6 mg faricimab-svoa, L-histidine (155 mcg), L-methionine (52.2 mcg), polysorbate 20 (20 mcg), sodium chloride (73.1 mcg), D-sucrose (2.74 mg) and Water for Injection, adjusted to pH 5.5 with acetic acid. The product does not contain an anti-microbial preservative." }

12 Clinical Pharmacology

12.1 Mechanism Of Action

Faricimab is a humanized bispecific antibody that acts through inhibition of two pathways by binding to VEGF-A and Ang-2. By inhibiting VEGF-A, faricimab suppresses endothelial cell proliferation, neovascularization and vascular permeability. By inhibiting Ang-2, faricimab is thought to promote vascular stability and desensitize blood vessels to the effects of VEGF-A. Ang-2 levels are increased in some patients with nAMD, DME, and RVO. The contribution of Ang-2 inhibition to the treatment effect and clinical response for nAMD, DME, and RVO has yet to be established.

12.2 Pharmacodynamics

Increased retinal thickness, assessed by optical coherence tomography (OCT), is associated with nAMD, DME and macular edema following RVO. Leakage of blood and fluid from choroidal neovascularization, assessed by fluorescein angiography, is associated with nAMD. Reductions in CST were observed across all treatment arms throughout the six Phase 3 studies in nAMD, DME, and RVO.

12.3 Pharmacokinetics

Absorption/Distribution

Maximum faricimab plasma concentrations (Cmax) are estimated to occur approximately 2 days post-dose. Mean (±SD) free faricimab (unbound to VEGF-A and Ang-2) plasma Cmax are estimated to be 0.23 (0.07) mcg/mL and 0.22 (0.07) mcg/mL in nAMD and in DME patients, respectively. After repeated intravitreal administrations, mean plasma free faricimab trough concentrations are predicted to be 0.002-0.003 mcg/mL for every 8 weeks (Q8W) dosing and 0.021-0.029 mcg/mL for every 4 weeks (Q4W) dosing. Although not directly measured in the vitreous, no accumulation of faricimab is expected in the vitreous and no accumulation has been observed in plasma when faricimab has been administered as repeat doses in the vitreous.

Metabolism/Elimination

Metabolism and elimination of faricimab has not been fully characterized. Faricimab is expected to be catabolized in lysosomes to small peptides and amino acids, which may be excreted renally, in a similar manner to the elimination of endogenous IgG. The estimated mean apparent systemic half-life of faricimab is approximately 7.5 days.

Specific Populations

The systemic pharmacokinetics of faricimab were not influenced by gender, race, or mild to severe renal impairment (i.e., estimated normalized creatinine clearance by Cockroft-Gault equation: 15 to 89 mL/min/1.73 m2). The effect of severe renal impairment or any degree of hepatic impairment on the pharmacokinetics of VABYSMO is unknown. No special dosage modification is required for any of the populations that have been studied (e.g., elderly, gender, race).

Population pharmacokinetic analysis indicated that the pharmacokinetics of faricimab are comparable in nAMD, DME, and RVO patients.

12.6 Immunogenicity

The immunogenicity of VABYSMO was evaluated in plasma samples. The immunogenicity data reflect the percentage of patients whose test results were considered positive for antibodies to VABYSMO in immunoassays. The detection of an immune response is highly dependent on the sensitivity and specificity of the assays used, sample handling, timing of sample collection, concomitant medications, and underlying disease. For these reasons, comparison of the incidence of antibodies to VABYSMO with the incidence of antibodies to other products may be misleading.

There is a potential for an immune response in patients treated with VABYSMO. In the nAMD, DME, and RVO studies, the pre-treatment incidence of anti-faricimab antibodies was approximately 0.8 to 1.8%. After initiation of dosing, the incidence of anti-faricimab antibodies was approximately 8% to 10.4% in patients treated with VABYSMO across studies. As with all therapeutic proteins, there is a potential for immunogenicity with VABYSMO.

13 Nonclinical Toxicology

13.1 Carcinogenesis, Mutagenesis, Impairment Of Fertility

No carcinogenicity or mutagenicity data are available for VABYSMO injection in animals or humans.

Based on the anti-VEGF and Ang-2 mechanisms of action, treatment with VABYSMO may pose a risk to reproductive capacity [see Females and Males of Reproductive Potential (8.3)].

14 Clinical Studies

14.1 Neovascular (Wet) Age-Related Macular Degeneration (Namd)

The safety and efficacy of VABYSMO were assessed in two randomized, multi-center, double-masked, active comparator-controlled, 2-year studies (TENAYA – NCT03823287 and LUCERNE – NCT03823300) in patients with nAMD.

A total of 1,329 newly diagnosed, treatment-naïve patients were enrolled in these studies, and 664 patients received at least one dose of VABYSMO. Patient ages ranged from 50 to 99 with a mean of 75.9 years. The studies were identically designed two year studies. Patients were randomized in a 1:1 ratio to one of two treatment arms: 1) aflibercept 2 mg administered fixed every 8 weeks (Q8W) after three initial monthly doses; and VABYSMO 6 mg (0.05 mL of 120 mg/mL solution) administered by intravitreal injection every 4 weeks (approximately every 28 ± 7 days, monthly) for the first 4 doses, followed by optical coherence tomography and visual acuity evaluations 8 and 12 weeks later to determine whether to give a 6 mg (0.05 mL of 120 mg/mL solution) dose via intravitreal injection on one of the following three regimens: 1) Weeks 28 and 44; (also referred to as Q16W dosing); 2) Weeks 24, 36 and 48 (also referred to as Q12W dosing); or 3) Weeks 20, 28, 36 and 44 (also referred to as Q8W dosing). However, the utility of these criteria to guide dosing intervals has not been established.

At week 48, after 4 initial monthly doses in the VABYSMO arm, 45% of patients received the Weeks 28 and 44 dosing, 33% of patients received the Weeks 24, 36 and 48 dosing, and the remaining 22% of patients received dosing every 8 weeks. These percentages are reflective of what happened within the conduct of these trials and indicate that some patients did well on two (2) doses spaced 16 weeks apart, or three (3) doses spaced 12 weeks apart, but the percentages may not be generalizable to a broader nAMD population for a variety of reasons. The inclusion/exclusion criteria limited enrollment to a select subset of treatment-naïve, newly diagnosed nAMD patients and there is no empirical data that a similar magnitude would be observed if eligibility criteria allowed for broader enrollment. The disease activity criteria, which was instrumental in determining dose frequency, is unvalidated. Stricter criteria would have changed how patients were treated resulting in different percentages of subjects in each dose interval cohort. There was not a similarly dosed aflibercept arm for comparison, which makes the percentages difficult to interpret.

Both studies demonstrated non-inferiority to the comparator control (aflibercept) at the primary endpoint, defined as the mean change from baseline in Best Corrected Visual Acuity (BCVA) when averaged over the week 40, 44, and 48 visits and measured by the Early Treatment Diabetic Retinopathy Study (ETDRS) letter chart. The primary endpoint analysis was a non- inferiority comparison for the mean change in BCVA between the aflibercept and the VABYSMO arm. The lower bound of the 95% confidence interval for the mean change in BCVA could not be lower than minus 4 letters to declare non-inferiority. In both studies, VABYSMO treated patients had a non-inferior mean change from baseline in BCVA compared to patients treated with aflibercept. Detailed results of both studies are shown in Table 2, Figure 1, and Figure 2 below. The clinical efficacy for the second year of the study has not been reviewed.

<div class="scrollingtable"><table width="90%"> <caption> <span>Table 2: Primary Endpoint Results<a class="Sup" href="#footnote-3" name="footnote-reference-3">*</a> in the TENAYA and LUCERNE Studies</span> </caption> <col align="left" valign="top" width="20%"/> <col align="center" valign="top" width="20%"/> <col align="center" valign="top" width="20%"/> <col align="center" valign="top" width="20%"/> <col align="center" valign="top" width="20%"/> <thead> <tr class="Botrule First"> <th align="left" class="Lrule Rrule" rowspan="2"></th><th align="center" class="Rrule" colspan="2">TENAYA</th><th align="center" class="Rrule" colspan="2">LUCERNE</th> </tr> <tr class="Last"> <th align="center" class="Rrule">VABYSMO<br/> N = 334</th><th align="center" class="Rrule">Aflibercept<br/> N = 337</th><th align="center" class="Rrule">VABYSMO<br/> N = 331</th><th align="center" class="Rrule">Aflibercept<br/> N = 327</th> </tr> </thead> <tfoot> <tr class="First"> <td align="left" colspan="5">BCVA: Best Corrected Visual Acuity</td> </tr> <tr> <td align="left" colspan="5">ETDRS: Early Treatment Diabetic Retinopathy Study</td> </tr> <tr> <td align="left" colspan="5">CI: Confidence Interval</td> </tr> <tr class="Last"> <td align="left" colspan="5">LS: Least Square</td> </tr> <tr> <td align="left" colspan="5"> <dl class="Footnote"> <dt> <a href="#footnote-reference-3" name="footnote-3">*</a> </dt> <dd>Average of weeks 40, 44 and 48</dd> </dl> </td> </tr> </tfoot> <tbody> <tr class="Botrule First"> <td align="left" class="Lrule Rrule">Mean change in BCVA as measured by ETDRS letter score from baseline <br/>(95% CI)</td><td align="center" class="Rrule">5.8<br/> (4.6, 7.1)</td><td align="center" class="Rrule">5.1<br/> (3.9, 6.4)</td><td align="center" class="Rrule">6.6<br/> (5.3, 7.8)</td><td align="center" class="Rrule">6.6<br/> (5.3, 7.8)</td> </tr> <tr class="Botrule Last"> <td align="left" class="Lrule Rrule">Difference in LS mean <br/>(95% CI)</td><td align="center" class="Rrule">0.7<br/> (-1.1, 2.5)</td><td align="center" class="Rrule"></td><td align="center" class="Rrule">0.0<br/> (-1.7, 1.8)</td><td align="center" class="Rrule"></td> </tr> </tbody> </table></div>

Figure 1: Mean Change in Visual Acuity from Baseline to Week 48 in TENAYA

Figure 2: Mean Change in Visual Acuity from Baseline to Week 48 in LUCERNE

Treatment effects in evaluable subgroups (e.g., age, gender, race, baseline visual acuity) in each study were consistent with the results in the overall population.

14.2 Diabetic Macular Edema (Dme)

The safety and efficacy of VABYSMO were assessed in two randomized, multi-center, double-masked, active comparator-controlled 2-year studies (YOSEMITE – NCT03622580 and RHINE – NCT03622593) in patients with DME.

A total of 1,891 diabetic patients were enrolled in the two studies with a total of 1,262 patients treated with at least one dose of VABYSMO. Patient ages ranged from 24 to 91 with a mean of 62.2 years. The overall population included both anti-VEGF naïve patients (78%) and patients who had been previously treated with a VEGF inhibitor prior to study participation (22%).

The studies were identically designed two year studies. Patients were randomized in a 1:1:1 ratio to one of three treatment regimens: 1) aflibercept Q8W, patients received fixed aflibercept 2 mg administered every 8 weeks (Q8W) after the first five monthly doses; 2) VABYSMO Q8W, patients received fixed VABYSMO 6 mg administered Q8W after the first six monthly doses; and 3) VABYSMO Variable, patients received VABYSMO 6 mg administered every 4 weeks for at least 4 doses and until the central subfield thickness (CST) of the macula measured by optical coherence tomography was less than approximately 325 microns, then the interval of dosing was modified by up to 4 week interval extensions or reductions of up to 8 week interval increments based on CST and visual acuity disease activity criteria at study drug dosing visits.

After 4 initial monthly doses, the patients in the VABYSMO Variable arm received between a minimum of 1 and a maximum of 21 total injections (median of 7 injections) through Week 96 inclusive. At Week 56, 32% of patients had completed at least one Q12W interval followed by one full Q16W interval. Seventeen percent (17%) of patients were treated on Q8W and/or Q4W dosing intervals through Week 56 (7% only on Q4W). These percentages are reflective of what happened within the conduct of these trials, but the percentages may not be generalizable to a broader DME population.

The inclusion/exclusion criteria limited enrollment to a select subset of DME patients and there is no empirical data that a similar magnitude would be observed if eligibility criteria allowed for broader enrollment. The disease activity criteria, which were instrumental in determining dose frequency, are unvalidated. Different criteria would have changed how patients were treated resulting in different percentages of subjects in each dose interval cohort. There was not a similarly dosed aflibercept arm for comparison which makes the percentages difficult to interpret.

Both studies demonstrated non-inferiority to the comparator control (aflibercept) at the primary endpoint, defined as the mean change from baseline in BCVA at year 1 (average of the Week 48, 52, and 56 visits), measured by the ETDRS Letter Score. The primary endpoint analysis was a non-inferiority comparison for the mean change in BCVA between the aflibercept and VABYSMO arms. The lower bound of the 97.5% confidence interval for the mean change in BCVA could not be lower than minus 4 letters to declare non-inferiority. In both studies, VABYSMO Q8W and VABYSMO Variable treated patients had a non-inferior mean change from baseline in BCVA to the patients treated with aflibercept Q8W at the year 1 primary endpoint. Detailed results of both studies are shown in Table 3, Figure 3, and Figure 4 below.

<div class="scrollingtable"><table width="95%"> <caption> <span>Table 3: Efficacy Results at Year 1<a class="Sup" href="#footnote-4" name="footnote-reference-4">*</a> and at Year 2<a class="Sup" href="#footnote-5" name="footnote-reference-5">†</a> in the YOSEMITE and RHINE Studies</span> </caption> <col align="left" valign="top" width="22%"/> <col align="center" valign="top" width="7%"/> <col align="center" valign="top" width="6%"/> <col align="center" valign="top" width="7%"/> <col align="center" valign="top" width="6%"/> <col align="center" valign="top" width="7%"/> <col align="center" valign="top" width="6%"/> <col align="center" valign="top" width="7%"/> <col align="center" valign="top" width="6%"/> <col align="center" valign="top" width="7%"/> <col align="center" valign="top" width="6%"/> <col align="center" valign="top" width="7%"/> <col align="center" valign="top" width="6%"/> <thead> <tr class="Botrule First"> <th align="left" class="Lrule Rrule" rowspan="3"></th><th align="center" class="Rrule" colspan="6">YOSEMITE</th><th align="center" class="Rrule" colspan="6">RHINE</th> </tr> <tr class="Botrule"> <th align="center" class="Rrule" colspan="3">Year 1</th><th align="center" class="Rrule" colspan="3">Year 2</th><th align="center" class="Rrule" colspan="3">Year 1</th><th align="center" class="Rrule" colspan="3">Year 2</th> </tr> <tr class="Botrule Last"> <th align="center" class="Rrule">VABYSMO <br/>Q8W<br/> N = 315</th><th align="center" class="Rrule">VABYSMO <br/>Variable<br/> N = 313</th><th align="center" class="Rrule">Aflibercept <br/>Q8W<br/> N = 312</th><th align="center" class="Rrule">VABYSMO Q8W<br/>N = 262</th><th align="center" class="Rrule">VABYSMO Variable<br/>N = 270</th><th align="center" class="Rrule">Aflibercept Q8W<br/>N = 259</th><th align="center" class="Rrule">VABYSMO<br/> Q8W<br/> N = 317</th><th align="center" class="Rrule">VABYSMO <br/>Variable<br/> N = 319</th><th align="center" class="Rrule">Aflibercept <br/>Q8W<br/> N = 315</th><th align="center" class="Rrule">VABYSMO Q8W<br/>N = 259</th><th align="center" class="Rrule">VABYSMO Variable<br/>N = 282</th><th align="center" class="Rrule">Aflibercept Q8W<br/>N = 254</th> </tr> </thead> <tfoot> <tr class="First"> <td align="left" colspan="13">BCVA: Best Corrected Visual Acuity</td> </tr> <tr> <td align="left" colspan="13">ETDRS: Early Treatment Diabetic Retinopathy Study</td> </tr> <tr> <td align="left" colspan="13">CI: Confidence Interval</td> </tr> <tr class="Last"> <td align="left" colspan="13">LS: Least Square</td> </tr> <tr> <td align="left" colspan="13"> <dl class="Footnote"> <dt> <a href="#footnote-reference-4" name="footnote-4">*</a> </dt> <dd>Average of Weeks 48, 52, 56 </dd> <dt> <a href="#footnote-reference-5" name="footnote-5">†</a> </dt> <dd>Average of Weeks 92, 96, 100</dd> <dt> <a href="#footnote-reference-6" name="footnote-6">‡</a> </dt> <dd>A non-inferiority margin was not available for year 2</dd> </dl> </td> </tr> </tfoot> <tbody> <tr class="Botrule First"> <td align="left" class="Lrule Rrule">Mean change in BCVA as measured by ETDRS letter score from baseline <br/>(97.5% CI year 1 and 95% CI year 2)</td><td align="center" class="Rrule">10.7<br/> (9.4, 12.0)</td><td align="center" class="Rrule">11.6<br/> (10.3, 12.9)</td><td align="center" class="Rrule">10.9<br/> (9.6, 12.2)</td><td align="center" class="Rrule">10.7<br/>(9.4, 12.1)</td><td align="center" class="Rrule">10.7<br/>(9.4, 12.1)</td><td align="center" class="Rrule">11.4<br/>(10.0, 12.7)</td><td align="center" class="Rrule">11.8<br/> (10.6, 13.0)</td><td align="center" class="Rrule">10.8<br/> (9.6, 11.9)</td><td align="center" class="Rrule">10.3<br/> (9.1, 11.4)</td><td align="center" class="Rrule">10.9<br/>(9.5, 12.3)</td><td align="center" class="Rrule">10.1<br/>(8.7, 11.5)</td><td align="center" class="Rrule">9.4<br/>(7.9, 10.8)</td> </tr> <tr class="Botrule Last"> <td align="left" class="Lrule Rrule">Difference in LS mean <br/>(97.5% CI year 1 and 95% CI year 2)</td><td align="center" class="Rrule">-0.2<br/> (-2.0, 1.6)</td><td align="center" class="Rrule">0.7<br/> (-1.1, 2.5)</td><td align="center" class="Rrule"></td><td align="center" class="Rrule">-0.7<a class="Sup" href="#footnote-6" name="footnote-reference-6">‡</a></td><td align="center" class="Rrule">-0.7<a class="Sup" href="#footnote-6">‡</a></td><td align="center" class="Rrule"></td><td align="center" class="Rrule">1.5<br/> (-0.1, 3.2)</td><td align="center" class="Rrule">0.5<br/> (-1.1, 2.1)</td><td align="center" class="Rrule"></td><td align="center" class="Rrule">1.5<a class="Sup" href="#footnote-6">‡</a></td><td align="center" class="Rrule">0.7<a class="Sup" href="#footnote-6">‡</a></td><td align="center" class="Rrule"></td> </tr> </tbody> </table></div>

Figure 3: Mean Change in Visual Acuity from Baseline to Year 2 (Week 100) in YOSEMITE

Figure 4: Mean Change in Visual Acuity from Baseline to Year 2 (Week 100) in RHINE

Treatment effects in the subgroup of patients who were anti-VEGF naïve prior to study participation were similar to those observed in the overall population. Treatment effects in evaluable subgroups (e.g., by age, gender, race, baseline HbA1c, baseline visual acuity) in each study were generally consistent with the results in the overall population.

14.3 Macular Edema Following Retinal Vein Occlusion (Rvo)

The safety and efficacy of VABYSMO were assessed in two randomized, multicenter, double-masked, studies (BALATON – NCT04740905 in patients with macular edema following branch retinal vein occlusion, and COMINO – NCT04740931 in patients with macular edema following central retinal vein occlusion/hemiretinal vein occlusion). Active comparator-controlled data are available through month 6.

A total of 1,282 newly diagnosed, treatment-naïve patients were enrolled in these studies, of which 641 patients received at least one dose of VABYSMO through 6 months. Patient ages ranged from 28 to 93 with a mean of 64 years, and 22 to 100 with a mean of 65 years in BALATON and COMINO, respectively.

In both studies, patients were randomized in a 1:1 ratio to either 6 mg VABYSMO administered every 4 weeks, or the control arm receiving aflibercept 2 mg injections every 4 weeks for a total of 6 injections.

In both studies, the VABYSMO 6 mg Q4W arm demonstrated non-inferiority to the comparator control (aflibercept) arm for the primary endpoint, which was defined as the change from baseline in BCVA at week 24, measured by the ETDRS Letter Score. The primary endpoint analysis was a non-inferiority comparison for the mean change in BCVA between the aflibercept and VABYSMO arms, where the lower bound of the 95% confidence interval for the mean change in BCVA could not be lower than minus 4 letters to declare non-inferiority.

Detailed results for both BALATON and COMINO studies are shown in Table 4, Figure 5, and Figure 6 below.

<div class="scrollingtable"><table width="90%"> <caption> <span>Table 4: Primary Endpoint Results at Week 24 in the BALATON and COMINO Studies </span> </caption> <col align="left" valign="top" width="24%"/> <col align="center" valign="top" width="19%"/> <col align="center" valign="top" width="19%"/> <col align="center" valign="top" width="19%"/> <col align="center" valign="top" width="19%"/> <thead> <tr class="Botrule First"> <th align="left" class="Lrule Rrule" rowspan="2"></th><th align="center" class="Rrule" colspan="2">BALATON</th><th align="center" class="Rrule" colspan="2">COMINO</th> </tr> <tr class="Last"> <th align="center" class="Rrule">VABYSMO<br/>N = 276</th><th align="center" class="Rrule">Aflibercept<br/>N = 277</th><th align="center" class="Rrule">VABYSMO<br/>N = 366</th><th align="center" class="Rrule">Aflibercept<br/>N = 363</th> </tr> </thead> <tfoot> <tr class="First"> <td align="left" colspan="5">BCVA: Best Corrected Visual Acuity</td> </tr> <tr> <td align="left" colspan="5">ETDRS: Early Treatment Diabetic Retinopathy Study</td> </tr> <tr> <td align="left" colspan="5">CI: Confidence Interval</td> </tr> <tr class="Last"> <td align="left" colspan="5">LS: Least Square</td> </tr> </tfoot> <tbody> <tr class="Botrule First"> <td align="left" class="Lrule Rrule">Mean change in BCVA as measured by ETDRS letter score from baseline <br/>(95% CI)</td><td align="center" class="Rrule">16.9<br/>(15.7, 18.1)</td><td align="center" class="Rrule">17.5<br/>(16.3, 18.6)</td><td align="center" class="Rrule">16.9<br/>(15.4, 18.3)</td><td align="center" class="Rrule">17.3<br/>(15.9, 18.8)</td> </tr> <tr class="Last"> <td align="left" class="Lrule Rrule">Difference in LS mean <br/>(95% CI)</td><td align="center" class="Rrule">-0.6<br/>(-2.2, 1.1)</td><td align="center" class="Rrule"></td><td align="center" class="Rrule">-0.4<br/>(-2.5, 1.6)</td><td align="center" class="Rrule"></td> </tr> </tbody> </table></div>

Figure 5: Mean Change in Visual Acuity from Baseline to Week 24 in BALATON

Figure 6: Mean Change in Visual Acuity from Baseline to Week 24 in COMINO

16 How Supplied/Storage And Handling

16.1 How Supplied

VABYSMO (faricimab-svoa) injection is supplied as a clear to opalescent, colorless to brownish-yellow solution as 6 mg (0.05 mL of 120 mg/mL solution) in a single-dose prefilled syringe or single-dose vial. Each prefilled syringe or vial is for treatment of a single eye.

VABYSMO is supplied in the following presentations:

<div class="scrollingtable"><table width="85%"> <col align="left" valign="top" width="20%"/> <col align="left" valign="top" width="20%"/> <col align="left" valign="top" width="60%"/> <thead> <tr class="First Last"> <th align="left" class="Lrule Rrule">NDC NUMBER</th><th align="left" class="Rrule">CARTON TYPE</th><th align="left" class="Rrule">CARTON CONTENTS</th> </tr> </thead> <tbody> <tr class="Botrule First"> <td align="left" class="Lrule Rrule">50242-096-06</td><td align="left" class="Rrule">Prefilled Syringe</td><td align="left" class="Rrule">one 6 mg (0.05 mL of 120 mg/mL solution) single-dose prefilled glass syringe, in a sealed tray<br/>one sterile injection filter needle (30-gauge × ½ inch, 0.30 mm × 12.7 mm, Extra Thin Wall)<br/>one Prescribing Information</td> </tr> <tr class="Last"> <td align="left" class="Lrule Rrule">50242-096-01</td><td align="left" class="Rrule">Vial</td><td align="left" class="Rrule">one 6 mg (0.05 mL of 120 mg/mL solution) single-dose glass vial<br/>one sterile 5-micron blunt transfer filter needle (18-gauge × 1½ inch, 1.2 mm × 40 mm)<br/>one Prescribing Information</td> </tr> </tbody> </table></div>

16.2 Storage And Handling

Store VABYSMO in the refrigerator between 2°C to 8°C (36°F to 46°F). Do not freeze. Do not shake. Keep the sealed tray containing the prefilled syringe or the vial in the original carton to protect from light.

Prior to use, the unopened prefilled syringe or glass vial of VABYSMO may be kept at room temperature, 20°C to 25°C (68°F to 77°F), for up to 24 hours. Ensure that the injection is given immediately after preparation of the dose.

17 Patient Counseling Information

Advise patients that in the days following VABYSMO administration, patients are at risk of developing endophthalmitis, retinal detachment, intraocular inflammation and retinal vasculitis with or without retinal vascular occlusion. If the eye becomes red, sensitive to light, painful, or develops a change in vision, advise the patient to seek immediate care from an ophthalmologist [see Warnings and Precautions (5)].

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Patients may experience temporary visual disturbances after an intravitreal injection with VABYSMO and the associated eye examinations [see Adverse Reactions (6)]. Advise patients not to drive or use machinery until visual function has recovered sufficiently.

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Spl Unclassified Section

VABYSMO® [faricimab-svoa]Manufactured by: Genentech, Inc. A Member of the Roche Group1 DNA WaySouth San Francisco, CA 94080-4990U.S. License No.: 1048

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VABYSMO is a trademark of Genentech, Inc. ©2024 Genentech, Inc.

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Principal Display Panel - 6 Mg Vial Carton

Vabysmo™ (faricimab-svoa) Injection

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NDC 50242-096-01

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6 mg (0.05 mL of 120 mg/mL solution)

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For Intravitreal Injection. Single-Dose Vial. Discard Unused Portion.

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1 single-dose vial 1 transfer filter needle

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Rx only Genentech

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10239448

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Principal Display Panel - 6 Mg Syringe Carton

Vabysmo® (faricimab-svoa) Injection

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NDC 50242-096-06

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6 mg (0.05 mL of 120 mg/mL solution)

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For Intravitreal Injection Single-Dose Prefilled Syringe

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ATTENTION: Only use the provided injection filter needle for the administration. The dose must be set to the 0.05 mL dose mark (see enclosed prescribing information).

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1 Sterile Prefilled Syringe 1 Sterile Injection Filter Needle

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Rx only Genentech

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11005157

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