Vir Biotechnology Announces Encouraging Safety and Efficacy Data in Ongoing Dose Escalation Trials for Dual Masked T-Cell Engagers VIR-5818 in Solid Tumors and VIR-5500 in mCRPC

On January 8, 2025 Vir Biotechnology, Inc. (Nasdaq: VIR) reported initial Phase 1 data from two of its dual-masked T-cell engagers (TCEs): VIR-5818, targeting a variety of HER2-expressing solid tumors; and VIR-5500, targeting PSMA in metastatic castration-resistant prostate cancer (mCRPC) (Press release, Vir Biotechnology, JAN 8, 2025, View Source [SID1234649526]). Data show encouraging preliminary safety and efficacy profiles with no dose-limiting cytokine release syndrome (CRS), maximum tolerated dose (MTD) not yet reached as dose escalation continues, and early clinical response signals observed in heavily pretreated participants. These initial results provide clinical support for Vir Biotechnology’s in-licensed PRO-XTEN masking technology, which is designed to enable the selective activation of TCEs in the tumor microenvironment, mitigating damage to healthy cells and reducing toxicity.

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"Overcoming the toxicity-driven limitations of traditional T-cell engagers could address an important unmet medical need in cancer care," said Marianne De Backer, M.Sc., Ph.D., MBA, Chief Executive Officer, Vir Biotechnology. "Preliminary safety and efficacy data for our dual-masked T-cell engagers VIR-5818 and VIR-5500 are compelling, and we will continue dose escalation with an opportunity to expand the therapeutic window. We are encouraged that our candidates may enable efficacious and well-tolerated treatment regimens, potentially improving outcomes for people living with a range of solid tumors."

VIR-5818: PRO-XTEN Initial Proof-of-Concept and Potential First-in-Class HER2 Immunotherapy

Despite availability of HER2-targeting therapies, there remains a significant unmet need for treatments with novel mechanisms of action to improve tolerability and extend survival. Currently, no HER2-directed immunotherapies are approved for solid tumors. The preliminary safety and efficacy data of VIR-5818 support the tumor-specific activation of PRO-XTEN dual-masked TCEs and the potential of this technology to broaden the therapeutic index of TCEs.

VIR-5818 is being evaluated in a Phase 1 clinical trial (NCT05356741) designed to study its safety and pharmacokinetics alone, and in combination with pembrolizumab, in participants with a variety of HER2-expressing cancers, including breast and colorectal cancer (CRC). The study has enrolled 79 heterogeneous and heavily pretreated participants in monotherapy cohorts.

Early efficacy data indicate that 50% (10/20) of participants receiving VIR-5818 doses ≥400 µg/kg experienced dose-dependent tumor shrinkage across multiple HER2-positive tumor types. This includes participants who had received up to 9 prior lines of therapy. Strong anti-tumor activity was observed in a subset of participants with HER2-positive CRC who have exhausted standard of care. In this subset, confirmed partial responses (cPRs) were seen in 33% (2/6) of participants at early doses, and one patient continued in cPR for more than 18 months as of the data cut-off.

Preliminary safety data demonstrate that VIR-5818 is generally well-tolerated, with minimal grade 1 or 2 CRS (20% and 10%, respectively) and no grade 3 or greater CRS observed in any of the 79 participants across doses up to 1000 µg/kg. Most treatment-emergent adverse events (TEAEs) were low grade, reversible and manageable. The MTD has not yet been reached. Preliminary pharmacokinetics and safety data indicate low systemic unmasking of the TCE, suggesting tumor-specific activation. Dual masking results in a half-life of approximately 6 days, which may enable a less frequent dosing regimen. As a result, Vir Biotechnology is currently evaluating a Q3W dosing regimen.

VIR-5500: First Dual-Masked PSMA-Targeting TCE

Prostate cancer is the second most diagnosed cancer in men1. Despite advancements, there is still a significant unmet need for efficacious, well-tolerated treatments that can extend survival and improve quality of life.

VIR-5500 is being evaluated in a Phase 1 clinical trial (NCT05997615​) designed to assess its safety, pharmacokinetics, and preliminary efficacy in participants with mCRPC. The study has enrolled 18 participants with significant disease burden who have received 3 to 6 prior lines of therapy.

Early efficacy data show encouraging signs of prostate-specific antigen (PSA) responses, and PSA reductions were observed in 100% (12/12) of participants after an initial dose ≥120 µg/kg. PSA50 response was confirmed in 58% (7/12) of participants receiving a first dose ≥120 µg/kg.

Preliminary data show a promising safety profile, with no dose-limiting toxicities observed up to 1000 µg/kg without prophylactic corticosteroids. Safety findings showed minimal grade 1 or 2 CRS (17% and 11%, respectively) and no grade 3 or greater CRS at any dose. Most TEAEs were low grade. No hearing loss has been reported, suggesting safety benefits of dual masking in preventing on-target, off-tumor toxicities. Dose escalation is ongoing, and the MTD for VIR-5500 has not yet been reached. Preliminary pharmacokinetics and safety data indicate tumor-specific activation with minimal unmasking outside the tumor. The dual-masked TCE shows a desirable half-life of 8-10 days, which is enabling Vir Biotechnology to evaluate a Q3W dosing regimen. The safety and tolerability profile observed for VIR-5500 in ongoing dose escalation, together with the observed signs of early anti-tumor activity at low doses, may enable a wide therapeutic index.

About VIR-5818, VIR-5500, VIR-5525

VIR-5818, VIR-5500, VIR-5525 are investigational, clinical candidates currently being evaluated for the treatment of solid tumors. These assets leverage the PRO-XTEN masking technology with three different T-cell engagers (TCEs) targeting HER2, PSMA, and EGFR, respectively.

TCEs are powerful anti-tumor agents that can direct the immune system, specifically T-cells, to destroy cancer cells. The PRO-XTEN masking technology is designed to keep the TCEs inactive (or masked) until they reach the tumor microenvironment, where tumor-specific proteases cleave off the mask and activate the TCEs, leading to killing of cancer cells. By driving the activity exclusively to the tumor microenvironment, we aim to circumvent the traditionally high toxicity associated with TCEs and increase their efficacy and tolerability. Additionally, the mask is designed to help drug candidates stay in the bloodstream longer in their inactive form, allowing them to better reach the site of action and potentially allowing less frequent dosing regimens for patients and clinicians.

Sana Biotechnology to Present at the 43rd Annual J.P. Morgan Healthcare Conference

On January 8, 2025 Sana Biotechnology, Inc. (NASDAQ: SANA), a company focused on changing the possible for patients through engineered cells, reported that it will webcast its presentation at the 43rd Annual J.P. Morgan Healthcare Conference at 9:00 a.m. PT on Wednesday, January 15, 2025 (Press release, Sana Biotechnology, JAN 8, 2025, View Source [SID1234649511]). The presentation will feature a business overview and update by Steve Harr, Sana’s President and Chief Executive Officer.

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The webcast will be accessible on the Investor Relations page of Sana’s website at View Source A replay of the presentation will be available at the same location for 30 days following the conference.

Tempus Announces a Collaboration With Genialis to Develop RNA-Based Biomarker Algorithms

On January 8, 2025 Tempus AI, Inc. (NASDAQ: TEM), a technology company leading the adoption of AI to advance precision medicine and patient care, reported a collaboration with Genialis, the RNA-biomarker company (Press release, Tempus, JAN 8, 2025, View Source [SID1234649527]). The multi-year agreement allows Genialis to leverage Tempus’ multimodal dataset to develop new RNA-based algorithms across cancer types.

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Clinical care for cancer patients is hindered by insufficient biomarkers that fail to accurately predict patient response to treatment. To address this, Genialis has developed an AI foundation model using data from ~1 million RNA-sequencing samples representing globally diverse patients. This large molecular model (LMM), dubbed the Genialis TM Supermodel, yields accurate and information-rich biomarker algorithms to help biopharma improve therapeutic development. Validating Genialis’ LMM using Tempus real-world multi-modal data is essential to demonstrate the clinical utility and broad applicability of these biomarkers in drug development and clinical practice. As part of the collaboration, Genialis can now leverage Tempus’ analytics platform, Lens, which provides a development platform accessing de-identified multimodal patient records and a suite of tools to validate signatures to accelerate the company’s efforts to bring its clinical algorithms to market. In return, Tempus gains the right to evaluate and potentially license Genialis-developed algorithms for commercialization as a component of the xR platform.

Tempus multimodal dataset has already proved pivotal in the launch of GenialiskrasID, the first commercially available algorithm that stratifies patients who benefit from KRAS inhibition. Presented at the 6th Annual Targeting-RAS Drug Development Summit in September 2024, Genialis krasID uniquely predicts patient response to KRAS-targeted therapies across cancer types and driver mutations. Independently validated using Tempus’ real-world data, Genialis krasID stratifies patients into high and low likelihood response groups that have been evaluated in real-world studies1,2.

"We look forward to working with Genialis and demonstrating new ways in which our data can be applied to further a new kind of research, one that embraces the power that RNA-based biomarkers can have on the future of cancer care," said Kate Sasser, Ph.D., Chief Scientific Officer at Tempus. "Multimodal algorithms, including RNA signatures, are demonstrating rapid advancement in clinical utility for personalized treatment decisions, and we are excited to partner with Genialis to fuel this data-driven precision medicine future with our xR assay and vast multimodal dataset."

"Biomarkers have the potential to transform how cancer is diagnosed and treated, but today’s standard of care leaves a lot to be desired in terms of accuracy, information richness, and patient reach," said Rafael Rosengarten, Ph.D., CEO of Genialis. "With this strategic agreement with Tempus, Genialis will have access to an unparalleled data resource to validate our cutting-edge patient classifiers."

AMGEN TO PRESENT AT 43RD ANNUAL J.P. MORGAN HEALTHCARE CONFERENCE

On January 8, 2025 Amgen (NASDAQ:AMGN) reported that it will present at the 2025 J.P. Morgan Healthcare Conference at 3:00 p.m. PT on Monday, January 13, 2025 (Press release, Amgen, JAN 8, 2025, View Source [SID1234649496]). Robert A. Bradway, chairman and chief executive officer at Amgen will present at the conference. The webcast will be broadcast over the internet simultaneously and will be available to members of the news media, investors and the general public.

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The webcast, as with other selected presentations regarding developments in Amgen’s business given by management at certain investor and medical conferences, can be found on Amgen’s website, www.amgen.com, under Investors. Information regarding presentation times, webcast availability and webcast links are noted on Amgen’s Investor Relations Events Calendar. The webcast will be archived and available for replay for at least 90 days after the event.

Sensei Biotherapeutics Provides Corporate Update and Highlights Key Upcoming Milestones

On January 8, 2025 Sensei Biotherapeutics, Inc. (Nasdaq: SNSE), a clinical stage biotechnology company focused on the discovery and development of next-generation therapeutics for cancer patients, reported corporate updates on its lead program, solnerstotug (SNS-101) and upcoming milestones (Press release, Sensei Biotherapeutics, JAN 8, 2025, View Source [SID1234649512]).

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"2024 was a noteworthy year for Sensei and our pioneering lead program, solnerstotug. We demonstrated that solnerstotug can overcome the safety and pharmacological hurdles associated with first-generation antibodies targeting the immune checkpoint VISTA, positioning it as the first program in its class with potential to demonstrate clinically meaningful antitumor responses. Moreover, despite enrolling a predominantly ‘cold’ tumor patient population that was unlikely to respond to immunotherapy, solnerstotug demonstrated promising early signs of activity," said John Celebi, President and Chief Executive Officer. "Looking ahead, 2025 is set to be a pivotal year as we seek to share our first significant efficacy data at optimal doses that include a ‘hot’ tumor patient population more likely to respond to immunotherapy that nonetheless has primary or acquired resistance to PD-1 inhibitors. With cash runway into the second quarter of 2026, we are positioned to advance solnerstotug through the completion of the Phase 1 portion of this study."

Highlights and Milestones

Solnerstotug (SNS-101)

Solnerstotug is a conditionally active antibody designed to selectively target the immune checkpoint VISTA (V-domain Ig suppressor of T cell activation) within the tumor microenvironment. VISTA is implicated in numerous cancer indications and its expression correlates with low survival rates.

Sensei is conducting a multi-center Phase 1/2 clinical trial to evaluate the safety, tolerability, pharmacokinetics, pharmacodynamics, and efficacy of solnerstotug (SNS-101) as both a monotherapy and in combination with Regeneron’s PD-1 inhibitor Libtayo (cemiplimab) in patients with advanced solid tumors. Key findings and updates as of January 1, 2025 include:

A total of 45 patients have been enrolled in the dose expansion portion of the Phase 1/2 clinical trial.
The majority of the "hot" tumor patients enrolled in the combination dose expansion to date have progressed on a prior anti-PD-1 therapy or are PD-L1 negative, making it highly unlikely that these patients would respond upon re-challenge with anti-PD-1 alone.
Sensei expects to complete enrollment of the dose expansion with approximately 60 patients by the end of Q1 2025.
The Company expects to report data from evaluable patients in Q2 2025. Patient follow-up data from the dose escalation cohorts will also be presented.
Solnerstotug continues to be well tolerated with a best-in-class pharmacokinetic profile.
Dose optimization is now focused on dose levels of 3 and 15 mg/kg Q3W to support the Phase 2 doses in several patient populations under consideration.
Efforts are ongoing to explore biomarker correlates of clinical benefit using peripheral immunophenotyping and tumor genomic and transcriptomic analyses.