BioNTech and Bristol Myers Squibb Announce Global Strategic Partnership to Co-Develop and Co-Commercialize Next-generation Bispecific Antibody Candidate BNT327 Broadly for Multiple Solid Tumor Types
- BNT327, BioNTech’s PD-L1xVEGF-A bispecific antibody, is a clinically advanced investigational immunotherapy candidate with the potential to surpass current checkpoint inhibitor outcomes and set a new standard of care in multiple tumor types
- The co-development and co-commercialization collaboration with a 50/50 profit/loss split will leverage both partners’ expertise, resources and global footprint to accelerate BNT327’s path towards potential regulatory approvals and market launches
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BioNTech andBristol Myers Squibb will jointly execute a broad clinical development program to evaluate and advance BNT327 across numerous solid tumor types
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BioNTech’s BNT327, a next-generation bispecific antibody candidate targeting PD-L1 and VEGF-A, is currently being evaluated in multiple ongoing trials with more than 1,000 patients treated to date, including global Phase 3 trials with registrational potential evaluating BNT327 as first-line treatment in extensive stage small cell lung cancer (“ES-SCLC”) and non-small cell lung cancer (“NSCLC”). A global Phase 3 trial evaluating the candidate in triple negative breast cancer (“TNBC”) is planned to start by the end of 2025. Preliminary data from ongoing trials underscore the potential for combining anti-PD-L1 and anti-VEGF-A – two well-established therapeutic targets – into a single molecule to deliver synergistic clinical benefits for patients across multiple tumor types.
Under the terms of the agreement, the companies will jointly develop and commercialize BNT327, including the development of BNT327 as monotherapy and in combination with other products. Both companies have the right to independently develop BNT327 in further indications and combinations, including combinations of BNT327 with proprietary pipeline assets.
"We believe BNT327 has the potential to become a foundational immuno-oncology backbone, moving beyond single-mechanism checkpoint inhibitors and expanding into multiple solid-tumor indications. Our collaboration with BMS, a pioneering leader in immuno-oncology, aims to accelerate and broadly expand BNT327’s development to fully realize its potential,” said Prof.
“Our deep experience and expertise in advancing and delivering groundbreaking immuno-oncology medicines positions BMS well to collaboratively realize the potential of BNT327, an asset with significant potential for transforming the standard of care for patients with solid tumors,” said
BMS will pay
About BNT327
BNT327 is a novel investigational bispecific antibody combining two complementary, validated mechanisms in oncology into one single molecule. BNT327 combines PD-L1 checkpoint inhibition aimed at restoring T cells’ ability to recognize and destroy tumor cells with the neutralization of VEGF-A. The blocking of VEGF-A is aimed at reversing the tumor’s immuno-suppressive effect in its microenvironment and cutting off the blood and oxygen supply that feeds tumor cells (anti-angiogenesis effect), with the intention of preventing the tumor from growing and proliferating. BNT327 may be differentiated via its mechanism of action of targeting PD-L1 on tumor cells to localize anti-VEGF activity within the tumor microenvironment, aiming to enhance therapeutic precision and minimize systemic exposure. A treatment with BNT327 is intended to help normalize blood vessels at the tumor site, improving delivery and potential effectiveness of combination therapies. This targeted vascular remodeling positions BNT327 as a potential backbone therapy across a wide range of solid tumors.1,2
More than 1,000 patients have been treated with BNT327 in clinical trials to date. More than 20 clinical trials are currently ongoing or planned to evaluate BNT327 either as a monotherapy or in combination with other treatment modalities targeting different oncogenic pathways in more than 10 solid tumor indications. Multiple global trials are ongoing or planned to start in 2025, including three global clinical trials with registrational potential in first-line small cell lung cancer (“SCLC”), first-line non-small cell lung cancer (“NSCLC”) and first-line triple-negative breast cancer (“TNBC”). Additional trials will explore combining BNT327 and BioNTech’s proprietary antibody-drug conjugate candidates (“ADCs”). If successfully developed and approved,
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BioNTech Forward-Looking Statements
This press release contains forward-looking statements within the meaning of the Private Securities Litigation Reform Act of 1995, as amended, including, but not limited to, statements concerning: expectations regarding the impact of the collaboration with
The forward-looking statements in this press release are based on BioNTech’s current expectations and beliefs of future events and are neither promises nor guarantees. You should not place undue reliance on these forward-looking statements because they involve known and unknown risks, uncertainties, and other factors, many of which are beyond BioNTech’s control and which could cause actual results to differ materially and adversely from those expressed or implied by these forward-looking statements. These risks and uncertainties include, but are not limited to: the uncertainties inherent in research and development, including the ability to meet anticipated clinical endpoints, commencement and/or completion dates for clinical trials, regulatory submission dates, regulatory approval dates and/or launch dates, as well as risks associated with preclinical and clinical data, and including the possibility of unfavorable new preclinical, clinical or safety data and further analyses of existing preclinical, clinical or safety data; the nature of clinical data, which is subject to ongoing peer review, regulatory review and market interpretation; pricing and coverage negotiations with governmental authorities, private health insurers and other third-party payors; the impact of tariffs and escalations in trade policy; competition related to BioNTech’s product candidates, including those with different mechanisms of action and different manufacturing and distribution constraints, on the basis of, among other things, efficacy, cost, convenience of storage and distribution, breadth of approved use, side-effect profile and durability of immune response; the timing of and BioNTech’s ability to obtain and maintain regulatory approval for its product candidates; discussions with regulatory agencies regarding timing and requirements for additional clinical trials; BioNTech’s and its counterparties’ ability to manage and source necessary energy resources; BioNTech’s ability to identify research opportunities and discover and develop investigational medicines; the ability and willingness of BioNTech’s third-party collaborators to continue research and development activities relating to BioNTech’s development candidates and investigational medicines; unforeseen safety issues and potential claims that are alleged to arise from the use of products and product candidates developed or manufactured by
You should review the risks and uncertainties described under the heading “Risk Factors” in BioNTech’s Report on Form 6-K for the period ended
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Bristol Myers Squibb Cautionary Statement Regarding Forward-Looking Statements
This press release contains “forward-looking statements” within the meaning of the Private Securities Litigation Reform Act of 1995 regarding, among other things, the research, development and commercialization of pharmaceutical products and the collaboration with
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1 Tzuri N, et al. Sci Rep. 2023;13(1):11923.
2 Kim HJ, et al.
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