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Scientist, Solid Tumor CAR-T

Legend Biotech US·Worldwide·Philadelphia, PA·mid
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Legend Biotech is a global biotechnology company dedicated to treating, and one day curing, life-threatening diseases. Headquartered in Somerset, New Jersey, we are developing advanced cell therapies across a diverse array of technology platforms, including autologous and allogenic chimeric antigen receptor T-cell, T-cell receptor (TCR-T), and natural killer (NK) cell-based immunotherapy. From our three R&D sites around the world, we apply these innovative technologies to pursue the discovery of safe, efficacious and cutting-edge therapeutics for patients worldwide. Legend Biotech entered into a global collaboration agreement with Janssen, one of the pharmaceutical companies of Johnson & Johnson, to jointly develop and commercialize ciltacabtagene autolecuel (cilta-cel). Our strategic partnership is designed to combine the strengths and expertise of both companies to advance the promise of an immunotherapy in the treatment of multiple myeloma. Legend Biotech is seeking a Scientist, Solid Tumor CAR-T as part of the Research and Development team based in Philadelphia, PA. Role Overview We are seeking a highly motivated Scientist to join our interdisciplinary cell therapy team at Legend Biotech, focused on advancing CAR-T cell therapies for solid tumors. This role is central to our in vivo CAR-T platform and will drive preclinical development from construct design through animal model efficacy studies. The ideal candidate holds a PhD in Immunology, Immuno-Oncology, or a closely related discipline, with up to 3 years of postdoctoral experience. You are a rigorous scientist who thrives in a fast-paced, collaborative environment and is passionate about translating basic immunology insights into transformative oncology therapies. Key Responsibilities Design and execute in vitro CAR-T functional assays. Perform comprehensive phenotypic analysis of T cell differentiation, activation, and memory subsets. Evaluate CAR-T cell trafficking and tumor infiltration in vivo using flo