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Principal Scientist, Advanced In Vitro Platforms

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Job Description - Principal Scientist, Advanced In Vitro Platforms

Lead and mentor the Advanced In Vitro Delivery group, fostering scientific excellence and ensuring the team remains at the forefront of emerging technologies and methodologies. Shape scientific strategy by staying current with advances in RNAi therapeutics and contributing to the strategic direction of discovery and platform development efforts. Collaborate cross-functionally with internal teams and CRO partners to develop, validate, and implement advanced in vitro systems—including 2D, 3D, organoid, and organ-on-a-chip models—that are predictive of in vivo siRNA uptake and biological activity. Drive experimental execution, including design, implementation, and troubleshooting of complex in vitro studies to evaluate siRNA delivery and mechanism of action. Provide technical leadership in the development and deployment of next-generation in vitro modeling technologies across multiple tissue types. Adapt and miniaturize advanced cell culture systems for automated, high-throughput screening applications. Perform and oversee analytical assays, including imaging, ELISA, Western blotting, and cell-based functional assays, to assess siRNA delivery efficiency and receptor-mediated uptake. Analyze and interpret data, integrating imaging and functional readouts, and effectively communicate results to internal stakeholders and external collaborators. Partner with discovery teams to integrate validated in vitro models into RNAi screening and lead optimization workflows. Ph.D. in Cell Biology, Pharmacology, or a related discipline with 6+ years of hands-on industry experience in a biotechnology or pharmaceutical environment. Demonstrated expertise in ex vivo cell assays, microphysiological systems (MPS), primary and iPSC-derived cell culture, and cell-based functional assays. Strong understanding of in vitro assay development and the application of 2D and 3D culture systems to model and predict in vivo siRNA delivery, uptake, and activity. Proven experience with 3D culture platforms, including spheroids, organoids, and co-culture models. Exceptional organizational and analytical skills, with the ability to independently troubleshoot, optimize, and innovate experimental approaches. Effective team collaborator and communicator, capable of presenting scientific findings clearly to diverse audiences. Self-driven and proactive, with the ability to lead projects, manage multiple priorities, and adapt to evolving objectives in a fast-paced environment. Strong project management and leadership skills, with a proven ability to lead teams and deliver results through cross-functional collaboration. Experience with oligonucleotide or RNAi-based therapeutics is highly desirable.
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