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Research Associate, Pre-Clinical Vector Design

meiragtx
Companymeiragtx
CategoryHealthcare
LocationNew York City
RemoteOn-site (inferred)
EmploymentNot stated
LevelNot stated
SalaryNot stated by the employer
Posted19 May 2026
Last verified5 Aug 2026
SourceEmployer ATS (personio)
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Description
We are s earching for a curious individual who is comfortable multitasking while working on various aspects of our platform. In this role, you will be an essential part of an interdisciplinary team developing and testing the efficacy and safety of these therapeutics in mouse models and iPSCs. Key Responsibilities Molecular Characterization: Perform routine DNA/RNA extraction from diverse tissues and cells, followed by qPCR/ddPCR for biodistribution and Western Blotting/ELISA for protein expression analysis. Cellular Assays: Maintain mammalian cell cultures and perform microscopy and/or flow cytometry to evaluate expression and therapeutic impact in disease-relevant models. In Vivo Integration: Support the in vivo team with tissue processing, molecular follow-up, and behavioral assays depending on animal handling proficiency. Sequencing Workflows: Prepare NGS libraries for transcriptomic studies to support our machine learning-driven design process. Data Processing: Analyze and quantify results using various analytical software (GraphPad Prism, FlowJo, CellProfiler). Documentation: Maintain a detailed and accurate electronic lab notebook (Benchling) and present data to the interdisciplinary design team. Required Qualifications Education: B.S. or M.S. in Molecular Biology, Neuroscience, or a related field. Experience: 1–3 years of laboratory experience in a research or industry setting.  Core Skillset Strong proficiency in molecular biology (Western Blotting, ELISA, RNA/DNA isolation, NGS library preparation, and qPCR). Strong aseptic technique and mammalian cell culture experience. Preferred Qualifications In Vivo Skills: Basic experience with mouse handling, dosing, or tissue necropsy. Therapeutic Area: Familiarity with AAV biology or muscle/CNS disease models. Contribute to the development of bespoke medicines for CNS and muscle diseases. Work within a state-of-the-art platform that merges wet-lab biology with computational machine learning. High-impact role with the opportunity to see therapies move from design toward the clinic.