Sajad Moazzeni
Scientist II - Cell Engineering @ Gameto
About
• Scientist with 8+ years of experience in advanced cell culture techniques, specializing in 2D and 3D cultures, bioreactor systems, and associated bioprocesses for primary and stem cells, mammalian cells, and spheroids. • Subject matter expert in developing and implementing in-line and off-line characterization tools for biologics, employing advanced analytical methods such as microfluidic systems and biocapacitance. • Expert in operating and optimizing various bioreactor platforms, including benchtop bioreactors, spinner flasks, Ambr perfusion systems, and stirred-tank reactors, at multiple scales to enhance cell expansion, differentiation, and viability. • Extensive experience in the design of experiments for bioprocess characterization and optimization, and multivariate statistical analyses in translational research and regulated biomanufacturing environments. • Experienced working with both non-GMP and cGMP standards and workflows, including drafting technical protocols, SOPs, reports, and regulatory documents. • Skilled in statistical modeling and data analysis using JMP, ML, and AI tools for process optimization and automation.
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United States
Biotechnology
Process Development, Cell and Tissue Culture, Tissue Engineering, Cell Based Assays, Microfluidics, Manufacturing Scale-up, 3D Bioprinting, Real-Time Polymerase Chain Reaction (qPCR), Analytical Development, Small-scale Bioreactors, ELISA, Bioreactor, Western Blotting, Flow Cytometry, Potency Assay, Research, Cell Culture, Image Processing, Data Analysis, Confocal Microscopy
Experience

Translational Engineering Scientist
Providence, Rhode Island, United States
Cell and Gene Therapy (Type-1 Diabetes) 3D Stem Cell Culture, Microfluidics, Small-scale Bioreactor, Process Characterization, Design of Experiments, Cell Characterization, In-vitro Tissue Model, 3D Bioprinting

Graduate Research Assistant
Piscataway, New Jersey, United States
Cell Characterization in Mechanobiology Studied the biomechanical properties of mammalian cells as aggregates or single cells by developing microfluidic-based techniques like micropipette aspiration and electrodeformation. Investigated aggregation behavior, cytoskeletal remodeling, and their coupling with cell adhesion by assessing the signaling pathways and the impact of pharmacological inhibitors on actin-myosin complex localization during the adhesion process. Developed high-throughput, cost-effective cell characterization tools using microfluidics design and microfabrication.
Education
Sajad Moazzeni's Contact Information
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