Papers
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Total Citations
75
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About
Claire Malley is a pioneering researcher in the field of stem cell biomanufacturing, with a primary focus on automating the culture and differentiation of human pluripotent stem cells (hiPSCs). Her major contribution lies in developing robotic high-throughput systems that overcome the variability and labor-intensity of traditional manual cell culture, enabling scalable and reproducible production of hiPSCs for therapeutic applications. Her most cited work, a 2021 paper on robotic biomanufacturing and functional differentiation, has garnered 68 citations, underscoring its impact on advancing regenerative medicine. This research addresses a critical bottleneck in translating stem cell therapies from lab to clinic by ensuring optimal self-renewal and differentiation at scale. Malley’s innovative approach not only enhances efficiency but also sets a new standard for high-throughput stem cell manufacturing, making her a key figure in the automation of cell-based therapies. Her work is essential reading for students and researchers aiming to bridge engineering and biology in the pursuit of scalable, reliable stem cell production.
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