Neil Daily
Papers
2
Total Citations
28
H-Index
2
About
Neil Daily is a leading researcher in the scalable production of induced pluripotent stem cells (iPSCs), with a primary focus on bridging the critical gap between laboratory discovery and clinical application. His major contributions center on the development of automated, high-throughput culture systems, most notably a robotic liquid handling platform that enables standardized iPSC production in a 96-well plate format. This work directly addresses the cost and reproducibility challenges that have historically hindered the use of stem cells in regenerative medicine, drug discovery, and safety testing. His most cited paper, "Scalable 96-well Plate Based iPSC Culture and Production Using a Robotic Liquid Handling System," has accumulated 22 citations, underscoring its influence in the field. By demonstrating that automated, miniaturized culture can maintain pluripotency and viability, Daily’s research provides a practical pathway for producing stem cell-derived biopharmaceuticals and engineered tissues at a commercially viable scale. His achievements represent a pivotal step toward making personalized cell therapies and high-throughput toxicity screening a routine reality in both research and clinical settings.
Research Focus
Key Achievements
Top Papers
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