Gregory Datto
Papers
1
Total Citations
3
H-Index
1
About
Gregory Datto is pioneering the high-throughput design and synthesis of lipid nanoparticles (LNPs) for next-generation therapeutics. His research focuses on the intersection of microfluidics, combinatorial chemistry, and nanomedicine, enabling the rapid creation of precisely defined LNP libraries. Datto’s major contribution lies in developing automated, parallelized microfluidic platforms that can generate large, uniform LNP formulations with controlled lipid compositions and structures—a critical bottleneck in the field. By integrating combinatorial lipid synthesis with in vivo screening, his work accelerates the discovery of optimized LNPs for gene therapy, mRNA delivery, and other applications. His 2025 paper, “Automated and Parallelized Microfluidic Generation of Large and Precisely Defined Lipid Nanoparticle Libraries” (3 citations), exemplifies this approach, offering a scalable solution to explore vast chemical spaces. Though early in his career, Datto’s innovations promise to transform how therapeutic nanoparticles are engineered, bridging the gap between laboratory discovery and clinical translation. His work is essential reading for researchers in drug delivery, nanobiotechnology, and precision medicine.
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Top Papers
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