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AGILE platform: a deep learning powered approach to accelerate LNP development for mRNA delivery

Medicine and Health

AGILE platform: a deep learning powered approach to accelerate LNP development for mRNA delivery

Y. Xu, S. Ma, et al.

Discover the innovative AGILE platform that revolutionizes mRNA delivery through ionizable lipid nanoparticles (LNPs)! This exciting research by a team from the University of Toronto showcases how deep learning and combinatorial chemistry can enhance LNP customizations for diverse therapeutic applications.

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~3 min • Beginner • English
Abstract
Ionizable lipid nanoparticles (LNPs) are seeing widespread use in mRNA delivery, notably in SARS-CoV-2 mRNA vaccines. However, the expansion of mRNA therapies beyond COVID-19 is impeded by the absence of LNPs tailored for diverse cell types. In this study, we present the AI-Guided Ionizable Lipid Engineering (AGILE) platform, a synergistic combination of deep learning and combinatorial chemistry. AGILE streamlines ionizable lipid development with efficient library design, in silico lipid screening via deep neural networks, and adaptability to diverse cell lines. Using AGILE, we rapidly design, synthesize, and evaluate ionizable lipids for mRNA delivery, selecting from a vast library. Intriguingly, AGILE reveals cell-specific preferences for ionizable lipids, indicating tailoring for optimal delivery to varying cell types. These highlight AGILE's potential in expediting the development of customized LNPs, addressing the complex needs of mRNA delivery in clinical practice, thereby broadening the scope and efficacy of mRNA therapies.
Publisher
Nature Communications
Published On
Jul 26, 2024
Authors
Yue Xu, Shihao Ma, Haotian Cui, Jingan Chen, Shufen Xu, Fanglin Gong, Alex Golubovic, Muye Zhou, Kevin Chang Wang, Andrew Varley, Rick Xing Ze Lu, Bo Wang, Bowen Li
Tags
Ionizable lipid nanoparticles
mRNA delivery
AGILE platform
deep learning
combinatorial chemistry
lipid development
customized therapies
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