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Boosting intracellular delivery of lipid nanoparticle-encapsulated messenger RNA

机译:促进脂质纳米粒包裹的信使RNA的细胞内传递。

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摘要

Intracellular delivery of mRNA holds great potential for vaccine and therapeutic discovery and development. Despite increasing recognition of the utility of lipid-based nanoparticles (LNPs) for intracellular delivery of mRNA, particle engineering is hindered by insufficient understanding of endosomal escape, which is believed to be a main limiter of cytosolic availability and activity of the nucleic acid inside the cell. Using a series of CRISPR-based genetic perturbations of the lysosomal pathway, we have identified that late endosome/lysosome (LE/Ly) formation is essential for functional delivery of exogenously presented mRNA. Lysosomes provide a spatio-temporal hub to orchestrate mTOR signaling and are known to control cell proliferation, nutrient sensing, ribosomal biogenesis, and mRNA translation. Through modulation of the mTOR pathway we were able to enhance or inhibit LNP-mediated mRNA delivery. To further boost intracellular delivery of mRNA we screened 212 bioactive lipid-like molecules that are either enriched in vesicular compartments or modulate cell signaling. Surprisingly, we have discovered that leukotriene-antagonists, clinically approved for treatment of asthma and other lung diseases, enhance intracellular mRNA delivery in vitro (over 3-fold, p<0.005) and in vivo (over 2-fold, p<0.005). Understanding LNP-mediated intracellular delivery will inspire the next generation of RNA therapeutics that have high potency and. limited toxicity.
机译:mRNA的细胞内传递对于疫苗和治疗性 的发现和开发具有巨大的潜力。尽管人们越来越认识到脂质基纳米颗粒(LNPs)在细胞内传递mRNA的效用,但由于对内体逃逸的了解不足,阻碍了颗粒工程的发展,而内体逃逸被认为是限制细胞内核酸利用效率和活性的主要限制因素。细胞。使用溶酶体途径的一系列基于CRISPR的遗传扰动,我们发现晚期内体/溶酶体(LE / Ly)形成对于外源呈递的mRNA的功能传递至关重要。溶酶体提供了一个时空枢纽来协调mTOR信号传导,并已知可控制细胞增殖,营养物感应,核糖体生物发生和mRNA翻译。通过调节mTOR途径,我们能够增强或抑制LNP介导的mRNA传递。为了进一步促进mRNA的细胞内传递,我们筛选了212个生物活性脂质样分子,这些分子富含囊泡区或调节细胞信号传导。出乎意料的是,我们发现临床上批准用于治疗哮喘和其他肺部疾病的白三烯拮抗剂可增强体外(超过3倍,p <0.005)和体内(超过2倍,p <0.005)的细胞内mRNA递送。 。了解LNP介导的细胞内传递将激发具有高效能的下一代RNA治疗药物。毒性有限。

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