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首页> 外文期刊>Science Advances >Increased PIP3 activity blocks nanoparticle mRNA delivery
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Increased PIP3 activity blocks nanoparticle mRNA delivery

机译:增加PIP3活性块纳米粒子mRNA递送

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摘要

The biological pathways that affect drug delivery in vivo remain poorly understood. We hypothesized that altering cell metabolism with phosphatidylinositol (3,4,5)-triphosphate (PIP3), a bioactive lipid upstream of the metabolic pathway PI3K (phosphatidylinositol 3-kinase)/AKT/ mTOR (mammalian target of rapamycin) would transiently increase protein translated by nanoparticle-delivered messenger RNA (mRNA) since these pathways increase growth and proliferation. Instead, we found that PIP3 blocked delivery of clinically-relevant lipid nanoparticles (LNPs) across multiple cell types in vitro and in vivo. PIP3-driven reductions in LNP delivery were not caused by toxicity, cell uptake, or endosomal escape. Interestingly, RNA sequencing and metabolomics analyses suggested an increase in basal metabolic rate. Higher transcriptional activity and mitochondrial expansion led us to formulate two competing hypotheses that explain the reductions in LNP-mediated mRNA delivery. First, PIP3 induced consumption of limited cellular resources, “drowning out” exogenously-delivered mRNA. Second, PIP3 triggers a catabolic response that leads to protein degradation and decreased translation.
机译:影响体内药物递送的生物途径仍然难以理解。我们假设用磷脂酰肌醇(3,4,5) - 三磷酸(3,4,5) - 三磷酸(PIP3)改变细胞代谢,代谢途径PI3K(磷脂酰肌醇3-激酶)/ akt / mTOR(哺乳动物催乳素靶标)上游的生物活性脂质将瞬时增加蛋白质由纳米粒子递送的信使RNA(mRNA)翻译,因为这些途径增加了生长和增殖。相反,我们发现PIP3在体外和体内在多种细胞类型中封闭临床相关的脂质纳米颗粒(LNP)。 LNP递送的PIP 3驱动的减少不是由毒性,细胞吸收或内体逃逸引起的。有趣的是,RNA测序和代谢组科分析表明基础代谢率增加。转录活性和线粒体膨胀较高导致我们制定两个竞争假设,解释了LNP介导的mRNA递送的减少。首先,PIP3诱导有限蜂窝资源的消耗,“淹没”外源性递送的mRNA。其次,PIP3触发了抗蛋白酶反应,导致蛋白质降解和降低的翻译。

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