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Influence of Polyethylene Glycol Lipid Desorption Rates on Pharmacokinetics and Pharmacodynamics of siRNA Lipid Nanoparticles

机译:聚乙二醇脂质解吸速率对siRNA脂质纳米颗粒药代动力学和药效学的影响

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摘要

Lipid nanoparticles (LNPs) encapsulating short interfering RNAs that target hepatic genes are advancing through clinical trials, and early results indicate the excellent gene silencing observed in rodents and nonhuman primates also translates to humans. This success has motivated research to identify ways to further advance this delivery platform. Here, we characterize the polyethylene glycol lipid (PEG-lipid) components, which are required to control the self-assembly process during formation of lipid particles, but can negatively affect delivery to hepatocytes and hepatic gene silencing in vivo. The rate of transfer from LNPs to plasma lipoproteins in vivo is measured for three PEG-lipids with dialkyl chains 14, 16, and 18 carbons long. We show that 1.5 mol % PEG-lipid represents a threshold concentration at which the chain length exerts a minimal effect on hepatic gene silencing but can still modify LNPs pharmacokinetics and biodistribution. Increasing the concentration to 2.5 and 3.5 mol % substantially compromises hepatocyte gene knockdown for PEG-lipids with distearyl (C18) chains but has little impact for shorter dimyristyl (C14) chains. These data are discussed with respect to RNA delivery and the different rates at which the steric barrier disassociates from LNPs in vivo.
机译:封装靶向肝基因的短干扰RNA的脂质纳米颗粒(LNP)正在通过临床试验进行中,并且早期结果表明在啮齿动物和非人类灵长类动物中观察到的优异的基因沉默也可以转化为人类。这一成功激发了研究人员确定进一步推进此交付平台的方法。在这里,我们表征聚乙二醇脂质(PEG-脂质)组件,这是控制脂质颗粒形成过程中的自组装过程所必需的,但会对体内向肝细胞的递送和肝基因沉默产生负面影响。对于三个具有14个,16个和18个碳原子的二烷基链的PEG脂质,测量了体内LNP向血浆脂蛋白的转移速率。我们表明1.5?mol%PEG-脂质代表阈值浓度,在该浓度下链长对肝基因沉默的影响最小,但仍可以修饰LNPs的药代动力学和生物分布。对于具有二硬脂基(C18)链的PEG-脂质,将浓度增加至2.5和3.5?mol%会大大损害肝细胞基因的敲低,但对较短的二甲基克里斯基(C14)链影响很小。讨论了有关RNA递送以及体内空间屏障与LNP分离的不同速率的这些数据。

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