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Systemic delivery of siRNA to tumors using a lipid nanoparticle containing a tumor-specific cleavable PEG-lipid

机译:使用含有肿瘤特异性可裂解PEG-脂质的脂质纳米颗粒将siRNA系统递送至肿瘤

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摘要

Previously, we developed a multifunctional envelope-type nano device (MEND) for efficient delivery of nucleic acids. For tumor delivery of a MEND, PEGylation is a useful method, which confers a longer systemic circulation and tumor accumulation via the enhanced permeability and retention (EPR) effect. However, PEGylation inhibits cellular uptake and subsequent endosomal escape. To overcome this, we developed a PEG-peptide-DOPE (PPD) that is cleaved in a matrix metalloproteinase (MMP)-rich environment. In this study, we report on the systemic delivery of siRNA to tumors by employing a MEND that is modified with PPD (PPD-MEND). An in vitro study revealed that PPD modification accelerated both cellular uptake and endosomal escape, compared to a conventional PEG modified MEND. To balance both systemic stability and efficient activity, PPD-MEND was further co-modified with PEG-DSPE. As a result, the systemic administration of the optimized PPD-MEND resulted in an approximately 70% silencing activity in tumors, compared to non-treatment. Finally, a safety evaluation showed that the PPD-MEND showed no hepatotoxicity and innate immune stimulation. Furthermore, in a DNA microarray analysis in liver and spleen tissue, less gene alternation was found for the PPD-MEND compared to that for the PEG-unmodified MEND due to less accumulation in liver and spleen.
机译:以前,我们开发了用于有效传递核酸的多功能信封型纳米设备(MEND)。对于MEND的肿瘤递送,聚乙二醇化是一种有用的方法,可通过增强的通透性和保留(EPR)效应赋予更长的系统循环和肿瘤积累。但是,聚乙二醇化会抑制细胞摄取和随后的内体逃逸。为了克服这个问题,我们开发了在富含基质金属蛋白酶(MMP)的环境中裂解的PEG-肽-DOPE(PPD)。在这项研究中,我们报告了通过使用经PPD修饰的MEND(PPD-MEND)将siRNA全身性递送至肿瘤。一项体外研究显示,与常规PEG修饰的MEND相比,PPD修饰可促进细胞摄取和内体逃逸。为了平衡全身稳定性和有效活性,PPD-MEND与PEG-DSPE进一步共修饰。结果,与非治疗相比,全身施用优化的PPD-MEND导致肿瘤中约70%的沉默活性。最后,安全性评估表明PPD-MEND没有显示肝毒性和先天免疫刺激作用。此外,在肝脏和脾脏组织中进行的DNA芯片分析中,与未修饰PEG的MEND相比,PPD-MEND的基因改变较少,这是因为肝脏和脾脏的积聚较少。

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