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Polyplex Evolution: Understanding Biology Optimizing Performance

机译:多重进化:了解生物学优化性能

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摘要

Polyethylenimine (PEI) is a gold standard polycationic transfectant. However, the highly efficient transfecting activity of PEI and many of its derivatives is accompanied by serious cytotoxic complications and safety concerns at innate immune levels, which impedes the development of therapeutic polycationic nucleic acid carriers in general and their clinical applications. In recent years, the dilemma between transfection efficacy and adverse PEI activities has been addressed from in-depth investigations of cellular processes during transfection and elucidation of molecular mechanisms of PEI-mediated toxicity and translation of these integrated events to chemical engineering of novel PEI derivatives with an improved benefit-to-risk ratio. This review addresses these perspectives and discusses molecular events pertaining to dynamic and multifaceted PEI-mediated cytotoxicity, including membrane destabilization, mitochondrial dysfunction, and perturbations of glycolytic flux and redox homeostasis as well as chemical strategies for the generation of better tolerated polycations. We further examine the effect of PEI and its derivatives on complement activation and interaction with Toll-like receptors. These perspectives are intended to lay the foundation for an improved understanding of interlinked mechanisms controlling transfection and toxicity and their translation for improved engineering of polycation-based transfectants.
机译:聚乙烯亚胺(PEI)是金标准的聚阳离子转染子。但是,PEI及其许多衍生物的高效转染活性伴随着先天免疫水平的严重细胞毒性并发症和安全问题,这阻碍了治疗性聚阳离子核酸载体的普遍发展及其临床应用。近年来,转染效率和不良PEI活性之间的两难局面已通过深入研究转染过程中的细胞过程以及阐明PEI介导的毒性的分子机制以及将这些整合事件转化为新的PEI衍生物的化学工程来解决。改进的风险比。这篇综述阐述了这些观点,并讨论了与动态和多面PEI介导的细胞毒性有关的分子事件,包括膜失稳,线粒体功能障碍,糖酵解通量和氧化还原稳态的扰动,以及产生更好耐受的聚阳离子的化学策略。我们进一步检查了PEI及其衍生物对补体激活和与Toll样受体相互作用的影响。这些观点旨在为更好地理解控制转染和毒性的相互关联的机制以及它们的翻译奠定基础,以更好地改造基于聚阳离子的转染子。

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