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首页> 外文期刊>Journal of Applied Polymer Science >A review of the developments of characteristics of PEI derivatives for gene delivery applications
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A review of the developments of characteristics of PEI derivatives for gene delivery applications

机译:PEI衍生物在基因传递应用中的特性发展概况

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摘要

Redox-active stimuli have gained a great deal of interest as an indicating factor for designing bioresponsive matrices in gene delivery. Hence, a wide range of gene carriers has been designed incorporating the redox-stimuli characteristics. The most important type of gene carriers is the class of redox responsive polymers. Among them, disulfide incorporated redox-responsive polyethyleneimine (PEI) and its derivatives, as a result of their outstanding DNA entrapping characteristics and their intrinsic endosomolytic activity, have attracted considerable attention in recent studies. The review presents the main developments of the characteristics of PEI derivatives and their applications in gene delivery. It is found that despite the uniquely stated characteristics, the noncleavable structure of conventional PEI (high molecular weight PEI: 25k), which makes it a nondegradable material, as well as the frequent inclusion of positively charged amino groups, which reduces its blood circulation period, render conventional PEI a very toxic material for gene-delivery applications. The extremely high cellular toxicity of conventional PEI has restricted its administration for real in-vivo physiological media. Recent studies have shown that employing low molecular weight PEI cross-linked by disulfide linkages (SS-PEI) and assembling low molecular weight disulfide linkages PEI (LMW SS-PEI) with bio-detachable anionic groups were two successful approaches for increasing bioavailability of the PEI-based gene carriers, while keeping outstanding cellular transfection. (c) 2015 Wiley Periodicals, Inc. J. Appl. Polym. Sci. 2015, 132, 42096.
机译:氧化还原活性刺激作为设计基因传递中生物响应矩阵的指示因素已引起了广泛的关注。因此,已经设计了包含氧化还原刺激特性的多种基因载体。基因载体的最重要类型是氧化还原反应性聚合物。其中,由于二硫键结合的氧化还原反应性聚乙烯亚胺(PEI)及其衍生物,由于其出色的DNA捕获特性和固有的内溶酶活性,在最近的研究中引起了相当大的关注。审查介绍了PEI衍生物的特性及其在基因传递中的应用的主要发展。结果发现,尽管具有独特的特征,但传统PEI的不可裂解结构(高分子量PEI:25k)使其成为不可降解的材料,并且经常包含带正电荷的氨基,从而缩短了其血液循环时间使得传统的PEI成为用于基因传递应用的剧毒材料。传统PEI的极高细胞毒性限制了其在实际体内生理介质中的给药。最近的研究表明,采用通过二硫键(SS-PEI)交联的低分子量PEI以及将低分子量二硫键PEI(LMW SS-PEI)与可生物分离的阴离子基团组装在一起是提高生物利用度的两种成功方法基于PEI的基因载体,同时保持出色的细胞转染。 (c)2015 Wiley Periodicals,Inc. J. Appl。 Polym。科学2015,132,42096。

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