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首页> 外文期刊>RSC Advances >Hydroxyethyl substituted linear polyethylenimine for safe and efficient delivery of siRNA therapeutics
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Hydroxyethyl substituted linear polyethylenimine for safe and efficient delivery of siRNA therapeutics

机译:羟乙基取代的线性聚乙烯亚胺可安全有效地递送siRNA治疗剂

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摘要

Linear polyethylenimine (LPEI) has been well reported as a carrier for siRNA delivery. However, its applications are limited due to its highly ionized state at physiologic pH and the resultant charge mediated toxicity. The presence of ionizable secondary amines in LPE are responsible for its unique characteristics such as pH dependent solubility and positive charge. Therefore, modification of LPEI was carried out to obtain hydroxyethyl substituted LPEI with the degree of substitution ranging from 15% to 45%. The impact of modification on the physicochemical parameters of the polymer, i.e. buffer capacity, solubility, biocompatibility and stability, was evaluated. Surprisingly, despite the loss of ionizable amines, the substitution improved solubility, and even overcame the pH dependent solubility of LPEI. In addition, the conversion of secondary amines to less basic tertiary amines after substitution improved the buffer capacity, in the endosomal pH range, required for efficient endosomal escape. It also reduced erythrocyte aggregation, hemolytic potential and in vitro cytotoxicity. The in vitro studies showed enhanced cell uptake and mRNA knockdown efficiency. Thus, the proposed modification shows a simple approach to overcome the limitation of LPEI for siRNA delivery.
机译:线性聚乙烯亚胺(LPEI)已被报道作为siRNA传递的载体。然而,由于其在生理pH下的高度离子化状态以及由此产生的电荷介导的毒性,其应用受到限制。 LPE中可电离的仲胺的存在是其独特的特性,例如pH依赖性溶解度和正电荷。因此,进行LPEI的改性以获得取代度为15%至45%的羟乙基取代的LPEI。评估了改性对聚合物的理化参数的影响,即缓冲容量,溶解度,生物相容性和稳定性。出人意料的是,尽管损失了可电离的胺,但是该取代提高了溶解度,甚至克服了LPEI的pH依赖性溶解度。另外,取代后,仲胺向碱性较低的叔胺的转化提高了有效的内体逃逸所需的在内体pH范围内的缓冲能力。它还减少了红细胞聚集,溶血潜力和体外细胞毒性。体外研究显示增强的细胞摄取和mRNA敲除效率。因此,提出的修饰显示了一种克服LPEI用于siRNA的局限性的简单方法。

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