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生物相容性阳离子聚合物介导的基因递送:细胞生物活性的药物基因组学分析

Gene delivery with biocompatible cationic polymer: pharmacogenomic analysis on cell bioactivity.

作者信息

Masago Kayo, Itaka Keiji, Nishiyama Nobuhiro, Chung Ung-Il, Kataoka Kazunori

机构信息

Division of Clinical Biotechnology, Center for Disease Biology and Integrative Medicine, Graduate School of Medicine, The University of Tokyo, Japan.

出版信息

Biomaterials. 2007 Dec;28(34):5169-75. doi: 10.1016/j.biomaterials.2007.07.019. Epub 2007 Jul 30.

DOI:10.1016/j.biomaterials.2007.07.019
PMID:17664002
Abstract

The availability of non-viral gene delivery systems is determined by their capacity and safety during gene introduction. In this study, the safety issues of polyplex were analyzed from the standpoint of the biomolecular mechanisms. P[Asp(DET)], a newly developed polymer, polyasparagine carrying the N-(2-aminoethyl)aminoethyl group as the side chain which was recently revealed to show good transfection efficiency to primary cells, was compared to conventional linear poly(ethylenimine) (LPEI). After transfection toward a bioluminescent cell line, P[Asp(DET)] maintained the expression level of stably expressing luciferase. In contrast, LPEI showed a decrease in the luciferase expression, while the similar expression of exogenous reporter gene was obtained. Evaluation of the housekeeping genes expression as well as the profiles of pDNA uptake after transfection suggested the time-dependent toxicity of LPEI that perturbs cellular homeostasis. Consistently, the induction of osteogenic differentiation by functional gene introduction was achieved only by P[Asp(DET)], even though appreciable expression of the gene was achieved by LPEI. It is crucial that this aspect of safety be taken into account, especially when the gene introduction is applied to primary cells to regulate such cell function as differentiation. This biomolecular analysis focusing on cellular homeostasis is beneficial for assessing the practicability of the gene delivery systems for clinical application.

摘要

非病毒基因递送系统的可用性取决于其在基因导入过程中的能力和安全性。在本研究中,从生物分子机制的角度分析了多聚体的安全性问题。将一种新开发的聚合物P[Asp(DET)](一种以N-(2-氨基乙基)氨基乙基为侧链的聚天冬酰胺,最近发现其对原代细胞具有良好的转染效率)与传统的线性聚乙烯亚胺(LPEI)进行了比较。在转染至生物发光细胞系后,P[Asp(DET)]维持了稳定表达荧光素酶的表达水平。相比之下,LPEI的荧光素酶表达有所下降,而外源报告基因的表达相似。对管家基因表达的评估以及转染后pDNA摄取情况表明,LPEI具有时间依赖性毒性,会干扰细胞内稳态。一致的是,仅通过P[Asp(DET)]实现了功能性基因导入诱导的成骨分化,尽管LPEI也实现了该基因的可观表达。尤其当基因导入应用于原代细胞以调节细胞分化等功能时,考虑这一安全方面至关重要。这种关注细胞内稳态的生物分子分析有助于评估基因递送系统在临床应用中的实用性。

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