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一种可还原的聚阳离子基因载体,由通过 2-亚氨基硫烷连接的巯基化低分子量支化聚乙烯亚胺衍生而来。

A reducible polycationic gene vector derived from thiolated low molecular weight branched polyethyleneimine linked by 2-iminothiolane.

机构信息

Department of Pharmaceutics and Pharmaceutical Chemistry, The University of Utah, 421 Wakara way, Suite 318, Salt Lake City, UT 84108, USA.

出版信息

Biomaterials. 2011 Feb;32(4):1193-203. doi: 10.1016/j.biomaterials.2010.08.079. Epub 2010 Nov 10.

Abstract

To improve transfection efficiency and reduce the cytotoxicity of polymeric gene vectors, reducible polycations (RPC) were synthesized from low molecular weight (MW) branched polyethyleneimine (bPEI) via thiolation and oxidation. RPC (RPC-bPEI(0.8 kDa)) possessed MW of 5 kDa-80 kDa, and 50%-70% of the original proton buffering capacity of bPEI(0.8 kDa) was preserved in the final product. The cytotoxicity of RPC-bPEI(0.8 kDa) was 8-19 times less than that of the gold standard of polymeric transfection reagents, bPEI(25 kDa). Although bPEI(0.8 kDa) exhibited poor gene condensing capacities (∼2 μm at a weight ratio (WR) of 40), RPC-bPEI(0.8 kDa) effectively condensed plasmid DNA (pDNA) at a WR of 2. Moreover, RPC-bPEI(0.8 kDa)/pDNA (WR ≥2) formed 100-200 nm-sized particles with positively charged surfaces (20-35 mV). In addition, the results of the present study indicated that thiol/polyanions triggered the release of pDNA from RPC-bPEI(0.8 kDa)/pDNA via the fragmentation of RPC-bPEI(0.8 kDa) and ion-exchange. With negligible polyplex-mediated cytotoxicity, the transfection efficiencies of RPC-bPEI(0.8 kDa)/pDNA were approximately 1200-1500-fold greater than that of bPEI(0.8 kDa)/pDNA and were equivalent or superior (∼7-fold) to that of bPEI(25 kDa)/pDNA. Interestingly, the distribution of high MW RPC-bPEI(0.8 kDa)/pDNA in the nucleus of the cell was higher than that of low MW RPC-bPEI(0.8 kDa)/pDNA. Thus, the results of the present study suggest that RPC-bPEI(0.8 kDa) has the potential to effectively deliver genetic materials with lower levels of toxicity.

摘要

为了提高聚合物基因载体的转染效率并降低其细胞毒性,通过巯基化和氧化作用,从低分子量(MW)支化聚乙烯亚胺(bPEI)合成了还原性聚阳离子(RPC)。RPC(RPC-bPEI(0.8 kDa))的 MW 为 5 kDa-80 kDa,并且在最终产物中保留了原始 bPEI(0.8 kDa)质子缓冲能力的 50%-70%。RPC-bPEI(0.8 kDa)的细胞毒性比聚合物转染试剂的金标准 bPEI(25 kDa)低 8-19 倍。尽管 bPEI(0.8 kDa)表现出较差的基因凝聚能力(重量比(WR)为 40 时约为 2μm),但 RPC-bPEI(0.8 kDa)可有效地在 WR 为 2 时凝聚质粒 DNA(pDNA)。此外,RPC-bPEI(0.8 kDa)/pDNA(WR≥2)形成带正电荷表面(20-35 mV)的 100-200nm 大小的颗粒。此外,本研究的结果表明,巯基/聚阴离子通过 RPC-bPEI(0.8 kDa)的断裂和离子交换触发 pDNA 从 RPC-bPEI(0.8 kDa)/pDNA 的释放。RPC-bPEI(0.8 kDa)/pDNA 的转染效率与 bPEI(0.8 kDa)/pDNA 相比大约高 1200-1500 倍,与 bPEI(25 kDa)/pDNA 相当或更高(约 7 倍)。有趣的是,细胞核中高 MW RPC-bPEI(0.8 kDa)/pDNA 的分布高于低 MW RPC-bPEI(0.8 kDa)/pDNA。因此,本研究的结果表明,RPC-bPEI(0.8 kDa)具有有效递送遗传物质的潜力,同时毒性水平较低。

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