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细胞膜巯基和还原触发的解组装对生物可还原的聚合物转染活性的影响。

Effect of cell membrane thiols and reduction-triggered disassembly on transfection activity of bioreducible polyplexes.

机构信息

Department of Pharmaceutical Sciences, Wayne State University, Detroit, MI, USA.

出版信息

Eur J Pharm Sci. 2012 Jun 14;46(3):173-80. doi: 10.1016/j.ejps.2012.02.020. Epub 2012 Mar 3.

Abstract

Bioreducible polyplexes are promising vectors for delivery of nucleic acids due to low toxicity and favorable transfection activity. The often improved transfection is usually explained by enhanced intracellular reductive disassembly of the polyplexes. This study evaluated the effect of enhanced reductive disassembly on transfection activity of plasmid DNA and antisense oligonucleotide (AON) polyplexes based on a series of bioreducible poly(amido amine)s (PAA). We found that the presence of disulfide bonds in PAA had no effect on nucleic acid binding, hydrodynamic size and zeta potential of polyplexes. Increasing the disulfide content in PAA increased susceptibility to reduction-triggered DNA and AON release from the polyplexes. Increasing the disulfide content in PAA increased DNA transfection but had no effect on AON transfection. Plasma membrane protein thiols played a key role in the observed enhancement of DNA transfection. The presence of disulfide bonds in PAA had no significant effect on the rate of intracellular DNA clearance, suggesting that enhanced intracellular disassembly of the bioreducible polyplexes is not a major contributing factor to the improved transfection activity.

摘要

生物还原聚合物由于其低毒性和良好的转染活性,是一种很有前途的核酸传递载体。通常,转染效率的提高通常可以解释为聚合物的还原解组装增强。本研究基于一系列生物还原聚酰胺-胺(PAA),评估了增强的还原解组装对质粒 DNA 和反义寡核苷酸(AON)聚合物转染活性的影响。我们发现 PAA 中存在二硫键对核酸结合、聚合物的水动力大小和 ζ 电位没有影响。增加 PAA 中二硫键的含量会增加还原引发的聚合物从 DNA 和 AON 中释放的敏感性。增加 PAA 中二硫键的含量会增加 DNA 的转染,但对 AON 的转染没有影响。质膜蛋白巯基在观察到的 DNA 转染增强中起关键作用。PAA 中二硫键的存在对细胞内 DNA 清除率没有显著影响,这表明生物还原聚合物的细胞内解组装增强不是提高转染活性的主要因素。

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