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引入硫酸软骨素对细胞内信号响应的聚合物-肽缀合物的影响。

Effect of introduction of chondroitin sulfate into polymer-peptide conjugate responding to intracellular signals.

机构信息

Graduate School of Systems Life Sciences, Kyushu University, Fukuoka 819-0395, Japan.

出版信息

Nanoscale Res Lett. 2011 Sep 30;6(1):532. doi: 10.1186/1556-276X-6-532.

Abstract

We recently developed a novel tumor-targeted gene delivery system responding to hyperactivated intracellular signals. Polymeric carrier for gene delivery consists of hydrophilic neutral polymer as main chains and cationic peptide substrate for target enzyme as side chains, and was named polymer-peptide conjugate (PPC). Introduction of chondroitin sulfate (CS), which induces receptor-medicated endocytosis, into polymers mainly with a high cationic charge density such as polyethylenimine can increase tumor-targeted gene delivery. In the present study, we examined whether introduction of CS into PPC containing five cationic amino acids can increase gene expression in tumor cells. Size and zeta potential of plasmid DNA (pDNA)/PPC/CS complex were <200 nm and between -10 and -15 mV, respectively. In tumor cell experiments, pDNA/PPC/CS complex showed lower stability and gene regulation, compared with that of pDNA/PPC. Moreover, no difference in gene expression was identified between positive and negative polymer. These results were caused by fast disintegration of pDNA/PPC/CS complexes in the presence of serum. Thus, we suggest that introduction of negatively charged CS into polymers with a low charge density may lead to low stability and gene regulation of complexes.

摘要

我们最近开发了一种新型的肿瘤靶向基因传递系统,该系统对过度激活的细胞内信号做出响应。用于基因传递的聚合物载体由亲水性中性聚合物作为主链和靶向酶的阳离子肽底物作为侧链组成,被命名为聚合物-肽缀合物(PPC)。在带高正电荷密度的聚合物(如聚乙烯亚胺)中引入可诱导受体介导的内吞作用的硫酸软骨素(CS)可以增加肿瘤靶向基因传递。在本研究中,我们研究了在含有五个阳离子氨基酸的 PPC 中引入 CS 是否可以增加肿瘤细胞中的基因表达。质粒 DNA(pDNA)/PPC/CS 复合物的大小和 zeta 电位分别小于 200nm 和-10 到-15mV。在肿瘤细胞实验中,与 pDNA/PPC 相比,pDNA/PPC/CS 复合物的稳定性和基因调控能力更低。此外,阳性和阴性聚合物之间的基因表达没有差异。这些结果是由于在存在血清的情况下 pDNA/PPC/CS 复合物的快速崩解所致。因此,我们认为,在带低电荷密度的聚合物中引入带负电荷的 CS 可能会导致复合物的稳定性和基因调控能力降低。

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