首页> 美国卫生研究院文献>Acta Pharmaceutica Sinica. B >A preliminary study on the interaction between Asn-Gly-Arg (NGR)-modified multifunctional nanoparticles and vascular epithelial cells
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A preliminary study on the interaction between Asn-Gly-Arg (NGR)-modified multifunctional nanoparticles and vascular epithelial cells

机译:Asn-Gly-Arg(NGR)修饰的多功能纳米颗粒与血管上皮细胞相互作用的初步研究

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摘要

Previously developed Asn-Gly-Arg (NGR) peptide-modified multifunctional poly(ethyleneimine)–poly(ethylene glycol) (PEI–PEG)-based nanoparticles (TPIC) have been considered to be promising carriers for the co-delivery of DNA and doxorubicin (DOX). As a continued effort, the aim of the present study was to further evaluate the interaction between TPIC and human umbilical vein endothelial cells (HUVEC) to better understand the cellular entry mechanism. In the present investigation, experiments relevant to co-localization, endocytosis inhibitors and factors influencing the internalization were performed. Without any treatment, there was no co-localization between aminopeptidase N/CD13 (APN/CD13) and caveolin 1 (CAV1). However, co-localization between CD13 and CAV1 was observed when cells were incubated with an anti-CD13 antibody or TPIC. As compared with antibody treatment, TPIC accelerated the speed and enhanced the degree of co-localization. TPIC entered HUVEC not only together with CD13 but also together with CAV1. However, this internalization was not dependent on the enzyme activity of CD13 but could be inhibited by methyl-β-eyclodextfin (MβCD), further identifying the involvement of caveolae-mediated endocytosis (CvME). This conclusion was also verified by endocytosis inhibitor experiments.
机译:以前开发的Asn-Gly-Arg(NGR)肽修饰的多功能聚(乙烯亚胺)-聚(乙二醇)(PEI-PEG)基纳米颗粒(TPIC)被认为是有希望的DNA和DNA共同递送载体。阿霉素(DOX)。作为一项持续的工作,本研究的目的是进一步评估TPIC与人脐静脉内皮细胞(HUVEC)之间的相互作用,以更好地了解细胞进入机制。在本研究中,进行了与共定位,内吞抑制剂和影响内在化的因素有关的实验。未经任何处理,氨基肽酶N / CD13(APN / CD13)和小窝蛋白1(CAV1)之间没有共定位。但是,当将细胞与抗CD13抗体或TPIC孵育时,会观察到CD13和CAV1之间的共定位。与抗体处理相比,TPIC加快了速度,并提高了共定位的程度。 TPIC不仅与CD13一起进入了HUVEC,而且还与CAV1一起进入了HUVEC。然而,这种内在化并不依赖于CD13的酶活性,而是可以被甲基-β-环糊精(MβCD)抑制,从而进一步确定了小窝介导的胞吞作用(CvME)。内吞抑制剂实验也证实了这一结论。

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