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用于增强聚乙二醇化金纳米颗粒摄取的肽的整合

Integration of Peptides for Enhanced Uptake of PEGylayed Gold Nanoparticles.

作者信息

Cruje C, Chithrani B D

出版信息

J Nanosci Nanotechnol. 2015 Mar;15(3):2125-31. doi: 10.1166/jnn.2015.10321.

Abstract

Polyethylene glycol (PEG) has promoted the prospective applications of nanoparticles (NPs) in cancer therapy. PEG is used to evade the immune system allowing NPs accumulation within the tumor using its leaky vasculature. However, the cellular uptake of PEG-coated (PEGylated) NPs is lower in comparison to non-PEGylated NPs since PEG minimizes surface binding of ligands that mediate NP endocytosis. For improved outcome in therapeutic applications, it is necessary to enhance the uptake of PEGylated NPs. We added a peptide containing an integrin binding domain known as the RGD sequence to the NP surface in addition to PEG. We used gold NPs (GNPs) of sizes 14, 50, and 70 nm in this study. Our in vitro data for HeLa cells show enhanced uptake for NPs coated with both PEG and the peptide in comparison to PEGylated GNPs. NPs of size 50 nm had the highest uptake among the three sizes for all GNP surfaces. A similar size-dependent trend was observed for MDA-MB-231 cells for as-made GNPs with lower uptake in comparison to HeLa cells. However, only 14 nm peptide-modified PEGylated NPs had enhanced uptake. Hence, NP uptake was found dependent on cell type and NP surface properties. A properly designed NP system with both PEG and cell membrane targeting peptides can be used to protect it from the immune system and promote internalization by cells upon entry into tumor environment.

摘要

聚乙二醇(PEG)推动了纳米颗粒(NPs)在癌症治疗中的潜在应用。PEG用于逃避免疫系统,利用肿瘤渗漏的脉管系统使NPs在肿瘤内蓄积。然而,与未聚乙二醇化的NPs相比,聚乙二醇包被(聚乙二醇化)的NPs的细胞摄取较低,因为PEG使介导NP内吞作用的配体的表面结合最小化。为了在治疗应用中获得更好的效果,有必要提高聚乙二醇化NPs的摄取。除了PEG之外,我们还在NP表面添加了一种含有整合素结合域(称为RGD序列)的肽。在本研究中,我们使用了尺寸为14、50和70nm的金纳米颗粒(GNPs)。我们对HeLa细胞的体外数据显示,与聚乙二醇化的GNPs相比,同时包被PEG和该肽的NPs的摄取增强。对于所有GNP表面,50nm尺寸的NPs在这三种尺寸中摄取最高。对于MDA-MB-231细胞,对于制备好的GNPs观察到类似的尺寸依赖性趋势,其摄取低于HeLa细胞。然而,只有14nm的肽修饰的聚乙二醇化NPs摄取增强。因此,发现NP摄取取决于细胞类型和NP表面性质。一个经过合理设计的同时具有PEG和细胞膜靶向肽的NP系统可用于保护其免受免疫系统攻击,并在进入肿瘤环境后促进细胞内化。

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