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具有不同亲水/亲水平衡比的 PEOz-b-PLA 胶束的 pH 敏感性和细胞内化机制以及共聚物的细胞内转运途径和命运。

Mechanisms of pH-Sensitivity and Cellular Internalization of PEOz-b-PLA Micelles with Varied Hydrophilic/Hydrophobic Ratios and Intracellular Trafficking Routes and Fate of the Copolymer.

机构信息

Beijing Key Laboratory of Molecular Pharmaceutics and New Drug Delivery Systems, School of Pharmaceutical Sciences, Peking University , Beijing 100191, China.

Department of Pharmaceutical Sciences, Beijing Institute of Radiation Medicine , 27 Taiping Road, Beijing 100850, China.

出版信息

ACS Appl Mater Interfaces. 2017 Mar 1;9(8):6916-6930. doi: 10.1021/acsami.6b16376. Epub 2017 Feb 17.

Abstract

pH-responsive polymeric micelles have shown promise for the targeted and intracellular delivery of antitumor agents. The present study aimed to elucidate the possible mechanisms of pH-sensitivity and cellular internalization of PEOz-b-PLA micelles in detail, further unravel the effect of hydrophilic/hydrophobic ratio of the micelles on their cellular internalization, and examine the intracellular trafficking routes and fate of PEOz-b-PLA after internalization of the micelles. The results of variations in the size and Zeta potential of PEOz-b-PLA micelles and cross-sectional area of PEOz-b-PLA molecules with pH values suggested that electrostatic repulsion between PEOz chains resulting from ionization of the tertiary amide groups along PEOz chain at pH lower than its pK was responsible for pH-sensitivity of PEOz-b-PLA micelles. Furthermore, the studies on internalization of PEOz-b-PLA micelles by MCF-7 cells revealed that the uptake of PEOz-b-PLA micelles was strongly influenced by their structural features, and showed that PEOz-b-PLA micelles with hydrophilic/hydrophobic ratio of 1.7-2.0 exhibited optimal cellular uptake. No evident alteration in cellular uptake of PEOz-b-PLA micelles was detected by flow cytometry upon the existence of EIPA and chlorpromazine. However, the intracellular uptake of the micelles in the presence of MβCD and genistein was effectively inhibited. Hence, the internalization of such micelles by MCF-7 cells appeared to proceed mainly through caveolae/lipid raft-mediated endocytosis without being influenced by their hydrophilic/hydrophobic ratio. Confocal micrographs revealed that late endosomes, mitochondria and endoplasmic reticulum were all involved in the intracellular trafficking of PEOz-b-PLA copolymers following their internalization via endocytosis, and then part of them was excreted from tumor cells to extracellular medium. These findings provided valuable information for developing desired PEOz-b-PLA micelles to improve their therapeutic efficacy and reducing the potential safety risks associated with their intracellular accumulation.

摘要

pH 响应性聚合物胶束在靶向和细胞内递抗肿瘤药物方面显示出了巨大的潜力。本研究旨在详细阐明 PEOz-b-PLA 胶束 pH 敏感性和细胞内化的可能机制,进一步揭示胶束的亲水/亲水平衡对其细胞内化的影响,并研究 PEOz-b-PLA 胶束内化后细胞内的转运途径和命运。PEOz-b-PLA 胶束的粒径和 Zeta 电位以及 PEOz-b-PLA 分子的横截面面积随 pH 值的变化表明,低于其 pK 值时,PEOz 链上的叔酰胺基团的电离导致 PEOz 链之间的静电排斥是 PEOz-b-PLA 胶束 pH 敏感性的原因。此外,对 MCF-7 细胞内化 PEOz-b-PLA 胶束的研究表明,PEOz-b-PLA 胶束的摄取强烈受其结构特征的影响,并表明亲水/亲水平衡为 1.7-2.0 的 PEOz-b-PLA 胶束具有最佳的细胞摄取。用 EIPA 和氯丙嗪存在时,流式细胞术检测到 PEOz-b-PLA 胶束的细胞摄取没有明显改变。然而,MβCD 和染料木黄酮的存在有效地抑制了胶束的细胞内摄取。因此,MCF-7 细胞内化这些胶束主要通过小窝/脂筏介导的内吞作用进行,而不受其亲水/亲水平衡的影响。共聚焦显微镜图像显示,晚期内涵体、线粒体和内质网都参与了 PEOz-b-PLA 共聚物在通过内吞作用内化后的细胞内转运,然后其中一部分从肿瘤细胞中排出到细胞外培养基中。这些发现为开发理想的 PEOz-b-PLA 胶束提供了有价值的信息,以提高其治疗效果并降低与其细胞内积累相关的潜在安全风险。

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