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首页> 外文期刊>Biomacromolecules >Cellular Uptake and Intracellular Trafficking of Poly(N-(2-Hydroxypropyl) Methacrylamide)
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Cellular Uptake and Intracellular Trafficking of Poly(N-(2-Hydroxypropyl) Methacrylamide)

机译:聚(N-(2-羟丙基)甲基丙烯酰胺的细胞吸收和细胞内运输

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摘要

Cellular uptake and intracellular trafficking of polymer conjugates or polymer nanoparticles is typically monitored using fluorescence-based techniques such as confocal microscopy. While these methods have provided a wealth of insight into the internalization and trafficking of polymers and polymer nanoparticles, they require fluorescent labeling of the polymer or polymer nanoparticle. Because in biological media fluorescent dyes may degrade, be cleaved from the polymer or particle, or even change uptake and trafficking pathways, there is an interest in fluorescent label-free methods to study the interactions between cells and polymer nanomedicines. This article presents a first proof-of-concept that demonstrates the feasibility of NanoSIMS to monitor the intracellular localization of polymer conjugates. For the experiments reported here, poly(N-(2-hydroxypropyl) methacrylamide)) (PHPMA) was selected as a prototypical polymer-drug conjugate. This PHPMA polymer contained a F-19-label at the alpha-terminus, which was introduced in order to allow NanoSIMS analysis. Prior to the NanoSIMS experiments, the uptake and intracellular trafficking of the polymer was established using confocal microscopy and flow cytometry. These experiments not only provided detailed insight into the kinetics of these processes but were also important to select time points for the NanoSIMS analysis. For the NanoSIMS experiments, HeLa cells were investigated that had been exposed to the PHPMA polymer for a period of 4 or 15 h, which was known to lead to predominant lysosomal accumulation of the polymer. NanoSIMS analysis of resin-embedded and microtomed samples of the cells revealed a punctuated fluorine signal, which was found to colocalize with the sulfur signal that was attributed to the lysosomal compartments. The localization of the polymer in the endolysosomal compartments was confirmed by TEM analysis on the same cell samples. The results of this study illustrate the potential of NanoSIMS to study the uptake and intracellular trafficking of polymer nanomedicines.
机译:通常使用基于荧光的技术(例如共聚焦显微镜)监测聚合物摄取和聚合物纳米颗粒的细胞吸收和聚合物纳米颗粒。虽然这些方法提供了对聚合物和聚合物纳米颗粒的内化和贩运的大量洞察,但它们需要聚合物或聚合物纳米颗粒的荧光标记。由于在生物介质荧光染料中可能降解,从聚合物或颗粒中切割,或甚至改变摄取和贩运途径,对无荧光标记的方法进行兴趣,以研究细胞和聚合物纳米胺之间的相互作用。本文介绍了第一概念证明,证明了纳米粒子监测聚合物缀合物细胞内定位的可行性。对于此处报道的实验,选择聚(N-(2-羟丙基)甲基丙烯酰胺))(pHPMA)作为原型聚合物 - 药物缀合物。该PHPMA聚合物含有在α-末端的F-19标记,其被引入,以便允许纳米孔分析。在纳米磷酸试验之前,使用共聚焦显微镜和流式细胞术建立聚合物的吸收和细胞内运输。这些实验不仅为这些过程的动力学提供了详细的洞察,而且对选择纳米粒子分析的时间点也很重要。对于纳米染粒子实验,研究了Hela细胞,其暴露于PHPMA聚合物的时间为4或15小时,已知将主要溶酶体积聚聚合物。细胞的树脂嵌入和微微对样品的纳米粒子分析显示出点状氟信号,发现与归因于溶酶体隔室的硫信号结合。通过在同一细胞样品上的TEM分析证实了聚合物在底糖体隔室中的定位。本研究的结果说明了纳米磷酸的潜力研究聚合物纳米胺的摄取和细胞内运输。

著录项

  • 来源
    《Biomacromolecules》 |2019年第1期|共12页
  • 作者单位

    Ecole Polytech Fed Lausanne Inst Mat Batiment MXD Stn 12 CH-1015 Lausanne Switzerland;

    Ecole Polytech Fed Lausanne Bioimaging &

    Opt Platform Fac Sci Vie Batiment AI Stn 15 CH-1015 Lausanne Switzerland;

    Ecole Polytech Fed Lausanne Bioimaging &

    Opt Platform Fac Sci Vie Batiment AI Stn 15 CH-1015 Lausanne Switzerland;

    Ecole Polytech Fed Lausanne Bioimaging &

    Opt Platform Fac Sci Vie Batiment AI Stn 15 CH-1015 Lausanne Switzerland;

    Ecole Polytech Fed Lausanne Sch Architecture Civil &

    Environm Engn Lab Biol Geochem CH-1015 Lausanne Switzerland;

    Ecole Polytech Fed Lausanne Bioelectron Microscopy Core Facil Fac Sci Vie Batiment AI Stn 19 CH-1015 Lausanne Switzerland;

    Ecole Polytech Fed Lausanne Sch Architecture Civil &

    Environm Engn Lab Biol Geochem CH-1015 Lausanne Switzerland;

    Ecole Polytech Fed Lausanne Inst Mat Batiment MXD Stn 12 CH-1015 Lausanne Switzerland;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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