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首页> 外文期刊>Advanced Materials >Uptake and Intracellular Fate of Engineered Nanoparticles in Mammalian Cells: Capabilities and Limitations of Transmission Electron Microscopy-Polymer-Based Nanoparticles
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Uptake and Intracellular Fate of Engineered Nanoparticles in Mammalian Cells: Capabilities and Limitations of Transmission Electron Microscopy-Polymer-Based Nanoparticles

机译:哺乳动物细胞中工程纳米颗粒的吸收和细胞内命运:透射电子显微镜-聚合物纳米颗粒的功能和局限性

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摘要

In order to elucidate mechanisms of nanoparticle (NP)-cell interactions, a detailed knowledge about membrane-particle interactions, intracellular distributions, and nucleus penetration capabilities, etc. becomes indispensable. The utilization of NPs as additives in many consumer products, as well as the increasing interest of tailor-made nanoobjects as novel therapeutic and diagnostic platforms, makes it essential to gain deeper insights about their biological effects. Transmission electron microscopy (TEM) represents an outstanding method to study the uptake and intracellular fate of NPs, since this technique provides a resolution far better than the particle size. Additionally, its capability to highlight ultrastructural details of the cellular interior as well as membrane features is unmatched by other approaches. Here, a summary is provided on studies utilizing TEM to investigate the uptake and mode-of-action of tailor-made polymer nanoparticles in mammalian cells. For this purpose, the capabilities as well as limitations of TEM investigations are discussed to provide a detailed overview on uptake studies of common nanoparticle systems supported by TEM investigations. Furthermore, methodologies that can, in particular, address low-contrast materials in electron microscopy, i.e., polymeric and polymer-modified nanoparticles, are highlighted.
机译:为了阐明纳米颗粒(NP)-细胞相互作用的机制,关于膜-颗粒相互作用,细胞内分布和核穿透能力等的详细知识变得必不可少。 NP在许多消费产品中作为添加剂的利用,以及对定制纳米物体作为新型治疗和诊断平台的兴趣日益浓厚,因此有必要对它们的生物学效应进行更深入的了解。透射电子显微镜(TEM)代表了一种研究NPs摄取和细胞内命运的出色方法,因为该技术提供的分辨率远优于粒径。此外,其突出细胞内部超微结构细节以及膜特征的能力是其他方法所无法比拟的。在这里,提供了有关利用TEM研究哺乳动物细胞中特制聚合物纳米颗粒的摄取和作用方式的研究总结。为此,讨论了TEM研究的能力和局限性,以详细概述TEM研究支持的常见纳米颗粒系统的吸收研究。此外,突出了可以特别地解决电子显微镜中的低对比度材料,即聚合物和聚合物改性的纳米颗粒的方法。

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