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Methodologies and approaches for the analysis of cell–nanoparticle interactions

机译:方法和分析方法cell-nanoparticle交互

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摘要

How to study nanoparticle–cell interactions is the key question that puzzles researchers in the fields of nanomedicine as well as in nanotoxicology. In nanotoxicology, the amount of nanoparticles internalized by the cells or bound to the external surfaces of cells determines the toxic profile of those particles. In medical applications, cellular uptake and binding of medically effective nanoparticles decides their efficacy. Despite the importance of understanding the extent and mode of nanoparticle–cell interactions, these processes are underinvestigated, mainly due to the lack of suitable user‐friendly methodologies. Here we discuss the advantages and limitations of currently available (and most advanced) microscopic, spectroscopic, and other bioanalytical methods that could be used to assess cell‐nanoparticle interactions either qualitatively or quantitatively. Special emphasis is given to the methods that enable analysis and identification of nanoparticles at single‐cell level, and allow intracellular localization and speciation analysis of nanoparticles. This article is categorized under: Nanotechnology Approaches to Biology Cells at the Nanoscale Toxicology and Regulatory Issues in Nanomedicine Toxicology of Nanomaterials
机译:如何研究nanoparticle-cell交互谜题研究的关键问题纳米医学以及领域纳米毒理学。纳米颗粒细胞或绑定的内化到外部表面细胞的决定了这些粒子有毒的状况。应用程序中,细胞摄取和绑定的医学上有效的纳米粒子决定的功效。nanoparticle-cell的程度和模式交互,这些过程underinvestigated,主要是由于缺少合适的用户友好的方法。讨论的优点和局限性目前可用的(和最先进的)显微光谱等生物分析方法,可以用来评估细胞量纳米颗粒相互作用定性或定量。给出的方法使分析和纳米粒子在单列车单元的识别水平,使细胞内的定位纳米粒子的形态分析。文章分类:下纳米技术生物学方法比;纳米毒理学和监管问题比;

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