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Biodegradation of Bi-Labeled Polymer-Coated Rare-Earth Nanoparticles in Adherent Cell Cultures

机译:贴壁细胞培养物中双标记聚合物包被稀土纳米颗粒的生物降解

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摘要

The fate of polymer-coated Eu- and Bi-doped GdVO4 nanoparticles (NPs) of cubic shape upon cellular internalization was investigated. After having been endocytosed by cells, the cubic Eu- and Bi-doped GdVO4 NP cores were partly dissolved and reshaped to rounded structures, which in control experiments could be ascribed to the acidic conditions present in endosomes/lysosomes. With progress of time, there was a significant reduction in the amount of internalized NPs per cell due to proliferation. This was of higher extent than NP exocytosis. Data of the study are compatible with the scenario that endosomal/lysosomal enzymes may partly digest the polymer shell around the NP cores, with enhanced exocytosis of the polymer fragments as compared to the NP cores.
机译:研究了聚合物包覆的Eu和Bi掺杂的立方体GdVO4纳米颗粒(NPs)在细胞内化后的命运。在被细胞内吞后,立方Eu和Bi掺杂的GdVO4 NP核心被部分溶解并重塑为圆形结构,这在对照实验中可以归因于内体/溶酶体中存在的酸性条件。随着时间的流逝,由于增殖,每个细胞的内化NPs数量显着减少。这比NP胞吐作用的程度更高。该研究的数据与内体/溶酶体酶可能部分消化 NP 核心周围的聚合物外壳的情况兼容,与 NP 核心相比,聚合物片段的胞吐作用增强。

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