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Nanoparticle-Based Biocompatible and Long-Life Marker for Lysosome Labeling and Tracking

机译:基于纳米粒子的生物相容性和长寿命标记,用于溶酶体标记和跟踪

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摘要

In this paper, a novel biocompatible and long-life lyso-some labeling and tracking method based on dye entrapped silica nanoparticles (DSiNPs) has been put forward. Through colocalization studies using LysoTracker Green as the standard lysosome marker, it has been demonstrated that DSiNPs selectively accumulated in lysosomes of Hela cells and the photostability of DSiNPs associated with lysosomes was detectable, at least, 30 times as long as that of LysoTracker Green involved in lysosomes. By comparison with LysoTracker Green and Alexa 488-dextran, the fluorescence of DSiNPs could be detected over a 5-day postrecultivation period and the staining pattern in lysosomes could be well retained after cell fixation and permeabilization. In addition, results from MTT assays showed that DSiNPs did not affect the viability of Hela cells at the concentration for lysosome labeling. Primary applications of DSiNPs were then further performed in lysosome tracking in chloroquine-treated Hela cells, and lysosome labeling of differnet cell lines, including MCF-7 cells, MEAR cells, and MSC cells. These results indicated that DSiNPs, therefore, can be used as a biocompatible, long-life, and highly photostable lysosome marker for lysosome-related studies.
机译:本文提出了一种基于染料包裹的二氧化硅纳米粒子(DSiNPs)的新型的生物相容性和长寿命的溶酶体标记和跟踪方法。通过使用LysoTracker Green作为标准溶酶体标记物进行的共定位研究,已证明DSiNPs在Hela细胞的溶酶体中选择性积累,并且与溶酶体相关的DSiNPs的光稳定性至少可以检测到参与其中的LysoTracker Green的30倍。溶酶体。通过与LysoTracker Green和Alexa 488-dextran的比较,可以在培养后5天检测到DSiNPs的荧光,并且在细胞固定和通透化之后可以很好地保留溶酶体的染色模式。此外,MTT分析的结果表明,DSiNPs在溶酶体标记浓度下不会影响Hela细胞的活力。然后,在溶酶体追踪中用氯喹处理的Hela细胞进一步进行DSiNPs的初步应用,并对不同网状细胞系(包括MCF-7细胞,MEAR细胞和MSC细胞)进行溶酶体标记。这些结果表明,DSiNP可以用作生物相容性,长寿命和高度光稳定的溶酶体标记物,用于溶酶体相关研究。

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