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首页> 外文期刊>Journal of Biophotonics >Evolution of gold nanoparticle clusters in living cells studied by sectional dark-field optical microscopy and chromatic analysis
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Evolution of gold nanoparticle clusters in living cells studied by sectional dark-field optical microscopy and chromatic analysis

机译:截面暗场光学显微镜和色度分析研究活细胞中金纳米粒子簇的演化

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摘要

The evolution of gold nanoparticle (Au NP) clusters in living cells are studied by using sectional dark-field optical microscopy and chromatic analysis approach. During endocytosis, Au NP clusters undergo fantastic color changes, from green to yellow-orange due to the plasmonic coupling effect. Analysis of brightness/hue values of the dark-field images helps estimate the numbers of Au NPs in the clusters. The Au NP clusters were further categorized into four groups within the endocytosis. As the results, the late endosomes had increased number of large Au NP clusters with time, while clustered numbers in secondary and tertiary groups were first increased and then decreased due to the fusion and fission of the endocytic vesicles. The time constants and cluster numbers for different groups are fitted by using an integrated rate equation, and show a positive correlation with the size of the Au NP cluster. The efficiency of Au NP uptake is only about 50% for normal cells, while 75% for cancer cells. Compared to normal cells, cancer cells show a larger number in uptake, while faster rate in removal. The propose method helps the kinetic study of endocytosed nanoparticles in physiological conditions.
机译:利用截面暗场光学显微镜和色度分析方法研究了金纳米粒子(Au NP)簇在活细胞中的演化。在胞吞过程中,由于等离子体耦合效应,Au NP团簇发生从绿色到橙黄色的奇妙颜色变化。分析暗场图像的亮度/色相值有助于估计簇中Au NP的数量。在胞吞作用中,金纳米颗粒簇进一步分为四类。结果,晚期的内体随着时间的推移而增加了大的金纳米颗粒簇的数量,而第二和第三组中的簇数由于内吞囊泡的融合和裂变而先增加然后减少。通过使用积分速率方程拟合不同组的时间常数和簇数,它们与Au NP簇的大小呈正相关。正常细胞摄取Au NP的效率仅为约50%,而癌细胞为75%。与正常细胞相比,癌细胞显示出更多的摄取,同时清除速度更快。提出的方法有助于在生理条件下动力学研究内吞的纳米颗粒。

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