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Uptake quantification of gold nanoparticles inside of cancer cells using high order image correlation spectroscopy

机译:使用高阶图像相关光谱法使用高阶图像相关光谱法测量癌细胞内的金纳米粒子

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摘要

The application of gold nanoparticles (AuNPs) in cancer therapeutics and diagnostics has recently reached a clinical level. Functional use of the AuNP in theranostics first requires effective uptake into the cells, but accurate quantification of AuNPs cellular uptake in real-time is still a challenge due to the destructive nature of existing characterization methods. The optical imaging-based quantification method is highly desirable. Here, we propose the use of high-order image correlation spectroscopy (HICS) as an optical imaging-based nanoparticle quantification technique. Coupled with dark field microscopy (DFM), a non-destructive and easy quantification method could be achieved. We demonstrate HICS analysis on 80 nm AuNPs coated with cetyltrimethylammonium bromide (CTAB) uptake in HeLa cells to calculate the percentage of aggregate species (dimer) in the total uptake and their relative scattering quantum yield inside the cells, the details of which are not available with other quantification techniques. The total particle uptake kinetics measured were in a reasonable agreement with the literature.
机译:金纳米粒子(AUNP)在癌症治疗和诊断中的应用最近达到了临床水平。 AUNP在Theranostics中的功能使用首先需要有效吸收细胞,但是由于现有表征方法的破坏性性质,实时的AUNPS细胞摄取的准确量化仍然是一个挑战。基于光学成像的量化方法是非常理想的。这里,我们提出了使用高阶图像相关光谱(HICS)作为基于光学成像的纳米粒子量化技术。与暗场显微镜(DFM)相结合,可以实现非破坏性和易于定量的方法。我们证明了在HeLa细胞中涂有十六烷基铵溴化铵(CTAB)摄取的80nm Aunps的HICS分析,以计算细胞内的总摄取和它们相对散射量子产量的骨料物种(二聚体)的百分比,其细节不可用用其他量化技术。测量的总粒子摄取动力学与文献合理。

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