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体内生物分布和命运的 CdSe 量子点在小鼠模型:激光烧蚀电感耦合等离子体质谱研究。

The in vivo biodistribution and fate of CdSe quantum dots in the murine model: a laser ablation inductively coupled plasma mass spectrometry study.

机构信息

Institute of Nuclear Engineering and Sciences, National Tsing Hua University, Hsinchu City 30012, Taiwan.

出版信息

Anal Bioanal Chem. 2012 Dec;404(10):3025-36. doi: 10.1007/s00216-012-6417-5. Epub 2012 Oct 7.

Abstract

Understanding the cytotoxicity of quantum dots strongly relies upon the development of new analytical techniques to gather information about various aspects of the system. In this study, we demonstrate the in vivo biodistribution and fate of CdSe quantum dots in the murine model by means of laser ablation inductively coupled plasma mass spectrometry (LA-ICP-MS). By comparing the hot zones of each element acquired from LA-ICP-MS with those in fluorescence images, together with hematoxylin and eosin-stained images, we are able to perceive the fate and in vivo interactions between quantum dots and rat tissues. One hour after intravenous injection, we found that all of the quantum dots had been concentrated inside the spleen, liver and kidneys, while no quantum dots were found in other tissues (i.e., muscle, brain, lung, etc.). In the spleen, cadmium-114 signals always appeared in conjunction with iron signals, indicating that the quantum dots had been filtered from main vessels and then accumulated inside splenic red pulp. In the liver, the overlapped hot zones of quantum dots and those of phosphorus, copper, and zinc showed that these quantum dots have been retained inside hepatic cells. Importantly, it was noted that in the kidneys, quantum dots went into the cortical areas of adrenal glands. At the same time, hot zones of copper appeared in proximal tubules of the cortex. This could be a sign that the uptake of quantum dots initiates certain immune responses. Interestingly, the intensity of the selenium signals was not proportional to that of cadmium in all tissues. This could be the result of the decomposition of the quantum dots or matrix interference. In conclusion, the advantage in spatial resolution of LA-ICP-MS is one of the most powerful tools to probe the fate, interactions and biodistribution of quantum dots in vivo.

摘要

理解量子点的细胞毒性强烈依赖于开发新的分析技术,以收集有关系统各个方面的信息。在这项研究中,我们通过激光烧蚀电感耦合等离子体质谱(LA-ICP-MS)来展示 CdSe 量子点在小鼠模型中的体内生物分布和命运。通过将 LA-ICP-MS 获得的每个元素的热点与荧光图像以及苏木精和伊红染色图像进行比较,我们能够感知量子点与大鼠组织之间的命运和体内相互作用。静脉注射后 1 小时,我们发现所有的量子点都集中在脾脏、肝脏和肾脏中,而在其他组织(如肌肉、大脑、肺等)中则没有发现量子点。在脾脏中,镉 114 信号总是与铁信号同时出现,表明量子点已经从主要血管中过滤出来并在脾脏红髓中积累。在肝脏中,量子点和磷、铜、锌的重叠热点表明这些量子点已经被保留在肝细胞内。重要的是,在肾脏中,量子点进入肾上腺皮质区。同时,皮质近端小管中出现了铜的热点。这可能是量子点摄取引发某些免疫反应的迹象。有趣的是,在所有组织中,硒信号的强度与镉的强度不成比例。这可能是量子点分解或基质干扰的结果。总之,LA-ICP-MS 的空间分辨率优势是探测量子点在体内的命运、相互作用和生物分布的最有力工具之一。

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