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Size-Dependent Stability of Water-Solubilized CdTe Quantum Dots and Their Uptake Mechanism by Live HeLa Cells

机译:水溶性CdTe量子点的尺寸依赖性稳定性及其对活HeLa细胞的吸收机理

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摘要

Water-solubilized quantum dots have led to a promising application in cellular labeling and biological imaging. The physicochemical properties of water-solubilized quantum dots, particularly in a physiological environment, are strongly dependent on dieir size. In this paper, we systematically studied the stability of mercaptosuccinic acid-coated CdTe quantum dots (MSA-QDs) of about 2.3 and 5.4 nm diameters in various buffers with different pfi values and under laser irradiation by fluorescence spectroscopy. It was found that larger MSA-QDs showed better stability. Size-dependent uptake of MSA-QDs by living HeLa cells was further investigated by confocal microscopy. In phosphate buffer solution, the larger MSA-QDs entered the cells mainly by endocytosis, and part of the smaller ones entered the cells by passive penetration. In cell culture medium, their uptake pathways could be changed due to the changes of their surface properties. The cytotoxicity of smaller and larger MSA-QDs was significantly decreased due to the adsorption of some biological components in the cell culture medium on the nanoparticles surface.
机译:水溶性量子点已导致在细胞标记和生物成像中有希望的应用。水溶性量子点的物理化学性质,特别是在生理环境中,强烈依赖于二烯的大小。在本文中,我们系统地研究了直径分别为2.3和5.4 nm的巯基琥珀酸包覆的CdTe量子点(MSA-QDs)在具有不同pfi值的各种缓冲液中以及通过荧光光谱在激光照射下的稳定性。发现较大的MSA-QD显示出更好的稳定性。共聚焦显微镜进一步研究了活的HeLa细胞对MSA-QD大小依赖性的摄取。在磷酸盐缓冲液中,较大的MSA-QD主要通过内吞作用进入细胞,而较小的一部分则通过被动渗透进入细胞。在细胞培养基中,由于其表面性质的变化,它们的摄取途径可以改变。越来越大的MSA-QD的细胞毒性由于纳米颗粒表面细胞培养基中某些生物成分的吸附而明显降低。

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