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聚阳离子包覆的Mn:ZnSe量子点作为活细胞新型荧光探针的研究。

Study of polycation-capped Mn:ZnSe quantum dots as a novel fluorescent probe for living cells.

作者信息

Pan Xiaobo, Li Zheng, Wang Tianlong, Xie Jin, Wang Pei-Nan, Chen Ji-Yao, Chen Li, Mi Lan

机构信息

Key Laboratory of Micro and Nano Photonic Structures (Ministry of Education), Department of Optical Science and Engineering, Shanghai Engineering Research Center of Ultra-Precision Optical Manufacturing, Fudan University, 220 Handan Road, Shanghai, 200433, People's Republic of China.

出版信息

J Fluoresc. 2014 May;24(3):767-74. doi: 10.1007/s10895-014-1350-y. Epub 2014 Feb 2.

Abstract

Transition metal manganese ion (Mn(2+)) doped zinc selenide quantum dots (Mn:ZnSe D-Dots) have been considered as a new material for fluorescent probes in biological labeling. However, this application is limited by the low membrane permeability of D-Dots. In this work, Mn:ZnSe D-Dots were capped with the polycation Sofast to label living cells. For the first time, the efficiency of cellular uptake in living cells is significantly enhanced. Various molar ratios of Sofast to D-Dots were explored and compared to obtain the optimal reaction conditions between Sofast and D-Dots for preparing Sofast/D-Dots nano-compound. A comparison on the fluorescence labeling ability of living cells were made between Sofast/D-Dots and pure D-Dots. Results from laser scanning confocal microscope show that Sofast/D-Dots complexes enter the cells more efficiently than pure D-Dots, even with a lower concentration and shorter incubation time. The cytotoxicities of D-Dots and Sofast/D-Dots were also studied. It was found that Sofast/D-Dots have a much lower cytotoxicity than cadmium-containing quantum dots (i.e. CdTe and CdTe/ZnS). Our results suggest that the non-heavy-metal-containing Sofast/D-Dots complexes have a great potential in the application of biological labeling, especially of long-time bioimaging in living cells.

摘要

过渡金属锰离子(Mn(2+))掺杂的硒化锌量子点(Mn:ZnSe D量子点)已被视为生物标记中荧光探针的一种新材料。然而,这种应用受到D量子点低膜通透性的限制。在这项工作中,Mn:ZnSe D量子点用聚阳离子Sofast进行封端以标记活细胞。首次显著提高了活细胞对其摄取的效率。探索并比较了Sofast与D量子点的各种摩尔比,以获得制备Sofast/D量子点纳米复合物时Sofast与D量子点之间的最佳反应条件。对Sofast/D量子点和纯D量子点对活细胞的荧光标记能力进行了比较。激光扫描共聚焦显微镜的结果表明,即使在较低浓度和较短孵育时间下,Sofast/D量子点复合物比纯D量子点更有效地进入细胞。还研究了D量子点和Sofast/D量子点的细胞毒性。发现Sofast/D量子点的细胞毒性比含镉量子点(即CdTe和CdTe/ZnS)低得多。我们的结果表明,不含重金属的Sofast/D量子点复合物在生物标记应用中,特别是在活细胞的长时间生物成像中具有巨大潜力。

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