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水热合成氮、硫共掺杂碳纳米点用于高选择性检测活癌细胞

Hydrothermal synthesis of N,S co-doped carbon nanodots for highly selective detection of living cancer cells.

作者信息

Cheng Wenbo, Xu Jun, Guo Zhenzhen, Yang Dawei, Chen Xifeng, Yan Wei, Miao Peng

机构信息

State Key Lab of Optical Technologies on Nano-fabrication and Micro-engineering, Institute of Optics and Electronics, Chinese Academy of Sciences, Chengdu 610209, P. R. China.

出版信息

J Mater Chem B. 2018 Sep 28;6(36):5775-5780. doi: 10.1039/c8tb01271g. Epub 2018 Aug 28.

Abstract

This study presents a facile synthesis method for the preparation of positively charged N,S co-doped carbon nanodots with excellent optical properties, and it develops a selective method for fluorescent detection of living cancer cells. The specific recognition is due to the application of an aptamer sequence, which shows high affinity and specificity to target cells. The aptamer is firstly labeled with BHQ and wraps around the carbon nanodots, then it finally quenches the fluorescence emission of the carbon nanodots. For the sensitive and selective analysis of target cells, the cells are simply mixed with the carbon nanodot-aptamer nanoconjugates, which are then centrifuged at a low speed. The recognition reaction between aptamer and target cells releases the quencher from the surface of the carbon nanodots and the centrifugation process enables the recovery of fluorescence intensity of the suspension, which reflects the level of initial cancer cells. The developed method is simple, highly selective and cost-effective, thus, it may be further exploited in clinical applications in the future.

摘要

本研究提出了一种简便的合成方法来制备具有优异光学性质的带正电荷的氮、硫共掺杂碳纳米点,并开发了一种用于活癌细胞荧光检测的选择性方法。这种特异性识别归因于适配体序列的应用,该序列对靶细胞表现出高亲和力和特异性。首先将适配体用BHQ标记并包裹在碳纳米点周围,然后最终淬灭碳纳米点的荧光发射。为了对靶细胞进行灵敏且选择性的分析,只需将细胞与碳纳米点 - 适配体纳米共轭物混合,然后低速离心。适配体与靶细胞之间的识别反应会使淬灭剂从碳纳米点表面释放出来,离心过程能够使悬浮液的荧光强度恢复,这反映了初始癌细胞的水平。所开发的方法简单、高度选择性且具有成本效益,因此,未来可能会在临床应用中得到进一步应用。

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