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基于杂交链式反应的用于活细胞线粒体ATP成像的比率荧光DNA纳米结构

Ratiometric Fluorescent DNA Nanostructure for Mitochondrial ATP Imaging in Living Cells Based on Hybridization Chain Reaction.

作者信息

Luo Lei, Wang Min, Zhou Yuan, Xiang Dongliu, Wang Qing, Huang Jin, Liu Jianbo, Yang Xiaohai, Wang Kemin

机构信息

State Key Laboratory of Chemo/Biosensing and Chemometrics, College of Chemistry and Chemical Engineering, Key Laboratory for Bio-Nanotechnology and Molecular Engineering of Hunan Province, Hunan University, Changsha 410082, China.

出版信息

Anal Chem. 2021 May 4;93(17):6715-6722. doi: 10.1021/acs.analchem.1c00176. Epub 2021 Apr 22.

Abstract

For intracellular molecular detection, the appropriate probes should include the abilities to enter target cells noninvasively, target specific sites, and then respond to the analytes reliably. Herein, a ratiometric fluorescent DNA nanostructure (RFDN) was designed for mitochondrial adenosine triphosphate (ATP) imaging in living cells. The DNA nanostructure was constructed by continuous hybridization of two hairpin DNA strands (HS1-Cy3 and HS2-Cy5) under the initiation of the trigger. HS1-Cy3 and HS2-Cy5 contained split aptamer fragments of ATP and are labeled with a fluorescent donor (Cy3) and acceptor (Cy5), respectively. The RFDN integrated multiple split aptamer fragments and increased the local concentration of sensing probes. The binding of ATP to aptamer fragments on the RFDN shortened the distance between Cy3 and Cy5, resulting in obvious ratiometric signals (fluorescence resonance energy transfer). The RFDN showed good biocompatibility and can be internalized into cells in a caveolin-dependent endocytosis pathway. The co-localization imaging results indicated that the DNA nanostructure could target the mitochondria Cy3 and Cy5. Moreover, the confocal imaging results showed that the intracellular ATP changes stimulated by drugs in living cells could be indicated by the RFDN. In this way, the RFDN is expected to be a simple, flexible, and general platform for chemo/biosensing in living cells.

摘要

对于细胞内分子检测,合适的探针应具备无创进入靶细胞、靶向特定位点并可靠地响应分析物的能力。在此,设计了一种比率荧光DNA纳米结构(RFDN)用于活细胞中线粒体三磷酸腺苷(ATP)成像。该DNA纳米结构由两条发夹DNA链(HS1-Cy3和HS2-Cy5)在触发物引发下连续杂交构建而成。HS1-Cy3和HS2-Cy5包含ATP的分裂适配体片段,分别标记有荧光供体(Cy3)和受体(Cy5)。RFDN整合了多个分裂适配体片段,提高了传感探针的局部浓度。ATP与RFDN上的适配体片段结合缩短了Cy3和Cy5之间的距离,产生明显的比率信号(荧光共振能量转移)。RFDN表现出良好的生物相容性,可通过小窝蛋白依赖的内吞途径内化到细胞中。共定位成像结果表明,该DNA纳米结构可以靶向线粒体中的Cy3和Cy5。此外,共聚焦成像结果表明,活细胞中药物刺激引起的细胞内ATP变化可以通过RFDN显示出来。通过这种方式,RFDN有望成为一种用于活细胞化学/生物传感的简单、灵活且通用的平台。

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