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用于在活细胞中成像多种金属离子的酸可切换 DNA 酶纳米器件。

Acid-Switchable DNAzyme Nanodevice for Imaging Multiple Metal Ions in Living Cells.

机构信息

State Key Laboratory of Analytical Chemistry for Life Science, School of Chemistry and Chemical Engineering, Nanjing University, Nanjing 210023, P. R. China.

State Key Laboratory of Materials-Oriented Chemical Engineering, College of Life Science and Pharmaceutical Engineering, Nanjing Tech University, Nanjing 211816, P. R. China.

出版信息

ACS Appl Mater Interfaces. 2020 Mar 18;12(11):13005-13012. doi: 10.1021/acsami.0c00987. Epub 2020 Mar 5.

Abstract

Metal-assisted deoxyribozyme catalysis (DNAzyme) has been a general platform for constructing highly sensitive and selective detection sensors of metal ions. However, the "always on" mode of the traditional DNAzyme sensors greatly limits their application in the visual analysis of endogenous metal ions in a complex physiological microenvironment. To overcome this obstacle, a smart acid-switchable DNAzyme nanodevice is designed to control the DNAzyme activity in living cells and achieve simultaneous visualization of metal ions (Zn and Pb) in situ. This nanodevice is built on DNAzyme precursors (DPs) and acid-switchable DNA (SW-DNA), precisely responding to pH variations in the range of 4.5-7.0, and the state of the three-strand hybridization of DPs successfully renders the DNAzymes inactive before being transported into cells. Once the nanodevice is taken up into living cells, the SW-DNA will change the configuration from linear to triplex in the acidic intracellular compartments (lysosomes, pH ∼4.5 to 5.0) and then the strands hybridized with the SW-DNA are liberated and subsequently react with DPs to form the active DNAzyme, which can further realize multi-imaging of intracellular metal ions. Moreover, this strategy has broad prospects as a powerful platform for constructing various acid-switchable nanodevices for visual analysis of multiple biomolecules in living cells.

摘要

金属辅助脱氧核酶催化(DNAzyme)已成为构建高灵敏度和选择性金属离子检测传感器的通用平台。然而,传统 DNAzyme 传感器的“始终开启”模式极大地限制了它们在复杂生理微环境中内源性金属离子的可视化分析中的应用。为了克服这一障碍,设计了一种智能酸响应型 DNAzyme 纳米器件来控制活细胞中的 DNAzyme 活性,实现金属离子(Zn 和 Pb)的原位可视化。该纳米器件构建在 DNAzyme 前体(DPs)和酸响应型 DNA(SW-DNA)上,对 4.5-7.0 范围内的 pH 值变化精确响应,并且 DPs 的三链杂交状态成功地使 DNAzymes 在被转运到细胞之前失活。一旦纳米器件被摄取到活细胞中,SW-DNA 将在酸性细胞内区室(溶酶体,pH 值约为 4.5 至 5.0)中从线性变为三链,然后与 SW-DNA 杂交的链被释放,并随后与 DPs 反应形成活性 DNAzyme,可进一步实现细胞内金属离子的多重成像。此外,该策略具有广阔的前景,可作为构建用于在活细胞中可视化分析多种生物分子的各种酸响应型纳米器件的强大平台。

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