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一种空间控制的 DNA 三角棱锥形纳米机器,用于在酸性微环境中进行 AND 门控的细胞内 ATP 成像。

A spatially-controlled DNA triangular prism nanomachine for AND-gated intracellular imaging of ATP in acidic microenvironment.

机构信息

School of Biological Sciences and Technology, University of Jinan, Jinan, 250022, People's Republic of China.

College of Control Science and Engineering, China University of Petroleum (East China), Qingdao, 266580, China.

出版信息

Mikrochim Acta. 2023 Oct 14;190(11):436. doi: 10.1007/s00604-023-06010-8.

Abstract

A DNA triangular prism nanomachine (TPN)-based logic device for intracellular AND-gated imaging of adenosine triphosphate (ATP) has been constructed. By using i-motif sequences and ATP-binding aptamers as logic control units, the TPN logic device is qualified to respond to the acidic environment and ATP in cancer cell lysosomes. Once internalized into the lysosome, the specific acidic microenvironment in lysosome causes the i-motif sequence to fold into a tetramer, resulting in compression of DNA tri-prism. Subsequently, the split ATP aptamer located at the tip of the collapsed triangular prism binds stably to ATP, which results in the fluorescent dyes (Cy3 and Cy5) modified at the ends of the split aptamer being in close proximity to each other, allowing Förster Resonance Energy Transfer (FRET) to occur. The FRET signals are excited at a wavelength of 543 nm and can be collected within the emission range of 646-730 nm. This enables the precise imaging of ATP within a cell. We also dynamically operate AND logic gates in living cells by modulating intracellular pH and ATP levels with the help of external drugs. Owing to the AND logic unit on TPN it can simultaneously recognize two targets and give corresponding intelligent logic judgment via imaging signal output. The accuracy of molecular diagnosis of cancer can be improved thus eliminating the false positive signal of single target-based detection. Hence, this space-controlled TPN-based logical sensing platform greatly avoids sensitivity to extracellular targets during the cell entry process, providing a useful tool for high-precision imaging of the cancer cell's endogenous target ATP.

摘要

基于 DNA 三角棱柱状纳米机器(TPN)的逻辑器件已被构建,用于细胞内三磷酸腺苷(ATP)的与门门控成像。通过使用 i -motif 序列和 ATP 结合适体作为逻辑控制单元,TPN 逻辑器件有能力响应癌细胞溶酶体中的酸性环境和 ATP。一旦被内吞到溶酶体中,溶酶体中特定的酸性微环境会导致 i-motif 序列折叠成四聚体,从而导致 DNA 三棱柱压缩。随后,位于坍塌三棱柱尖端的分裂 ATP 适体稳定地结合 ATP,这导致分裂适体末端修饰的荧光染料(Cy3 和 Cy5)彼此靠近,允许发生Förster 共振能量转移(FRET)。FRET 信号在 543nm 的波长下被激发,并可以在 646-730nm 的发射范围内被收集。这使得可以在细胞内精确地成像 ATP。我们还通过外部药物调节细胞内 pH 值和 ATP 水平,在活细胞中动态地操作与门逻辑门。由于 TPN 上的与门逻辑单元,它可以通过成像信号输出同时识别两个目标并进行相应的智能逻辑判断。从而提高癌症分子诊断的准确性,消除基于单个目标检测的假阳性信号。因此,这种空间控制的基于 TPN 的逻辑传感平台在细胞进入过程中极大地避免了对外界目标的敏感性,为高精度成像癌细胞内源性靶标 ATP 提供了有用的工具。

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