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用于体内扩增适体传感的串联DNA电路的模块化组装

Modular Assembly of a Concatenated DNA Circuit for In Vivo Amplified Aptasensing.

作者信息

Wu Qiong, Yang Lei, Xie Lingling, Shang Jinhua, He Shizhen, Liu Jing, Wang Fuan

机构信息

College of Chemistry and Molecular Sciences, Wuhan University, Wuhan, 430072, P. R. China.

Medical College, Wuhan University of Science and Technology, Wuhan, 430065, P. R. China.

出版信息

Small. 2022 May;18(21):e2200983. doi: 10.1002/smll.202200983. Epub 2022 Apr 23.

DOI:10.1002/smll.202200983
PMID:35460185
Abstract

Probing endogenous molecular profiles in living entities is of fundamental significance to decipher biological functions and exploit novel theranostics. Despite programmable nucleic acid-based aptasensing systems across the breadth of molecular imaging, an aptasensing system enabling in vivo imaging with high sensitivity, accuracy, and adaptability is highly required yet is still in its infancy. Artificial catalytic DNA circuits that can modularly integrate to generate multiple outputs from a single input in an isothermal autonomous manner, have supplemented powerful toolkits for intracellular biosensing research. Herein, a multilayer nonenzymatic catalytic DNA circuits-based aptasensing system is devised for in situ imaging of a bioactive molecule in living mice by assembling branched DNA copolymers with high-molecular-weight and high-signal-gain based on avalanche-mimicking hybridization chain reactions (HCRs). The HCRs aptasensing circuit performs as a general and powerful sensing platform for precise analysis of a series of bioactive molecules due to its inherent rich recognition repertoire and hierarchical reaction accelerations. With tumor-targeting capsule encapsulation, the HCRs aptasensing circuit is specifically delivered into tumor cells and allowed the high-contrast imaging of intracellular adenosine triphosphate in living mice, highlighting its potential for visualizing these clinically important biomolecules and for studying the associated physiological processes.

摘要

探索生物体内的内源性分子图谱对于解读生物学功能和开发新型诊疗方法具有根本重要性。尽管基于可编程核酸的适体传感系统在分子成像领域广泛应用,但仍迫切需要一种能够在体内进行高灵敏度、高精度和高适应性成像的适体传感系统,而该系统目前仍处于起步阶段。能够以等温自主方式模块化整合以从单个输入产生多个输出的人工催化DNA电路,为细胞内生物传感研究提供了强大的工具包。在此,基于多层非酶催化DNA电路设计了一种适体传感系统,通过基于雪崩模拟杂交链反应(HCR)组装具有高分子量和高信号增益的分支DNA共聚物,对活体小鼠中的生物活性分子进行原位成像。由于其固有的丰富识别库和分级反应加速,HCR适体传感电路作为一种通用且强大的传感平台,可用于精确分析一系列生物活性分子。通过肿瘤靶向胶囊封装,HCR适体传感电路被特异性递送至肿瘤细胞,并实现了活体小鼠细胞内三磷酸腺苷的高对比度成像,突出了其在可视化这些临床重要生物分子以及研究相关生理过程方面的潜力。

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High-fidelity ATP imaging an isothermal cascade catalytic amplifier.
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Chem Sci. 2022 Sep 30;13(41):12198-12207. doi: 10.1039/d2sc04560e. eCollection 2022 Oct 26.