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杂交临床可翻译性与无酶 DNA 信号放大器:核酸检测和成像的最新进展。

Hybridizing clinical translatability with enzyme-free DNA signal amplifiers: recent advances in nucleic acid detection and imaging.

机构信息

Department of NanoEngineering, University of California, San Diego, 9500 Gilman Drive, La Jolla, California 92093, USA.

出版信息

Biomater Sci. 2021 Jan 21;9(2):347-366. doi: 10.1039/d0bm00931h. Epub 2020 Jul 31.

Abstract

Nucleic acids have become viable prognostic and diagnostic biomarkers for a diverse class of diseases, particularly cancer. However, the low femtomolar to attomolar concentration of nucleic acids in human samples require sensors with excellent detection capabilities; many past and current platforms fall short or are economically difficult. Strand-mediated signal amplifiers such as hybridization chain reaction (HCR) and catalytic hairpin assembly (CHA) are superior methods for detecting trace amounts of biomolecules because one target molecule triggers the continuous production of synthetic double-helical DNA. This cascade event is highly discriminatory to the target via sequence specificity, and it can be coupled with fluorescence, electrochemistry, magnetic moment, and electrochemiluminescence for signal reporting. Here, we review recent advances in enhancing the sensing abilities in HCR and CHA for improved live-cell imaging efficiency, lowered limit of detection, and optimized multiplexity. We further outline the potential for clinical translatability of HCR and CHA by summarizing progress in employing these two tools for in vivo imaging, human sample testing, and sensing-treating dualities. We finally discuss their future prospects and suggest clinically-relevant experiments to supplement further related research.

摘要

核酸已成为多种疾病(尤其是癌症)有前途的预后和诊断生物标志物。然而,人体样本中核酸的浓度低至皮摩尔到飞摩尔,这需要具有出色检测能力的传感器;许多过去和现在的平台都存在不足,或者在经济上难以实现。链介导的信号放大器,如杂交链式反应(HCR)和催化发夹组装(CHA),是检测痕量生物分子的优越方法,因为一个靶标分子触发了合成双链 DNA 的连续产生。这种级联事件通过序列特异性对靶标具有高度的辨别能力,并且可以与荧光、电化学、磁矩和电致化学发光相结合进行信号报告。在这里,我们回顾了在增强 HCR 和 CHA 的传感能力方面的最新进展,以提高活细胞成像效率、降低检测限和优化多重检测。我们进一步概述了 HCR 和 CHA 在临床转化方面的潜力,总结了这两种工具在体内成像、人体样本测试和传感-治疗双重性方面的应用进展。我们最后讨论了它们的未来前景,并提出了临床相关的实验来补充进一步的相关研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6dd/7855509/c8fe0155c705/nihms-1617984-f0002.jpg

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