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Signal Amplification Technologies for the Detection of Nucleic Acids: from Cell-Free Analysis to Live-Cell Imaging

机译:用于检测核酸的信号放大技术:从无细胞分析到活细胞成像

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摘要

Due to their unique properties, such as programmability, ligand-binding capability, and flexibility, nucleic acids can serve as analytes and/or recognition elements for biosensing. To improve the sensitivity of nucleic acid-based biosensing and hence the detection of a few copies of target molecule, different modern amplification methodologies, namely target-and-signal-based amplification strategies, have already been developed. These recent signal amplification technologies, which are capable of amplifying the signal intensity without changing the targets' copy number, have resulted in fast, reliable, and sensitive methods for nucleic acid detection. Working in cell-free settings, researchers have been able to optimize a variety of complex and quantitative methods suitable for deploying in live-cell conditions. In this study, a comprehensive review of the signal amplification technologies for the detection of nucleic acids is provided. We classify the signal amplification methodologies into enzymatic and non-enzymatic strategies with a primary focus on the methods that enable us to shift away from in vitro detecting to in vivo imaging. Finally, the future challenges and limitations of detection for cellular conditions are discussed.
机译:由于其独特的性质,例如可编程性,配体结合能力和柔韧性,核酸可以用作生物传感的分析物和/或识别元件。为了提高基于核酸的生物传感的敏感性,因此已经开发出了检测靶分子,不同现代扩增方法,即基于目标和信号的扩增策略的拷贝。这些最近的信号放大技术能够放大信号强度而不改变目标拷贝数,导致快速,可靠,敏感的核酸检测方法。研究人员在无细胞设置中工作,能够优化适用于在活细胞条件下部署的各种复杂和定量方法。在本研究中,提供了对用于检测核酸的信号放大技术的全面审查。我们将信号放大方法分类为酶促和非酶促策略,主要关注使我们能够在体外检测到体内成像的方法。最后,讨论了未来的挑战和检测对细胞条件的局部。

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