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适用于资源匮乏地区的室温CRISPR诊断技术。

Room temperature CRISPR diagnostics for low-resource settings.

作者信息

Nalefski Eric A, Sinan Selma, Cantera Jason L, Kim Anastasia G, Kooistra Remy M, Rivera Rafael E, Janshen Jordyn P, Bhadra Sanchita, Bishop Joshua D, Ellington Andrew D, Finklestein Ilya J, Madan Damian

机构信息

Global Health Labs, Inc, Bellevue, WA, 98007, USA.

Department of Molecular Biosciences, University of Texas at Austin, Austin, TX, 78712, USA.

出版信息

Sci Rep. 2025 Jan 31;15(1):3909. doi: 10.1038/s41598-025-86373-5.

Abstract

Maintaining elevated reaction temperatures and multi-step sample preparations increases the costs and complexity of diagnostics, impeding their deployment in low-resource settings. Here, we develop a one-pot, room temperature recombinase polymerase amplification (RPA)-CRISPR reaction that removes these critical challenges. We show that RPA amplification is reduced by several orders of magnitude at 25 °C as compared to 37 °C. Similarly, when coupled to RPA, the performance of multiple Cas12a orthologs, including the widely used LbCas12a, is severely compromised at temperatures below 37 °C. To mitigate these limitations, we identify the ortholog TsCas12a as a highly active nuclease at 25 °C and develop a single-protocol RPA-Cas12a detection reaction with this enzyme. A quantitative kinetic analysis reveals that fast nuclease activation is more critical than higher steady-state trans-cleavage activity for room temperature diagnostic applications. RPA-TsCas12a reactions performed at 25 °C effectively detected HPV-16 in crudely prepared cervical swab samples with high sensitivity and specificity using both optical and lateral flow readouts. The reactions developed herein reduce the complexity and equipment requirements for affordable diagnostics in low- and middle-income countries.

摘要

维持较高的反应温度和多步骤样本制备会增加诊断成本和复杂性,阻碍其在资源匮乏地区的应用。在此,我们开发了一种单管室温重组酶聚合酶扩增(RPA)-CRISPR反应,消除了这些关键挑战。我们发现,与37°C相比,RPA扩增在25°C时降低了几个数量级。同样,当与RPA结合时,包括广泛使用的LbCas12a在内的多种Cas12a直系同源物在低于37°C的温度下性能会严重受损。为了缓解这些限制,我们确定直系同源物TsCas12a在25°C时是一种高活性核酸酶,并开发了使用该酶的单方案RPA-Cas12a检测反应。定量动力学分析表明,对于室温诊断应用而言,快速的核酸酶激活比更高的稳态反式切割活性更为关键。在25°C下进行的RPA-TsCas12a反应,使用光学和侧流读数,能够以高灵敏度和特异性有效检测粗制宫颈拭子样本中的HPV-16。本文开发的反应降低了中低收入国家经济适用型诊断的复杂性和设备要求。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9857/11785965/6818de820a5a/41598_2025_86373_Fig1_HTML.jpg

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