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用于简单即时检测钴污染的末端脱氧核苷酸转移酶介导的CRISPR传感平台。

Terminal deoxynucleotidyl transferase-mediated CRISPR sensing platform for simple and point-of-care detection of cobalt pollution.

作者信息

Dong Xiangyan, Chen Hui, Zhang Peiyi, Feng Ying, Guo Zixia, Fan Tingting, Liu Feng, Jiang Yuyang

机构信息

State Key Laboratory of Chemical Oncogenomics, Tsinghua Shenzhen International Graduate School, Shenzhen, 518055, PR China.

State Key Laboratory of Chemical Oncogenomics, Tsinghua Shenzhen International Graduate School, Shenzhen, 518055, PR China; Department of Chemistry, Tsinghua University, Beijing, 100084, PR China.

出版信息

Talanta. 2025 Jan 1;282:126999. doi: 10.1016/j.talanta.2024.126999. Epub 2024 Oct 9.

Abstract

The excessive use of cobalt in various chemical industries and arbitrary discharge of industrial wastewater have led to increased cobalt pollution in soil and water resources, increasing the risk of human exposure to high concentrations of cobalt and necessitating an urgent need for on-site monitoring platform for cobalt pollution. In this study, the terminal deoxynucleotidyl transferase (TdT)-CRISPR platform has been developed. In this platform, cobalt as a cofactor of TdT, can significantly improve the tailing efficiency of TdT-mediated extension. Therefore, when cobalt is present, the detection probe can be extended with poly(T) tails through the TdT-mediated extension, which can be subsequently served as the DNA activator for Cas12a, leading to the cleavage of fluorescence reporter molecules and triggering turn-on fluorescence signals. Consequently, this dual amplification sensing strategy of TdT-CRISPR platform demonstrated exceptional sensitivity (0.83 nM) and high specificity for cobalt over other ions. Furthermore, the method was successfully employed for the detection of cobalt in tap water and river samples. CRISPR-lateral flow assays (CRISPR-LFAs) were evaluated in this study for the simple and point-of-care detection of cobalt pollution. The assays are capable of detecting cobalt concentrations as low as 50 nM, which is significantly lower than the environmental standards of 16.9 μM, through strip analysis with the naked eye. These results commonly suggest that the TdT-CRISPR platform holds significant promise for monitoring cobalt pollution, providing a robust and sensitive solution for on-site detection and contributing to the mitigation of cobalt contamination risks in environmental matrices.

摘要

钴在各种化学工业中的过度使用以及工业废水的任意排放导致土壤和水资源中的钴污染增加,增加了人类接触高浓度钴的风险,因此迫切需要钴污染现场监测平台。在本研究中,开发了末端脱氧核苷酸转移酶(TdT)-CRISPR平台。在该平台中,钴作为TdT的辅因子,可显著提高TdT介导的延伸的拖尾效率。因此,当存在钴时,检测探针可通过TdT介导的延伸用聚(T)尾延伸,随后可作为Cas12a的DNA激活剂,导致荧光报告分子的切割并触发开启荧光信号。因此,TdT-CRISPR平台的这种双扩增传感策略对钴表现出非凡的灵敏度(0.83 nM)和相对于其他离子的高特异性。此外,该方法成功用于自来水和河水样品中钴的检测。本研究评估了CRISPR侧流分析(CRISPR-LFAs)用于钴污染的简单即时检测。通过肉眼进行试纸条分析,这些分析能够检测低至50 nM的钴浓度,这明显低于16.9 μM的环境标准。这些结果共同表明,TdT-CRISPR平台在监测钴污染方面具有重大前景,为现场检测提供了一种强大而灵敏的解决方案,并有助于降低环境基质中钴污染的风险。

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