{"title":"基于ERA-CRISPR/Cas12a的肺炎支原体检测系统的建立与优化","authors":"Fo Yang, Qianlin Wu, Xiaotong Zeng, Qiuyang Jiang, Shanshan Zhang, Jin Wang, Qi Zhang, Feng Li, Dayong Xu","doi":"10.1128/spectrum.03235-24","DOIUrl":null,"url":null,"abstract":"<p><p><i>Mycoplasma pneumoniae</i> (MP) is a significant pathogen associated with community-acquired pneumonia, with considerable infectious risks posed, particularly to children and immunocompromised individuals. The current methods for detecting MP in research and clinical settings are recognized as time-consuming, instrument-dependent, and prone to non-specific cross-reactivity. Therefore, the creation of a rapid and sensitive detection method is urgently required. In this study, the MP-ERA-Cas12a system, integrating enzyme restriction amplification (ERA) with clustered regularly interspaced short palindromic repeats (CRISPR)/Cas12a technology, was introduced. Three detection methods were evaluated: the two-pot system, a modified one-pot system, and a lateral flow assay (LFA) strip-based system. In the one-pot system, the amplification and detection steps were consolidated within a single reaction vessel, effectively minimizing the risk of contamination and false positives that may arise from the handling of multiple tubes. It was observed that the one-pot system generated a fluorescent signal within 1 h and produced 1.6 times higher fluorescence signal intensity compared to the two-pot system, achieving a detection limit of 1 copy/μL. In contrast, the LFA system facilitated rapid on-site screening, with visible band results appearing on the strip within 5 min of the reaction, and a detection limit of 10<sup>2</sup> copies/μL was achieved. High specificity for MP was demonstrated by all methods. Significant advantages, including rapid processing, the absence of complex instrumentation, and ease of use are offered by this detection system, making it particularly suitable for resource-limited clinical settings. The system is seen as an efficient tool for the early diagnosis of MP, with substantial public health and clinical relevance.</p><p><strong>Importance: </strong>This study successfully combined enzyme restriction amplification (ERA) with the specific detection capabilities of clustered regularly interspaced short palindromic repeats (CRISPR)/Cas12a. Based on the two-pot system established before, the one-pot system and lateral flow assay (LFA) system were developed for <i>Mycoplasma pneumoniae</i> (MP) detection. The MP-ERA-Cas12a system eliminates the need to open the lid during the reaction, reducing aerosol contamination, and minimizing the risk of false positives. The method does not require the use of advanced instruments or equipment and shows strong specificity while not being affected by other pathogens. As a new method of MP detection, the MP-ERA-Cas12a system has an important practical application prospect.</p>","PeriodicalId":18670,"journal":{"name":"Microbiology spectrum","volume":" ","pages":"e0323524"},"PeriodicalIF":3.7000,"publicationDate":"2025-04-01","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.ncbi.nlm.nih.gov/pmc/articles/PMC11960117/pdf/","citationCount":"0","resultStr":"{\"title\":\"The establishment and optimization of a <i>Mycoplasma pneumoniae</i> detection system based on ERA-CRISPR/Cas12a.\",\"authors\":\"Fo Yang, Qianlin Wu, Xiaotong Zeng, Qiuyang Jiang, Shanshan Zhang, Jin Wang, Qi Zhang, Feng Li, Dayong Xu\",\"doi\":\"10.1128/spectrum.03235-24\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><p><i>Mycoplasma pneumoniae</i> (MP) is a significant pathogen associated with community-acquired pneumonia, with considerable infectious risks posed, particularly to children and immunocompromised individuals. The current methods for detecting MP in research and clinical settings are recognized as time-consuming, instrument-dependent, and prone to non-specific cross-reactivity. Therefore, the creation of a rapid and sensitive detection method is urgently required. In this study, the MP-ERA-Cas12a system, integrating enzyme restriction amplification (ERA) with clustered regularly interspaced short palindromic repeats (CRISPR)/Cas12a technology, was introduced. Three detection methods were evaluated: the two-pot system, a modified one-pot system, and a lateral flow assay (LFA) strip-based system. In the one-pot system, the amplification and detection steps were consolidated within a single reaction vessel, effectively minimizing the risk of contamination and false positives that may arise from the handling of multiple tubes. It was observed that the one-pot system generated a fluorescent signal within 1 h and produced 1.6 times higher fluorescence signal intensity compared to the two-pot system, achieving a detection limit of 1 copy/μL. In contrast, the LFA system facilitated rapid on-site screening, with visible band results appearing on the strip within 5 min of the reaction, and a detection limit of 10<sup>2</sup> copies/μL was achieved. High specificity for MP was demonstrated by all methods. Significant advantages, including rapid processing, the absence of complex instrumentation, and ease of use are offered by this detection system, making it particularly suitable for resource-limited clinical settings. The system is seen as an efficient tool for the early diagnosis of MP, with substantial public health and clinical relevance.</p><p><strong>Importance: </strong>This study successfully combined enzyme restriction amplification (ERA) with the specific detection capabilities of clustered regularly interspaced short palindromic repeats (CRISPR)/Cas12a. Based on the two-pot system established before, the one-pot system and lateral flow assay (LFA) system were developed for <i>Mycoplasma pneumoniae</i> (MP) detection. The MP-ERA-Cas12a system eliminates the need to open the lid during the reaction, reducing aerosol contamination, and minimizing the risk of false positives. The method does not require the use of advanced instruments or equipment and shows strong specificity while not being affected by other pathogens. 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引用次数: 0
摘要
肺炎支原体(MP)是一种与社区获得性肺炎相关的重要病原体,具有相当大的感染风险,特别是对儿童和免疫功能低下的个体。目前在研究和临床环境中检测MP的方法被认为是耗时的,仪器依赖的,并且容易产生非特异性交叉反应。因此,迫切需要建立一种快速灵敏的检测方法。在这项研究中,MP-ERA-Cas12a系统,整合酶限制扩增(ERA)与聚集规则间隔短回文重复(CRISPR)/Cas12a技术。评估了三种检测方法:双罐系统、改进的单罐系统和基于条带的横向流动试验(LFA)系统。在单锅系统中,扩增和检测步骤被整合在一个反应容器中,有效地减少了因处理多个管而可能产生的污染和误报的风险。结果表明,单锅体系在1 h内产生荧光信号,荧光信号强度是双锅体系的1.6倍,检测限为1拷贝/μL。相比之下,LFA系统有利于快速的现场筛选,反应5 min内在试纸上出现可见条带,检测限为102拷贝/μL。所有方法均显示MP的高特异性。该检测系统具有显著的优势,包括快速处理、不需要复杂的仪器和易于使用,使其特别适合资源有限的临床环境。该系统被视为MP早期诊断的有效工具,具有重大的公共卫生和临床意义。重要性:本研究成功地将酶限制扩增(ERA)与聚集规律间隔短回文重复序列(CRISPR)/Cas12a的特异性检测能力结合起来。在之前建立的双罐检测系统的基础上,建立了单罐检测系统和横向流动法检测系统。MP-ERA-Cas12a系统无需在反应过程中打开盖子,减少气溶胶污染,并最大限度地降低假阳性的风险。该方法不需要使用先进的仪器或设备,具有很强的特异性,同时不受其他病原体的影响。MP- era - cas12a系统作为一种新的MP检测方法,具有重要的实际应用前景。
The establishment and optimization of a Mycoplasma pneumoniae detection system based on ERA-CRISPR/Cas12a.
Mycoplasma pneumoniae (MP) is a significant pathogen associated with community-acquired pneumonia, with considerable infectious risks posed, particularly to children and immunocompromised individuals. The current methods for detecting MP in research and clinical settings are recognized as time-consuming, instrument-dependent, and prone to non-specific cross-reactivity. Therefore, the creation of a rapid and sensitive detection method is urgently required. In this study, the MP-ERA-Cas12a system, integrating enzyme restriction amplification (ERA) with clustered regularly interspaced short palindromic repeats (CRISPR)/Cas12a technology, was introduced. Three detection methods were evaluated: the two-pot system, a modified one-pot system, and a lateral flow assay (LFA) strip-based system. In the one-pot system, the amplification and detection steps were consolidated within a single reaction vessel, effectively minimizing the risk of contamination and false positives that may arise from the handling of multiple tubes. It was observed that the one-pot system generated a fluorescent signal within 1 h and produced 1.6 times higher fluorescence signal intensity compared to the two-pot system, achieving a detection limit of 1 copy/μL. In contrast, the LFA system facilitated rapid on-site screening, with visible band results appearing on the strip within 5 min of the reaction, and a detection limit of 102 copies/μL was achieved. High specificity for MP was demonstrated by all methods. Significant advantages, including rapid processing, the absence of complex instrumentation, and ease of use are offered by this detection system, making it particularly suitable for resource-limited clinical settings. The system is seen as an efficient tool for the early diagnosis of MP, with substantial public health and clinical relevance.
Importance: This study successfully combined enzyme restriction amplification (ERA) with the specific detection capabilities of clustered regularly interspaced short palindromic repeats (CRISPR)/Cas12a. Based on the two-pot system established before, the one-pot system and lateral flow assay (LFA) system were developed for Mycoplasma pneumoniae (MP) detection. The MP-ERA-Cas12a system eliminates the need to open the lid during the reaction, reducing aerosol contamination, and minimizing the risk of false positives. The method does not require the use of advanced instruments or equipment and shows strong specificity while not being affected by other pathogens. As a new method of MP detection, the MP-ERA-Cas12a system has an important practical application prospect.
期刊介绍:
Microbiology Spectrum publishes commissioned review articles on topics in microbiology representing ten content areas: Archaea; Food Microbiology; Bacterial Genetics, Cell Biology, and Physiology; Clinical Microbiology; Environmental Microbiology and Ecology; Eukaryotic Microbes; Genomics, Computational, and Synthetic Microbiology; Immunology; Pathogenesis; and Virology. Reviews are interrelated, with each review linking to other related content. A large board of Microbiology Spectrum editors aids in the development of topics for potential reviews and in the identification of an editor, or editors, who shepherd each collection.