Zhang Xinling, Chen Shiyu, Li Juezhuo, Liu Dong-Ang, Lai Jianxiu, Song Xiangquan, Hu Ruiyao, Qiu Yuting, Chen Keyi, Xu Yue, Li Xiaoping
Key Laboratory of Artificial Organs and Computational Medicine in Zhejiang Province, Shulan International Medical College, Zhejiang Shuren University, Hangzhou, People's Republic of China.
Wycombe Abbey School Hangzhou, Hangzhou, People's Republic of China.
Microb Biotechnol. 2025 Apr;18(4):e70144. doi: 10.1111/1751-7915.70144.
We developed a sensitive and specific method based on recombinase-aided amplification (RAA) and clustered regularly interspaced short palindromic repeats (CRISPR)-CRISPR-associated protein 13a (Cas13a). This method, named CRISPR-based Rapid and Efficient Test (CRISPRET), is designed for the early diagnosis of Influenza B (FluB) with the aim of shortening its transmission chain. We identified conserved regions in the Influenza B Virus (IBV) NS gene and designed forward and reverse primers along with crRNAs. We then established and optimised the reaction system, and Nucleic Acid Positive Reference Materials of IBV were used to evaluate the detection limit (DL) of CRISPRET. Additionally, we collected 257 clinical samples, comprising 127 samples from patients with IBV infection and 130 samples from healthy individuals, and subjected them to dual detection using CRISPRET and qPCR to evaluate the positive predictive value (PPV), negative predictive value (NPV), sensitivity and specificity of CRISPRET. We designed one forward primer, two reverse primers, and two crRNAs to establish and optimise the CRISPR ET. The method demonstrated the DL of 500 copies·μL when assisted by appropriate equipment. Despite requiring auxiliary equipment and a 30-min reaction, the CRISPR ET method enables the detection of IBV nucleic acid within approximately the first 5 min, achieving high sensitivity (100%), specificity (97.69%), PPV (97.69%) and NPV (100%), with a concordance rate of 98.83% to qPCR. CRISPRET offers a simple, field-applicable, one-step method for the rapid detection of IBV. It has strong potential for field-testing applications and intelligent integration into existing diagnostic systems.
我们基于重组酶辅助扩增(RAA)和规律成簇间隔短回文重复序列(CRISPR)-CRISPR相关蛋白13a(Cas13a)开发了一种灵敏且特异的方法。该方法名为基于CRISPR的快速高效检测法(CRISPRET),旨在通过早期诊断乙型流感(FluB)来缩短其传播链。我们鉴定了乙型流感病毒(IBV)NS基因中的保守区域,并设计了正向和反向引物以及crRNA。然后我们建立并优化了反应体系,使用IBV核酸阳性参考物质评估CRISPRET的检测限(DL)。此外,我们收集了257份临床样本,其中包括127份来自IBV感染患者的样本和130份来自健康个体的样本,并使用CRISPRET和qPCR对它们进行双重检测,以评估CRISPRET的阳性预测值(PPV)、阴性预测值(NPV)、灵敏度和特异性。我们设计了一条正向引物、两条反向引物和两条crRNA来建立并优化CRISPR ET。该方法在适当设备辅助下检测限为500拷贝·μL。尽管需要辅助设备且反应时间为30分钟,但CRISPR ET方法能够在大约前5分钟内检测到IBV核酸,灵敏度高达100%,特异性为97.69%,PPV为97.69%,NPV为100%,与qPCR的一致性率为98.83%。CRISPRET为快速检测IBV提供了一种简单、适用于现场的一步法。它在现场检测应用以及智能集成到现有诊断系统方面具有强大潜力。