Kan Xingchi, Wu Yue, Zhang Xiyue, Zeng Zihan, Lou Chen, Wu Lina, Huang Xingxu, Wang Xinjie, Huang Baicheng
Zhejiang Lab Hangzhou 311121China.
Respiratory Department Hangzhou First People's Hospital Hangzhou 310006China.
Transbound Emerg Dis. 2024 May 28;2024:5002521. doi: 10.1155/2024/5002521. eCollection 2024.
The recent high incidence of (Mp) infections has raised widespread public health concerns. Therefore, rapid and accurate diagnosis of respiratory pathogenic microbial infections is of paramount importance to provide clinicians with accurate diagnostic insights and guide clinical medication. In response to this urgent need, we developed a one-tube Palm CRISPR/Cas12a Diagnostic (PaCD) method. This method facilitates the rapid detection of Mp infections, as well as three other prevalent respiratory pathogens, (Cp), (Hi), and (SP). In addition, 3D printing was employed to fabricate a compact detection device that includes a temperature control module set at 39°C and a blue light irradiation module, significantly enhancing the feasibility of point-of-care testing. The PaCD diagnostic process takes only 30 min with a detection limit of 50 copies/test, making it suitable for analysis of sputum and throat swab samples. PaCD demonstrated 100% concordance (72/72) with next-generation sequencing and exhibited high concordance with computed tomography test results. These findings demonstrate the clinical feasibility of PaCD for the rapid and accurate diagnosis of infections caused by four prevalent respiratory pathogens, offering theoretical insights into the versatile application of point-of-care tests for the detection of other respiratory pathogens in various clinical scenarios.
近期肺炎支原体(Mp)感染的高发病率引发了广泛的公共卫生关注。因此,快速准确地诊断呼吸道病原微生物感染对于为临床医生提供准确的诊断见解并指导临床用药至关重要。为满足这一迫切需求,我们开发了一种单管掌上CRISPR/Cas12a诊断(PaCD)方法。该方法有助于快速检测Mp感染以及其他三种常见呼吸道病原体,即肺炎衣原体(Cp)、流感嗜血杆菌(Hi)和肺炎链球菌(SP)。此外,采用3D打印制造了一种紧凑型检测设备,该设备包括一个设置为39°C的温度控制模块和一个蓝光照射模块,显著提高了即时检测的可行性。PaCD诊断过程仅需30分钟,检测限为50拷贝/测试,适用于痰液和咽拭子样本分析。PaCD与下一代测序显示出100%的一致性(72/72),并与计算机断层扫描测试结果具有高度一致性。这些发现证明了PaCD在快速准确诊断由四种常见呼吸道病原体引起的感染方面的临床可行性,为即时检测在各种临床场景中检测其他呼吸道病原体的广泛应用提供了理论见解。