Department of Medical Microbiology, PGIMER, Chandigarh, India.
Department of Obstetrics and Gynaecology, PGIMER, Chandigarh, India.
Int J STD AIDS. 2024 Aug;35(9):727-732. doi: 10.1177/09564624241252185. Epub 2024 May 9.
is one of the most important causative organisms in causing sexually transmitted infections. The clinical presentation of gonorrhoea mimics the symptoms of other sexually transmitted infections, and a proper diagnosis of the same is therefore crucial in patient management. The current study intended to compare different in-house molecular methods: that is, conventional PCR, real-time PCR, and LAMP assay for detection of . . A total of 163 samples were collected from 145 patients who presented with urethral and vaginal discharge. Collected samples were processed for culture on GC agar base, and three different molecular diagnostic tests (conventional PCR, real-time PCR, and LAMP assay) were performed simultaneously on all the samples. Culture of . was positive in 17 out of 21 (80.9%) swab samples. With culture as the gold standard method, conventional and real-time PCR had a sensitivity of 94.1%, whereas the sensitivity of the LAMP assay was found to be 88.2%. All three methods had a specificity of 100%. In addition to swab samples, evaluation of urine samples by different molecular methods yielded a good concordance with a kappa value of 0.85 by conventional PCR and real-time PCR showing a perfect level of agreement, while the LAMP assay was found to have a substantial level of agreement. LAMP assay had a comparable diagnostic accuracy to other molecular methods for the detection of . and can be used as a point-of-care test in resource-limited settings.
淋病奈瑟菌是引起性传播感染的最重要病原体之一。淋病的临床表现类似于其他性传播感染的症状,因此正确诊断对于患者管理至关重要。本研究旨在比较不同的内部分子方法:即传统 PCR、实时 PCR 和 LAMP 检测 。 从 145 名出现尿道和阴道分泌物的患者中采集了 163 个样本。采集的样本在 GC 琼脂基础上进行培养,同时对所有样本进行三种不同的分子诊断测试(传统 PCR、实时 PCR 和 LAMP 检测)。 培养出 17 种奈瑟淋球菌,占拭子样本的 80.9%。以培养为金标准方法,传统 PCR 和实时 PCR 的灵敏度为 94.1%,而 LAMP 检测的灵敏度为 88.2%。三种方法的特异性均为 100%。除拭子样本外,不同分子方法评估尿液样本与传统 PCR 和实时 PCR 的kappa 值为 0.85,具有极好的一致性,显示出完美的一致性,而 LAMP 检测具有高度的一致性。LAMP 检测在检测 中的诊断准确性与其他分子方法相当,可在资源有限的环境中用作即时检测。