He Mengyi, Feng Shuping, Shi Kaichuang, Shi Yandi, Long Feng, Yin Yanwen, Li Zongqiang
Department of Basic Veterinary Medicine, College of Animal Science and Technology, Guangxi University, Nanning 530005, China.
Guangxi Center for Animal Disease Control and Prevention, Nanning 530001, China.
Vet World. 2024 May;17(5):946-955. doi: 10.14202/vetworld.2024.946-955. Epub 2024 May 4.
Feline coronavirus (FCoV), feline panleukopenia virus (FPV), and feline leukemia virus (FeLV) are prevalent throughout China and significantly threaten cat health. These viruses cause similar manifestations and pathological damage. Rapid and accurate diagnosis depends on detection in the laboratory. This study aimed to establish a reliable and rapid method for accurate detection of FCoV, FPV, and FeLV so that a definite diagnosis can be made and effective measures can be taken to prevent and control viral infection.
We designed three pairs of specific primers and probes for the detection of FCoV 5' untranslated region, FPV viral protein 2, and FeLV pol genes. Recombinant plasmid constructs were generated for use as standard plasmid constructs. Optimal reaction conditions, including primer and probe concentrations, reaction cycles, and annealing temperatures, were obtained on the basis of optimization tests. One-step triplex real-time reverse transcription-quantitative polymerase chain reaction (RT-qPCR) was successfully established to simultaneously detect FCoV, FPV, and FeLV. The specificity, sensitivity, and repeatability of the assay were analyzed, and its applicability was validated by testing 1175 clinical samples.
One-step triplex RT-qPCR had a high degree of specificity only for the detection of FCoV, FPV, and FeLV; it had high sensitivity with limits of detection of 139.904, 143.099, and 152.079 copies/reaction for p-FCoV, p-FPV, and p-FeLV standard plasmid constructs, respectively, and it had reliable repeatability with 0.06%-0.87% intra-assay coefficients of variations. A total of 1175 clinical samples were examined for FCoV, FPV, and FeLV using triplex RT-qPCR, and the FCoV, FPV, and FeLV positivity rates were 18.47%, 19.91%, and 47.57%, respectively. The clinical sensitivity and specificity of one-step triplex RT-qPCR were 93.07% and 97.99%, respectively.
We developed a rapid and reliable one-step triplex RT-qPCR method for the detection of FCoV, FPV, and FeLV, which could be used as a diagnostic tool for clinical monitoring and diagnosis.
猫冠状病毒(FCoV)、猫泛白细胞减少症病毒(FPV)和猫白血病病毒(FeLV)在中国广泛流行,严重威胁猫的健康。这些病毒会引发相似的症状和病理损伤。快速准确的诊断依赖于实验室检测。本研究旨在建立一种可靠、快速的方法,用于准确检测FCoV、FPV和FeLV,以便做出明确诊断,并采取有效措施预防和控制病毒感染。
我们设计了三对特异性引物和探针,用于检测FCoV的5'非翻译区、FPV的病毒蛋白2和FeLV的pol基因。构建重组质粒作为标准质粒。通过优化试验获得了最佳反应条件,包括引物和探针浓度、反应循环数和退火温度。成功建立了一步法三重实时逆转录定量聚合酶链反应(RT-qPCR),用于同时检测FCoV、FPV和FeLV。分析了该检测方法的特异性、敏感性和重复性,并通过检测1175份临床样本验证了其适用性。
一步法三重RT-qPCR仅对FCoV、FPV和FeLV的检测具有高度特异性;具有高敏感性,对p-FCoV、p-FPV和p-FeLV标准质粒的检测限分别为139.904、143.099和152.079拷贝/反应,并且具有可靠的重复性,批内变异系数为0.06%-0.87%。使用三重RT-qPCR对1175份临床样本进行FCoV、FPV和FeLV检测,FCoV、FPV和FeLV的阳性率分别为18.47%、19.91%和47.57%。一步法三重RT-qPCR的临床敏感性和特异性分别为93.07%和97.99%。
我们开发了一种快速可靠的一步法三重RT-qPCR方法,用于检测FCoV、FPV和FeLV,可作为临床监测和诊断的诊断工具。