Khumtong Kotchaporn, Rapichai Witsanu, Saejung Wichayet, Khamsingnok Piyamat, Meecharoen Nianrawan, Ratanabunyong Siriluk, Dong Hieu Van, Tuanthap Supansa, Rattanasrisomporn Amonpun, Choowongkomon Kiattawee, Rungsuriyawiboon Oumaporn, Rattanasrisomporn Jatuporn
Graduate Program in Animal Health and Biomedical Sciences, Faculty of Veterinary Medicine, Kasetsart University, Bangkok 10900, Thailand.
Department of Companion Animal Clinical Sciences, Faculty of Veterinary Medicine, Kasetsart University, Bangkok 10900, Thailand.
Viruses. 2025 Mar 14;17(3):418. doi: 10.3390/v17030418.
Feline infectious peritonitis (FIP), a devastating disease with near-complete mortality, is caused by the feline coronavirus (FCoV) and affects domestic cats worldwide. Herein, we report the development of a reverse transcription loop-mediated isothermal amplification (RT-LAMP) assay incorporating xylenol orange (XO) as a visual indicator for FCoV detection. The assay employed six oligonucleotide primers targeting regions of the nucleocapsid (N) gene. Under optimized conditions (65 °C, 60 min), amplification products were detected through pH-dependent colour changes in the XO dye. The RT-LAMP-XO assay exhibited high specificity for FCoV, with no cross-reactivity against other common feline viral pathogens. While the detection limit (1.7 × 10 copies/µL) was an order of magnitude higher than that of qPCR, the method offered advantages in simplicity and speed compared to existing diagnostic approaches. Although less sensitive than qPCR, the RT-LAMP-XO assay may serve as a rapid screening tool when used in combination with additional primer sets. These findings demonstrate the potential utility of XO-based RT-LAMP as a simple, visual detection method for FCoV infection.
猫传染性腹膜炎(FIP)是一种死亡率几乎达100%的毁灭性疾病,由猫冠状病毒(FCoV)引起,影响着全球范围内的家猫。在此,我们报告了一种逆转录环介导等温扩增(RT-LAMP)检测方法的开发,该方法采用二甲酚橙(XO)作为FCoV检测的可视化指示剂。该检测方法使用了针对核衣壳(N)基因区域的六条寡核苷酸引物。在优化条件(65℃,60分钟)下,通过XO染料中依赖pH的颜色变化检测扩增产物。RT-LAMP-XO检测方法对FCoV具有高度特异性,与其他常见的猫病毒病原体无交叉反应。虽然检测限(1.7×10拷贝/微升)比qPCR高一个数量级,但与现有诊断方法相比,该方法在简便性和速度方面具有优势。尽管不如qPCR灵敏,但RT-LAMP-XO检测方法与其他引物组联合使用时,可作为一种快速筛查工具。这些发现证明了基于XO的RT-LAMP作为一种简单的FCoV感染可视化检测方法的潜在实用性。