Yang Yang, Li Yuhao, Wang Ziyang, Tong Minglong, Zhu Pengcheng, Deng Juanxian, Li Zongjie, Liu Ke, Li Beibei, Shao Donghua, Zhou Zhongren, Qiu Yafeng, Ma Zhiyong, Wei Jianchao
Shanghai Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Shanghai 200241, China.
Yixing Customs, Yixing 214200, China.
Biosensors (Basel). 2025 Jan 6;15(1):25. doi: 10.3390/bios15010025.
In this study, a novel rapid immunochromatographic (IC) test for African swine fever virus (ASFV) antibodies is presented. An immunochromatographic test (IC) is a detection technique that combines membrane chromatography with immunolabeling. This approach saves time for antibody preparation, resulting in a shorter production cycle. p54 is an important structural protein of African swine fever, and an ideal protein for serotype diagnosis. Gold nanoparticles are attached to the ASFV p54-Fc fusion protein, and the ASFV-specific antigen p54 and Staphylococcus aureus protein A (SPA) are labeled on a nitrocellulose membrane, at positions T and C, respectively. We developed a SPA double sandwich IC test strip, and assessed its feasibility using ASFV p54 and p54-Fc fusion proteins as antigens. ASFV p54 and p54-Fc fusion proteins were expressed and purified. A sandwich cross-flow detection method for p54, which is the primary structural protein of ASFV, was established, using colloidal gold conjugation. Our method can detect ASFV antibodies in field serum samples in about 15 min using a portable colloidal gold detector, demonstrating high specificity and sensitivity (1:320), and the coincidence rate was 98% using a commercial ELISA kit. The dilution of the serum sample can be determined by substituting the absorbance (T-line) interpreted by portable devices into the calibration curve function formula of an African swine fever virus standard serum. In summary, our method is rapid, cost-effective, precise, and highly selective. Additionally, it introduces a new approach for constructing IC test strips using SPA protein without antibody preparation, making it a reliable on-site antibody test for ASFV.
本研究提出了一种新型的非洲猪瘟病毒(ASFV)抗体快速免疫层析(IC)检测方法。免疫层析检测(IC)是一种将膜色谱与免疫标记相结合的检测技术。这种方法节省了抗体制备时间,从而缩短了生产周期。p54是非洲猪瘟的一种重要结构蛋白,是血清型诊断的理想蛋白。金纳米颗粒附着在ASFV p54-Fc融合蛋白上,ASFV特异性抗原p54和金黄色葡萄球菌蛋白A(SPA)分别标记在硝酸纤维素膜的T和C位置。我们开发了一种SPA双夹心IC检测试纸条,并以ASFV p54和p54-Fc融合蛋白作为抗原评估了其可行性。表达并纯化了ASFV p54和p54-Fc融合蛋白。利用胶体金偶联建立了针对ASFV主要结构蛋白p54的夹心错流检测方法。我们的方法使用便携式胶体金检测仪可在约15分钟内检测野外血清样本中的ASFV抗体,具有高特异性和灵敏度(1:320),使用商业ELISA试剂盒时符合率为98%。血清样本的稀释度可通过将便携式设备解读的吸光度(T线)代入非洲猪瘟病毒标准血清的校准曲线函数公式来确定。总之,我们的方法快速、经济高效、精确且具有高度选择性。此外,它引入了一种无需抗体制备即可使用SPA蛋白构建IC检测试纸条的新方法,使其成为一种可靠的ASFV现场抗体检测方法。