化学
伪狂犬病
对偶(语法数字)
清脆的
病毒
纳米技术
病毒学
生物化学
生物
基因
文学类
艺术
材料科学
作者
Dong Ho You,Tong Xu,Bing-Zhou Huang,Fang Wu,Lishuang Deng,Zhe-Yan Liu,Liangpeng Ge,Zuohua Liu,Jing Sun,Xiu Zeng,Yuancheng Zhou,Siyuan Lai,Yan-Ru Ai,Jianbo Huang,Ling Zhu,Zhiwen Xu
标识
DOI:10.1016/j.aca.2024.342918
摘要
Pseudorabies viruses (PRV) pose a major threat to the global pig industry and public health. Rapid, intuitive, affordable, and accurate diagnostic testing is critical for controlling and eradicating infectious diseases. In this study, a portable detection platform based on RPA-CRISPR/EsCas13d was developed. The platform exhibits high sensitivity (1 copy/μL), good specificity, and no cross-reactivity with common pathogens. The platform uses rapid preamplification technology to provide visualization results (lateral flow assays or visual fluorescence) within 1 h. Fifty pig samples (including tissues, oral fluids, and serum) were tested using this platform and real-time quantitative polymerase chain reaction (qPCR), showing 34.0 % (17 of 50) PRV positivity with the portable CRISPR/EsCas13d dual-readout platform, consistent with the qPCR results. These results highlight the stability, sensitivity, efficiency, and low equipment requirements of the portable platform. Additionally, a novel point-of-care test is being developed for clinical use in remote rural and resource-limited areas, which could be a prospective measure for monitoring the progression of pseudorabies and other infectious diseases worldwide.
科研通智能强力驱动
Strongly Powered by AbleSci AI