清脆的
打字
级联
病毒学
石墨烯
计算生物学
晶体管
纳米技术
计算机科学
生物
物理
材料科学
电压
遗传学
化学
基因
色谱法
量子力学
作者
Hua Wang,Yang Sun,Yuan Zhou,Yujie Liu,Shuo Chen,Wenbo Sun,Zidong Zhang,Junqing Guo,Cheng Yang,Zhengping Li,Lei Chen
标识
DOI:10.1016/j.bios.2023.115637
摘要
At present, the 100% case fatality and the cross-infection of virus strains make the ASFV 's harm to society continue to expand. The absence of an effective commercial vaccine poses early detection remains the most effective means of curbing ASFV infection. Here, we report a cascaded detection platform based on the CRISPR-Cas12a system combined with graphene field-effect transistor sensors. The cascade platform could detect ASFV as low as 0.5 aM within 30 min and achieve typing of wild and vaccine strains of ASFV in a single detection system. The evaluation of 16 clinical samples proved that, compared with the gold standard Real-time PCR method, this platform has outstanding advantages in sensitivity, specificity and typing. Combining CRISPR-Cas12a's high specificity with the bipolar electric field effect of graphene field-effect transistor, the cascade platform is expected to achieve clinical application in the field of DNA disease detection, and provides a new direction for multi-strain disease typing.
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