首页> 外文期刊>BMC Infectious Diseases >Multiplexed kit based on Luminex technology and achievements in synthetic biology discriminates Zika, chikungunya, and dengue viruses in mosquitoes
【24h】

Multiplexed kit based on Luminex technology and achievements in synthetic biology discriminates Zika, chikungunya, and dengue viruses in mosquitoes

机译:基于Luminex技术的多路复用套件和合成生物学成果鉴别Zika,Chikungunya和Dengue病毒在蚊子中

获取原文

摘要

The global expansion of dengue (DENV), chikungunya (CHIKV), and Zika viruses (ZIKV) is having a serious impact on public health. Because these arboviruses are transmitted by the same mosquito species and co-circulate in the same area, a sensitive diagnostic assay that detects them together, with discrimination, is needed. We present here a diagnostics panel based on reverse transcription-PCR amplification of viral RNA and an xMap Luminex architecture involving direct hybridization of PCRamplicons and virus-specific probes. Two DNA innovations ("artificially expanded genetic information systems", AEGIS, and "self-avoiding molecular recognition systems", SAMRS) increase the hybridization sensitivity on Luminex microspheres and PCR specificity of the multiplex assay compared to the standard approach (standard nucleotides). The diagnostics panel detects, if they are present, these viruses with a resolution of 20 genome equivalents (DENV1), or 10 (DENV3-4, CHIKV) and 80 (DENV2, ZIKV) genome equivalents per assay. It identifies ZIKV, CHIKV and DENV RNAs in a single infected mosquito, in mosquito pools comprised of 5 to 50 individuals, and mosquito saliva (ZIKV, CHIKV, and DENV2). Infected mosquitoes and saliva were also collected on a cationic surface (Q-paper), which binds mosquito and viral nucleic acids electrostatically. All samples from infected mosquitoes displayed only target-specific signals; signals from non-infected samples were at background levels. Our results provide an efficient and multiplex tool that may be used for surveillance of emerging mosquito-borne pathogens which aids targeted mosquito control in areas at high risk for transmission.
机译:登革热(Denv),Chikungunya(Chikv)和Zika病毒(ZIKV)的全球扩张对公共卫生产生了严重影响。因为这些腹膜病毒通过相同的蚊虫物种和在同一区域中的共循环,所以需要一种敏感的诊断测定,以辨别方式在一起。我们在此提出基于逆转录PCR扩增病毒RNA的诊断面板和涉及PCRamplicons和病毒特异性探针的直接杂交的XMAP Luminex结构。两种DNA创新(“人工扩展的遗传信息系统”,AEGIS和“自避免分子识别系统”,SAMR)与标准方法(标准核苷酸)相比,多重测定的毫米X微球和PCR特异性的杂交敏感性增加。诊断面板如果存在,这些病毒具有20个基因组当量(DENV1)的分辨率,或10(DENV3-4,CHIKV)和80(DENV2,ZIKV)基因组当量的分辨率。它识别Zikv,Chikv和Denv RNA在一个受感染的蚊子中,蚊子池,包括5到50个个人,蚊子唾液(Zikv,Chikv和Denv2)。也收集在阳离子表面(Q纸)上收集感染的蚊子和唾液,其静电地粘合蚊子和病毒核酸。来自受感染的蚊子的所有样品仅显示特定于目标的信号;来自无感染样品的信号在背景水平。我们的结果提供了一种高效和多路复用的工具,可用于监测新兴蚊子的病原体,其有助于在高风险的地区进行针对性的蚊子控制。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号