首页> 外文期刊>Analytical chemistry >Dye Coupled Aptamer-Captured Enzyme Catalyzed Reaction for Detection of Pan Malaria and P. falciparum Species in Laboratory Settings and Instrument-Free Paper-Based Platform
【24h】

Dye Coupled Aptamer-Captured Enzyme Catalyzed Reaction for Detection of Pan Malaria and P. falciparum Species in Laboratory Settings and Instrument-Free Paper-Based Platform

机译:染料偶联适体捕获的酶催化反应,用于检测实验室设置和无仪器纸张平台的PAN疟疾和P.Malciparum物种

获取原文
获取原文并翻译 | 示例
       

摘要

Malaria diagnosis methods offering species specific information on the causative parasites, along with their flexibility to use in different resource settings, have great demand for precise treatment and management of the disease. Herein, we report the detection of pan malaria and P. falciparum species using a dye-based reaction catalyzed by the biomarker enzymes Plasmodium lactate dehydrogenase (PLDH) and Plasmodium falciparum glutamate dehydrogenase (PfGDH), respectively, through instrument-based and instrument-free approaches. For the detection, two ssDNA aptamers specific to the corresponding PLDH and PfGDH were used. The aptamer-captured enzymes were detected through a substrate-dependent reaction coupled with the conversion of resazurin (blue, similar to lambda(605nm)) to resorufin (pink, similar to lambda(570nm)) dye. The reaction was monitored by measuring the fluorescence intensity at lambda(660nm) for resorufin, absorbance ratio (lambda(570nm)/lambda(605nm))) and change in color (blue to pink). The detection approach could be customized to a spectrophotometer-based method and an instrument-free device. For both the approaches, the biomarkers were captured from the serum samples with the help of aptamer-coated magnetic beads prior to the analysis to exclude potential interferences from the serum. In the instrument-free device, a medical syringe (5 mL) prefabricated with a magnet was used for in situ separation of the enzyme-captured beads from the reaction supernatant. The converted dye in the supernatant was then efficiently adsorbed over a DEAE cellulose-treated paper wick assembled in the syringe hose. The biomarkers could be detected by both qualitative and quantitative format following the color and pixel intensity, respectively, developed on the paper surface. The developed method and technique offered detection of the biomarkers within a clinically relevant dynamic range, with the limit of detection values in the picomolar level. Flexible detection capability, low cost, interference-free detections, and portable nature (for instrument-free devices) are the major advantages offered by the developed approaches.
机译:疟疾诊断方法提供有关致病寄生虫的物种特定信息,以及它们在不同资源环境中使用的灵活性,对疾病的精确治疗和管理有很大的需求。在此,我们通过仪器为基于仪器和无仪器,通过催化的基于染料的反应报告PAN疟疾和P.Malciparum物种的检测。方法。对于检测,使用特异于相应的PLDH和PFGDH的两个SSDNA适体。通过与转化素(蓝色,类似于Lambda(605nm))的基底依赖性反应来检测适于捕获的酶以重子(粉红色,类似于Lambda(570nm))染料。通过测量λ(660nm)的λ(660nm)的荧光强度,对λ(660nm),吸光度比(λ(570nm)/λ(605nm)))和颜色变化(蓝色至粉红色)来监测反应。检测方法可以定制到基于分光光度计的方法和无仪器装置。对于这两种方法,在分析之前,在适体涂覆的磁珠之前,将生物标志物从血清样品中捕获,以排除来自血清的潜在干扰。在无仪器装置中,用磁铁预制的医用注射器(5mL)用于从反应上清液中原位分离酶捕获的珠粒。然后将上清液中的转化染料有效地吸附在注射器软管中组装的DEAE纤维素处理的纸巾上。在纸张表面上显影的颜色和像素强度分别可以通过定性和定量格式来检测生物标志物。开发的方法和技术提供了在临床相关动态范围内检测生物标志物,具有皮摩拉水平的检测值极限。灵活的检测能力,低成本,无干扰检测和便携性(用于无仪器设备)是开发方法提供的主要优势。

著录项

  • 来源
    《Analytical chemistry》 |2019年第6期|共9页
  • 作者单位

    Indian Inst Technol Guwahati Dept Biosci &

    Bioengn Gauhati 781039 Assam India;

    Indian Inst Technol Guwahati Dept Biosci &

    Bioengn Gauhati 781039 Assam India;

    Indian Inst Technol Guwahati Dept Biosci &

    Bioengn Gauhati 781039 Assam India;

    Indian Inst Technol Guwahati Dept Biosci &

    Bioengn Gauhati 781039 Assam India;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分析化学;
  • 关键词

相似文献

  • 外文文献
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