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电化学多重纸纳米传感器用于特定登革热血清型检测,预测 DHF/DSS 的普遍程度。

Electrochemical Multiplexed Paper Nanosensor for Specific Dengue Serotype Detection Predicting Pervasiveness of DHF/DSS.

机构信息

Amity Institute of Nanotechnology, Amity University, Noida, Uttar Pradesh 201313, India.

Translational Health Sciences and Technology Institute, Faridabad, Haryana 121001, India.

出版信息

ACS Biomater Sci Eng. 2020 Oct 12;6(10):5886-5894. doi: 10.1021/acsbiomaterials.0c00976. Epub 2020 Sep 14.

Abstract

The serotype-specific early detection of dengue fever is very effective in predicting the pervasiveness of fatal infections such as dengue hemorrhagic fever (DHF) or dengue shock syndrome (DSS). This fever results from reinfection (secondary) with a serotype of the dengue virus, which is different from the serotype involved in primary infection. Hence, the present work was aimed to develop a multiplexed electrochemical paper-based analytical device (ePAD) consisting of graphene oxide-silicon dioxide (GO-SiO) nanocomposites to detect the specific type of dengue virus (DENV). The conducting nature of GO-SiO-coated multiplexed platform provided amplification in the signal response of the genosensor. The present sensor detected the target DNA of the four serotypes of the dengue virus, namely, DENV 1, DENV 2, DENV 3, and DENV 4, in a wide detection range of 100 pM to 100 μM. The sensor showed a high degree of specificity toward specific serotypes of DENV. Further, the use of such paper-based sensor had many advantages such as facile preparation, homogeneous distribution of nanoparticles onto the surface, requirement of a small quantity of sample, and low cost. To the best of our knowledge, this is the first report on the fabrication of a genosensor for predicting the pervasiveness of the dengue hemorrhagic fever or dengue shock syndrome.

摘要

登革热的血清型特异性早期检测对于预测诸如登革出血热(DHF)或登革休克综合征(DSS)等致命感染的流行情况非常有效。这种发热是由登革病毒的血清型再次感染(二次感染)引起的,与初次感染中涉及的血清型不同。因此,本工作旨在开发一种由氧化石墨烯-二氧化硅(GO-SiO)纳米复合材料组成的基于多重电化学纸的分析装置(ePAD),以检测登革热病毒的特定类型(DENV)。GO-SiO 涂层的多重平台的导电性为基因传感器的信号响应提供了放大作用。本传感器可以在 100 pM 至 100 μM 的宽检测范围内检测到登革热病毒的四个血清型(DENV 1、DENV 2、DENV 3 和 DENV 4)的靶 DNA。该传感器对特定血清型的 DENV 具有高度特异性。此外,这种基于纸张的传感器具有许多优点,例如易于制备、纳米粒子在表面上均匀分布、需要少量样品和低成本。据我们所知,这是首次报道用于预测登革出血热或登革休克综合征流行情况的基因传感器的制造。

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