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Towards point-of-care detection of microRNAs using paper-based microfluidics

机译:利用纸质微流体朝着微小RNA的护理点检测

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Human immunodeficiency virus (HIV) weakens a person's immune system by destroying cells which are important to fighting the disease and infection. HIV is a major global public health issue with an estimated 38 million people living with HIV at the end of 2019. There is no cure for HIV. However, increased access to effective prevention, diagnosis and treatment has enabled people living with HIV to lead healthy lives. Rapid diagnosis forms an important part of the WHO's strategy for ensuring those who are HIV positive have immediate access to care. Perhaps more critical however is that effective diagnostic testing informs individuals of their HIV status, reducing the risk of transmission. HIV prevalence within the US is disproportionately high amongst Black/African American and Hispanic/Latino American populations who often have limited access to advanced medical clinics. In this paper, we present a lateral flow device designed to detect miR-150-5p; an emerging biomarker of HIV. Based on our preliminary results shown here, we are capable of detecting the miRNA sequence at sub-ng uL~(-1) using colorimetric analysis, without prior amplification of the target material. We have also detailed our initial results obtained from surface-enhanced Raman scattering measurements made at the device capture line, whilst the standard deviations are large, the technique shows lots of promise for lowering the detection limit in the future.
机译:人类免疫缺陷病毒(HIV)通过破坏对抗疾病和感染很重要的细胞来削弱一个人的免疫系统。艾滋病毒是一个主要的全球性公共卫生问题,估计有3800万人在2019年底居住在艾滋病毒。艾滋病毒没有治愈。然而,增加获得有效预防,诊断和治疗的获得使人们能够与艾滋病毒过度呈现健康的生命。快速诊断构成了谁是卫生组织策略的重要组成部分,确保艾滋病病毒感染者积极立即获得护理。然而,也许更关键的是,有效的诊断测试会通知个人艾滋病毒状况,降低传播风险。美国内部的艾滋病毒患病率在黑人/非洲裔美国人和西班牙裔美国人/拉丁裔美国人民中普及较高,他们往往有限地获得高级医疗诊所。在本文中,我们提出了一种设计用于检测miR-150-5p的横向流动装置;艾滋病毒的新兴生物标志物。基于我们这里所示的初步结果,我们能够使用比色分析检测Sub-NG UL〜(-1)的miRNA序列,而无需先前放大目标材料。我们还详细介绍了在设备捕获线上的表面增强拉曼散射测量中获得的初始结果,而标准偏差很大,则该技术显示了降低未来检测限的许多承诺。

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