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首页> 外文期刊>International journal of hydrogen energy >Towards autonomous lateral flow assays: Paper-based microfluidic fuel cell inside an HIV-test using a blood sample as fuel
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Towards autonomous lateral flow assays: Paper-based microfluidic fuel cell inside an HIV-test using a blood sample as fuel

机译:迈向自主侧向流动测定:使用血液样本作为燃料的HIV测试中的纸基微流控燃料电池

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This work presents the integration of a paper-based microfluidic fuel cell inside a lateral flow assay-human immunodeficiency virus (HIV) test. To modify the HIV test, a bioanode that oxidizes the glucose present in a serum or blood sample and a cathode that reduces the oxygen delivered from air were stacked on the bottom and top, respectively, of a paper strip test. A mixture of glucose oxidase enzyme, Nafion (R), glutaraldehyde, deionized water and tetrabutylammonium bromide were deposited on a methylene blue electro-polymerized Toray (R) paper and used as the bioanode. Meanwhile, Pt/C (Vulcan XC-72) on Toray (R) paper was used as an air-breathing cathode. The GOx enzyme anchored on the carbon-based surface was examined by scanning electron microscopy. The electro-chemical response of the bioanode array demonstrated the oxidation of 0.1 M glucose, leading to a current density increase due to FAD(+)/FADH reactions. The above procedure was corroborated through scanning electrochemical microscopy, which showed an increase in the current (400 pA) in the presence of glucose on the bioanode. The paper-based microfluidic fuel cell performance showed power densities of 0.16 and 0.12 mW cm(-2) using human serum and blood samples, respectively. Furthermore, the stability of the device was measured in terms of the recovery after obtaining four polarization curves that lasted 30 min, after which the sample dried out. This work represents a great advancement in the integration of a paper-based microfluidic fuel cell towards autonomous lateral flow assays. (C) 2017 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:这项工作提出了一种基于纸的微流控燃料电池在侧向流动检测-人类免疫缺陷病毒(HIV)测试中的整合。为了修改HIV测试,将氧化血清或血液样本中存在的葡萄糖的生物阳极和减少从空气中输送的氧气的阴极分别堆叠在纸条测试的底部和顶部。葡萄糖氧化酶,Nafion(R),戊二醛,去离子水和四丁基溴化铵的混合物沉积在亚甲基蓝电聚合Toray(R)纸上,用作生物阳极。同时,将Toray(R)纸上的Pt / C(Vulcan XC-72)用作呼吸用阴极。通过扫描电子显微镜检查锚定在碳基表面上的GOx酶。生物阳极阵列的电化学反应表明0.1 M葡萄糖被氧化,由于FAD(+)/ FADH反应,导致电流密度增加。通过扫描电化学显微镜证实了上述程序,其显示了在生物阳极上存在葡萄糖时电流(400pA)的增加。纸基微流控燃料电池性能分别使用人血清和血液样本显示出0.16和0.12 mW cm(-2)的功率密度。此外,在获得持续30分钟的四个极化曲线后,样品的干度用回收率来衡量。这项工作代表了基于纸的微流控燃料电池向自主侧向流动分析的集成方面的巨大进步。 (C)2017氢能出版物有限公司。由Elsevier Ltd.出版。保留所有权利。

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