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一种基于可弯曲生物燃料电池的全集成生物医学纳米器件,用于坏血病的即时诊断。

A Bendable Biofuel Cell-Based Fully Integrated Biomedical Nanodevice for Point-of-Care Diagnosis of Scurvy.

作者信息

Sun Mimi, Xin Tong, Ran Zhiyong, Pei Xinyi, Ma Chongbo, Liu Jian, Cao Mengzhu, Bai Jing, Zhou Ming

机构信息

Key Laboratory of Polyoxometalate Science of Ministry of Education, National & Local United Engineering Laboratory for Power Batteries, Key Laboratory of Nanobiosensing and Nanobioanalysis at Universities of Jilin Province, Department of Chemistry, Northeast Normal University, Changchun, Jilin Province 130024, China.

出版信息

ACS Sens. 2021 Jan 22;6(1):275-284. doi: 10.1021/acssensors.0c02335. Epub 2020 Dec 25.

Abstract

Fully integrated nanodevices that allow the complete functional implementation without an external accessory or equipment are deemed to be one of the most ideal and ultimate goals for modern nanodevice design and construction. In this work, we demonstrate the first example of a bendable biofuel cell (BFC)-based fully integrated biomedical nanodevice with simple, palm-sized, easy-to-carry, pump-free, cost-saving, and easy-to-use features for the point-of-care (POC) diagnosis of scurvy from a single drop of untreated human serum (down to 0.2 μL) by integrating a bendable and disposable vitamin C/air microfluidic BFC (micro-BFC) (named iCard) for self-powered vitamin C biosensing with a custom mini digital LED voltmeter (named iBox) for signal processing and transmission, along with a ″built-in″ biocomputing BUFFER gate for intelligent diagnosis. Under the simplicity- and practicability-oriented idea, a cost-effective strategy (e.g., biomass-derived hierarchical micro-mesoporous carbon aerogels, screen-printed technique, a single piece of Kimwipes paper, LED display, and universal components) was implemented for nanodevice design rather than any top-end or pricey method (e.g., photolithography/electron-beam evaporation, peristaltic pump, wireless system, and 3D printing technique), which enormously reduces the cost of feedstock down to ∼USD 2.55 per integrated kit including a disposal iCard (∼USD 0.08 per test) and a reusable iBox (∼USD 2.47 for large-scale tests). These distinctive and attractive features allow such a fully integrated biomedical nanodevice to fully satisfy the basic requirements for POC diagnosis of scurvy from a single drop of raw human serum and make it particularly appropriate for resource-poor settings, where there is a lack of medical facilities, funds, and qualified personnel.

摘要

无需外部附件或设备即可实现完整功能的完全集成纳米器件,被视为现代纳米器件设计与构建最理想的终极目标之一。在这项工作中,我们展示了首个基于可弯曲生物燃料电池(BFC)的完全集成生物医学纳米器件,该器件具有简单、手掌大小、便于携带、无需泵、成本节约且易于使用的特点,可用于即时护理(POC)诊断坏血病,只需一滴未经处理的人血清(低至0.2 μL)。通过将可弯曲且一次性使用的维生素C/空气微流控生物燃料电池(微型BFC,名为iCard)集成用于自供电维生素C生物传感,与定制的微型数字LED电压表(名为iBox)用于信号处理和传输,以及一个“内置”生物计算BUFFER门用于智能诊断。在以简单性和实用性为导向的理念下,实施了一种具有成本效益的策略(例如,生物质衍生的分级微介孔碳气凝胶、丝网印刷技术、一张Kimwipes纸、LED显示屏和通用组件)用于纳米器件设计,而非任何高端或昂贵的方法(例如,光刻/电子束蒸发、蠕动泵、无线系统和3D打印技术),这极大地降低了原料成本,每个集成套件(包括一次性iCard(每次测试约0.08美元)和可重复使用的iBox(大规模测试约2.47美元))低至约2.55美元。这些独特且有吸引力的特性使得这种完全集成的生物医学纳米器件能够完全满足从一滴原始人血清中即时诊断坏血病的基本要求,并且使其特别适合资源匮乏的环境,那里缺乏医疗设施、资金和合格人员。

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