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Recent Advances in Enzymatic and Non-Enzymatic Electrochemical Glucose Sensing

机译:酶促和非酶促电化学葡萄糖传感的最新进展

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摘要

The detection of glucose is crucial in the management of diabetes and other medical conditions but also crucial in a wide range of industries such as food and beverages. The development of glucose sensors in the past century has allowed diabetic patients to effectively manage their disease and has saved lives. First-generation glucose sensors have considerable limitations in sensitivity and selectivity which has spurred the development of more advanced approaches for both the medical and industrial sectors. The wide range of application areas has resulted in a range of materials and fabrication techniques to produce novel glucose sensors that have higher sensitivity and selectivity, lower cost, and are simpler to use. A major focus has been on the development of enzymatic electrochemical sensors, typically using glucose oxidase. However, non-enzymatic approaches using direct electrochemistry of glucose on noble metals are now a viable approach in glucose biosensor design. This review discusses the mechanisms of electrochemical glucose sensing with a focus on the different generations of enzymatic-based sensors, their recent advances, and provides an overview of the next generation of non-enzymatic sensors. Advancements in manufacturing techniques and materials are key in propelling the field of glucose sensing, however, significant limitations remain which are highlighted in this review and requires addressing to obtain a more stable, sensitive, selective, cost efficient, and real-time glucose sensor.
机译:葡萄糖的检测对于糖尿病和其他医疗条件的管理至关重要,但在广泛的各种行业中至关重要,例如食品和饮料。过去世纪葡萄糖传感器的发展使糖尿病患者能够有效地管理其疾病并挽救了生命。第一代葡萄糖传感器对敏感性和选择性具有相当大的限制,这促使了医学和工业部门更先进的方法的开发。各种应用领域导致了一系列材料和制造技术,以生产具有更高灵敏度和选择性,更低的成本,更易于使用的新型葡萄糖传感器。通常对酶电化学传感器的开发,通常使用葡萄糖氧化酶。然而,使用惰性金属上使用直接电化学的非酶促方法现在是葡萄糖生物传感器设计中的可行方法。该综述讨论了电化学葡萄糖感测的机制,其焦点在不同几代基于酶的传感器上,其最近的进步,并提供了下一代非酶传感器的概述。制造技术和材料的进步是推动葡萄糖感测领域的关键,然而,在本综述中突出显示了显着的限制,并且需要寻址以获得更稳定,灵敏,选择性,成本效率和实时血糖传感器。

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