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The design, fabrication, and applications of flexible biosensing devices

机译:柔性生物传感器件的设计,制造和应用

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摘要

Flexible biosensors form part of a rapidly growing research field that take advantage of a multidisciplinary approach involving materials, fabrication and design strategies to be able to function at biological interfaces that may be soft, intrinsically curvy, irregular, or elastic. Numerous exciting advancements are being proposed and developed each year towards applications in healthcare, fundamental biomedical research, food safety and environmental monitoring. In order to place these developments in perspective, this review is intended to present an overview on field of flexible biosensor development. We endeavor to show how this subset of the broader field of flexible and wearable devices presents unique characteristics inherent in their design. Initially, a discussion on the structure of flexible biosensors is presented to address the critical issues specific to their design. We then summarize the different materials as substrates that can resist mechanical deformation while retaining their function of the bioreceptors and active elements. Several examples of flexible biosensors are presented based on the different environments in which they may be deployed or on the basis of targeted biological analytes. Challenges and future perspectives pertinent to the current and future stages of development are presented. Through these summaries and discussion, this review is expected to provide insights towards a systematic and fundamental understanding for the fabrication and utilization of flexible biosensors, as well as inspire and improve designs for smart and effective devices in the future.
机译:柔性生物传感器形成快速增长的研究领域的一部分,这些研究领域采用了涉及材料,制造和设计策略的多学科方法,以便能够在可能是柔软的,本质上弯曲,不规则或弹性的生物界面上起作用。每年正在向医疗保健,基本生物医学研究,食品安全和环境监测中提出和开发每年的许多令人兴奋的进步。为了将这些发展置于视角,本综述旨在概述灵活的生物传感器开发领域。我们努力展示该柔性和可佩戴设备更广泛领域的该子集是如何呈现其设计中固有的独特特性。最初,提出了关于柔性生物传感器结构的讨论,以解决特定于其设计的关键问题。然后,我们将不同的材料总结为可以抵抗机械变形的基板,同时保留其生物受体和活性元素的功能。基于它们可以展开或基于靶向生物分析物的不同环境来提出柔性生物传感器的几个例子。提出了与当前和未来发展阶段相关的挑战和未来观点。通过这些摘要和讨论,预计本综述将提供对制造和利用柔性生物传感器的制造和利用的系统和基本的理解,以及在未来的智能和有效设备的激励和改进设计。

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