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微针贴片集成经皮生物电子学用于微创疾病治疗诊断学。

Microneedle Patches-Integrated Transdermal Bioelectronics for Minimally Invasive Disease Theranostics.

机构信息

School of Health Science and Engineering, University of Shanghai for Science and Technology, 516 Jungong Road, Shanghai, 200093, China.

School of Acupuncture-Moxibustion and Tuina, Shanghai University of Traditional Chinese Medicine, 1200 Cailun Road, Shanghai, 201203, China.

出版信息

Adv Healthc Mater. 2024 Jul;13(17):e2303921. doi: 10.1002/adhm.202303921. Epub 2024 Mar 17.

Abstract

Wearable epidermal electronics with non- or minimally-invasive characteristics can collect, transduce, communicate, and interact with accessible physicochemical health indicators on the skin. However, due to the stratum corneum layer, rich information about body health is buried under the skin stratum corneum layer, for example, in the skin interstitial fluid. Microneedle patches are typically designed with arrays of special microsized needles of length within 1000 µm. Such characteristics potentially enable the access and sample of biomolecules under the skin or give therapeutical treatment painlessly and transdermally. Integrating microneedle patches with various electronics allows highly efficient transdermal bioelectronics, showing their great promise for biomedical and healthcare applications. This comprehensive review summarizes and highlights the recent progress on integrated transdermal bioelectronics based on microneedle patches. The design criteria and state-of-the-art fabrication techniques for such devices are initially discussed. Next, devices with different functions, including but not limited to health monitoring, drug delivery, and therapeutical treatment, are highlighted in detail. Finally, key issues associated with current technologies and future opportunities are elaborated to sort out the state of recent research, point out potential bottlenecks, and provide future research directions.

摘要

具有非侵入或微创特性的可穿戴表皮电子产品可以收集、转换、传输和与皮肤表面的可及理化健康指标相互作用。然而,由于角质层的存在,大量与身体健康相关的信息都被埋藏在皮肤角质层下,例如在皮肤间质液中。微针贴片通常设计为具有长度在 1000µm 以内的特殊微尺寸针的阵列。这些特性可能实现对皮肤下生物分子的访问和采样,或者实现无痛和经皮的治疗。将微针贴片与各种电子设备集成可以实现高效的经皮生物电子学,为生物医学和医疗保健应用带来了巨大的前景。这篇全面的综述总结并强调了基于微针贴片的集成经皮生物电子学的最新进展。首先讨论了此类器件的设计标准和最先进的制造技术。接下来,详细介绍了具有不同功能的器件,包括但不限于健康监测、药物输送和治疗。最后,详细阐述了与当前技术相关的关键问题和未来的机遇,以梳理近期研究的状况,指出潜在的瓶颈,并提供未来的研究方向。

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