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Masticatory system-inspired microneedle theranostic platform for intelligent and precise diabetic management.


ABSTRACT: Integrated systems for diabetic theranostics present advanced technology to regulate diabetes yet still have critical challenges in terms of accuracy, long-term monitoring, and minimal invasiveness. Inspired by the feature and functions of animal masticatory system, we presented a biomimetic microneedle theranostic platform (MNTP) for intelligent and precise management of diabetes. The MNTP was supported by a miniatured circuit, which used microneedle arrays for on-demand skin penetration, enabling interstitial fluid exudation for simultaneous detection of glucose and physiological ions, and subcutaneous insulin delivery. Interstitial fluid exudation enabled sensing in oxygen-rich environment via the incorporated epidermal sensor functionalized with hybrid carbon nanomaterials. This feature addressed the biosafety issues due to implanted electrodes and the "oxygen-deficit" issues in vivo. The MNTP was demonstrated to accurately detect glucose and ions and deliver insulin to regulate hyperglycemia. The biomimetic and intelligent features of the MNTP endowed it as a highly advanced system for diabetes therapy.

SUBMITTER: Yang J 

PROVIDER: S-EPMC9750147 | biostudies-literature | 2022 Dec

REPOSITORIES: biostudies-literature

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Masticatory system-inspired microneedle theranostic platform for intelligent and precise diabetic management.

Yang Jingbo J   Zheng Shantao S   Ma Deyuan D   Zhang Tao T   Huang Xinshuo X   Huang Shuang S   Chen Hui-Jiuan HJ   Wang Ji J   Jiang Lelun L   Xie Xi X  

Science advances 20221214 50


Integrated systems for diabetic theranostics present advanced technology to regulate diabetes yet still have critical challenges in terms of accuracy, long-term monitoring, and minimal invasiveness. Inspired by the feature and functions of animal masticatory system, we presented a biomimetic microneedle theranostic platform (MNTP) for intelligent and precise management of diabetes. The MNTP was supported by a miniatured circuit, which used microneedle arrays for on-demand skin penetration, enabl  ...[more]

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