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A Fully Integrated Closed‐Loop System Based on Mesoporous Microneedles‐Iontophoresis for Diabetes Treatment

A closed‐loop system that can mini‐invasively track blood glucose and intelligently treat diabetes is in great demand for modern medicine, yet it remains challenging to realize. Microneedles technologies have recently emerged as powerful tools for transdermal applications with inherent painlessness...

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Autores principales: Li, Xiangling, Huang, Xinshuo, Mo, Jingshan, Wang, Hao, Huang, Qiqi, Yang, Cheng, Zhang, Tao, Chen, Hui‐Jiuan, Hang, Tian, Liu, Fanmao, Jiang, Lelun, Wu, Qianni, Li, Hongbo, Hu, Ning, Xie, Xi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8373098/
https://www.ncbi.nlm.nih.gov/pubmed/34081407
http://dx.doi.org/10.1002/advs.202100827
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author Li, Xiangling
Huang, Xinshuo
Mo, Jingshan
Wang, Hao
Huang, Qiqi
Yang, Cheng
Zhang, Tao
Chen, Hui‐Jiuan
Hang, Tian
Liu, Fanmao
Jiang, Lelun
Wu, Qianni
Li, Hongbo
Hu, Ning
Xie, Xi
author_facet Li, Xiangling
Huang, Xinshuo
Mo, Jingshan
Wang, Hao
Huang, Qiqi
Yang, Cheng
Zhang, Tao
Chen, Hui‐Jiuan
Hang, Tian
Liu, Fanmao
Jiang, Lelun
Wu, Qianni
Li, Hongbo
Hu, Ning
Xie, Xi
author_sort Li, Xiangling
collection PubMed
description A closed‐loop system that can mini‐invasively track blood glucose and intelligently treat diabetes is in great demand for modern medicine, yet it remains challenging to realize. Microneedles technologies have recently emerged as powerful tools for transdermal applications with inherent painlessness and biosafety. In this work, for the first time to the authors' knowledge, a fully integrated wearable closed‐loop system (IWCS) based on mini‐invasive microneedle platform is developed for in situ diabetic sensing and treatment. The IWCS consists of three connected modules: 1) a mesoporous microneedle‐reverse iontophoretic glucose sensor; 2) a flexible printed circuit board as integrated and control; and 3) a microneedle‐iontophoretic insulin delivery component. As the key component, mesoporous microneedles enable the painless penetration of stratum corneum, implementing subcutaneous substance exchange. The coupling with iontophoresis significantly enhances glucose extraction and insulin delivery and enables electrical control. This IWCS is demonstrated to accurately monitor glucose fluctuations, and responsively deliver insulin to regulate hyperglycemia in diabetic rat model. The painless microneedles and wearable design endows this IWCS as a highly promising platform to improve the therapies of diabetic patients.
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spelling pubmed-83730982021-08-24 A Fully Integrated Closed‐Loop System Based on Mesoporous Microneedles‐Iontophoresis for Diabetes Treatment Li, Xiangling Huang, Xinshuo Mo, Jingshan Wang, Hao Huang, Qiqi Yang, Cheng Zhang, Tao Chen, Hui‐Jiuan Hang, Tian Liu, Fanmao Jiang, Lelun Wu, Qianni Li, Hongbo Hu, Ning Xie, Xi Adv Sci (Weinh) Research Articles A closed‐loop system that can mini‐invasively track blood glucose and intelligently treat diabetes is in great demand for modern medicine, yet it remains challenging to realize. Microneedles technologies have recently emerged as powerful tools for transdermal applications with inherent painlessness and biosafety. In this work, for the first time to the authors' knowledge, a fully integrated wearable closed‐loop system (IWCS) based on mini‐invasive microneedle platform is developed for in situ diabetic sensing and treatment. The IWCS consists of three connected modules: 1) a mesoporous microneedle‐reverse iontophoretic glucose sensor; 2) a flexible printed circuit board as integrated and control; and 3) a microneedle‐iontophoretic insulin delivery component. As the key component, mesoporous microneedles enable the painless penetration of stratum corneum, implementing subcutaneous substance exchange. The coupling with iontophoresis significantly enhances glucose extraction and insulin delivery and enables electrical control. This IWCS is demonstrated to accurately monitor glucose fluctuations, and responsively deliver insulin to regulate hyperglycemia in diabetic rat model. The painless microneedles and wearable design endows this IWCS as a highly promising platform to improve the therapies of diabetic patients. John Wiley and Sons Inc. 2021-06-03 /pmc/articles/PMC8373098/ /pubmed/34081407 http://dx.doi.org/10.1002/advs.202100827 Text en © 2021 The Authors. Advanced Science published by Wiley‐VCH GmbH https://creativecommons.org/licenses/by/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Li, Xiangling
Huang, Xinshuo
Mo, Jingshan
Wang, Hao
Huang, Qiqi
Yang, Cheng
Zhang, Tao
Chen, Hui‐Jiuan
Hang, Tian
Liu, Fanmao
Jiang, Lelun
Wu, Qianni
Li, Hongbo
Hu, Ning
Xie, Xi
A Fully Integrated Closed‐Loop System Based on Mesoporous Microneedles‐Iontophoresis for Diabetes Treatment
title A Fully Integrated Closed‐Loop System Based on Mesoporous Microneedles‐Iontophoresis for Diabetes Treatment
title_full A Fully Integrated Closed‐Loop System Based on Mesoporous Microneedles‐Iontophoresis for Diabetes Treatment
title_fullStr A Fully Integrated Closed‐Loop System Based on Mesoporous Microneedles‐Iontophoresis for Diabetes Treatment
title_full_unstemmed A Fully Integrated Closed‐Loop System Based on Mesoporous Microneedles‐Iontophoresis for Diabetes Treatment
title_short A Fully Integrated Closed‐Loop System Based on Mesoporous Microneedles‐Iontophoresis for Diabetes Treatment
title_sort fully integrated closed‐loop system based on mesoporous microneedles‐iontophoresis for diabetes treatment
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8373098/
https://www.ncbi.nlm.nih.gov/pubmed/34081407
http://dx.doi.org/10.1002/advs.202100827
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