Wireless, closed-loop, smart bandage with integrated sensors and stimulators for advanced wound care and accelerated healing
Yuanwen Jiang
1
,
Artem A. Trotsyuk
2, 3
,
Simiao Niu
1
,
Dominic Henn
2
,
Kellen Chen
2, 3
,
Chien-Chung Shih
1
,
Madelyn R. Larson
2
,
Alana M Mermin Bunnell
2
,
Smiti Mittal
2
,
Jian Cheng Lai
1
,
Aref Saberi
1
,
Ethan Beard
2
,
Serena Jing
2
,
Donglai Zhong
1
,
Sydney R. Steele
2
,
Kefan Sun
1
,
Tanish Jain
2
,
Eric Zhao
1
,
Christopher R Neimeth
2
,
Willian G Viana
4
,
Jing Tang
1, 5
,
Dharshan Sivaraj
2, 3
,
Melanie Rodrigues
2
,
David P. Perrault
2
,
Arhana Chattopadhyay
2
,
Zeshaan N. Maan
2
,
Melissa C. Leeolou
2
,
Clark A. Bonham
2
,
Sun Hyung Kwon
2
,
Hudson C. Kussie
2, 3
,
Katharina S. Fischer
2, 3
,
Kui Liang
6
,
Zhang Kailiang
6
,
Ronjon Nag
7
,
Michael Januszyk
2
,
Geoffrey C. Gurtner
2, 3
,
6
BOE Technology Center, BOE Technology Group CO., Ltd, Beijing, China
|
Тип публикации: Journal Article
Дата публикации: 2022-11-24
scimago Q1
wos Q1
БС1
SJR: 19.006
CiteScore: 58.8
Impact factor: 41.7
ISSN: 10870156, 15461696
PubMed ID:
36424488
Molecular Medicine
Applied Microbiology and Biotechnology
Biotechnology
Bioengineering
Biomedical Engineering
Краткое описание
‘Smart’ bandages based on multimodal wearable devices could enable real-time physiological monitoring and active intervention to promote healing of chronic wounds. However, there has been limited development in incorporation of both sensors and stimulators for the current smart bandage technologies. Additionally, while adhesive electrodes are essential for robust signal transduction, detachment of existing adhesive dressings can lead to secondary damage to delicate wound tissues without switchable adhesion. Here we overcome these issues by developing a flexible bioelectronic system consisting of wirelessly powered, closed-loop sensing and stimulation circuits with skin-interfacing hydrogel electrodes capable of on-demand adhesion and detachment. In mice, we demonstrate that our wound care system can continuously monitor skin impedance and temperature and deliver electrical stimulation in response to the wound environment. Across preclinical wound models, the treatment group healed ~25% more rapidly and with ~50% enhancement in dermal remodeling compared with control. Further, we observed activation of proregenerative genes in monocyte and macrophage cell populations, which may enhance tissue regeneration, neovascularization and dermal recovery. A wireless ‘smart’ bandage stimulates wound healing.
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400
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ГОСТ
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Jiang Y. et al. Wireless, closed-loop, smart bandage with integrated sensors and stimulators for advanced wound care and accelerated healing // Nature Biotechnology. 2022. Vol. 41. No. 5.
ГОСТ со всеми авторами (до 50)
Скопировать
Jiang Y., Trotsyuk A. A., Niu S., Henn D., Chen K., Shih C., Larson M. R., Mermin Bunnell A. M., Mittal S., Lai J. C., Saberi A., Beard E., Jing S., Zhong D., Steele S. R., Sun K., Jain T., Zhao E., Neimeth C. R., Viana W. G., Tang J., Sivaraj D., Padmanabhan J., Rodrigues M., Perrault D. P., Chattopadhyay A., Maan Z. N., Leeolou M. C., Bonham C. A., Kwon S. H., Kussie H. C., Fischer K. S., Gurusankar G., Liang K., Kailiang Z., Nag R., Snyder M. P., Januszyk M., Gurtner G. C., Bao Z. Wireless, closed-loop, smart bandage with integrated sensors and stimulators for advanced wound care and accelerated healing // Nature Biotechnology. 2022. Vol. 41. No. 5.
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RIS
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TY - JOUR
DO - 10.1038/s41587-022-01528-3
UR - https://doi.org/10.1038/s41587-022-01528-3
TI - Wireless, closed-loop, smart bandage with integrated sensors and stimulators for advanced wound care and accelerated healing
T2 - Nature Biotechnology
AU - Jiang, Yuanwen
AU - Trotsyuk, Artem A.
AU - Niu, Simiao
AU - Henn, Dominic
AU - Chen, Kellen
AU - Shih, Chien-Chung
AU - Larson, Madelyn R.
AU - Mermin Bunnell, Alana M
AU - Mittal, Smiti
AU - Lai, Jian Cheng
AU - Saberi, Aref
AU - Beard, Ethan
AU - Jing, Serena
AU - Zhong, Donglai
AU - Steele, Sydney R.
AU - Sun, Kefan
AU - Jain, Tanish
AU - Zhao, Eric
AU - Neimeth, Christopher R
AU - Viana, Willian G
AU - Tang, Jing
AU - Sivaraj, Dharshan
AU - Padmanabhan, Jagannath
AU - Rodrigues, Melanie
AU - Perrault, David P.
AU - Chattopadhyay, Arhana
AU - Maan, Zeshaan N.
AU - Leeolou, Melissa C.
AU - Bonham, Clark A.
AU - Kwon, Sun Hyung
AU - Kussie, Hudson C.
AU - Fischer, Katharina S.
AU - Gurusankar, Gurupranav
AU - Liang, Kui
AU - Kailiang, Zhang
AU - Nag, Ronjon
AU - Snyder, Michael P.
AU - Januszyk, Michael
AU - Gurtner, Geoffrey C.
AU - Bao, Zhenan
PY - 2022
DA - 2022/11/24
PB - Springer Nature
IS - 5
VL - 41
PMID - 36424488
SN - 1087-0156
SN - 1546-1696
ER -
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BibTex (до 50 авторов)
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@article{2022_Jiang,
author = {Yuanwen Jiang and Artem A. Trotsyuk and Simiao Niu and Dominic Henn and Kellen Chen and Chien-Chung Shih and Madelyn R. Larson and Alana M Mermin Bunnell and Smiti Mittal and Jian Cheng Lai and Aref Saberi and Ethan Beard and Serena Jing and Donglai Zhong and Sydney R. Steele and Kefan Sun and Tanish Jain and Eric Zhao and Christopher R Neimeth and Willian G Viana and Jing Tang and Dharshan Sivaraj and Jagannath Padmanabhan and Melanie Rodrigues and David P. Perrault and Arhana Chattopadhyay and Zeshaan N. Maan and Melissa C. Leeolou and Clark A. Bonham and Sun Hyung Kwon and Hudson C. Kussie and Katharina S. Fischer and Gurupranav Gurusankar and Kui Liang and Zhang Kailiang and Ronjon Nag and Michael P. Snyder and Michael Januszyk and Geoffrey C. Gurtner and Zhenan Bao},
title = {Wireless, closed-loop, smart bandage with integrated sensors and stimulators for advanced wound care and accelerated healing},
journal = {Nature Biotechnology},
year = {2022},
volume = {41},
publisher = {Springer Nature},
month = {nov},
url = {https://doi.org/10.1038/s41587-022-01528-3},
number = {5},
doi = {10.1038/s41587-022-01528-3}
}
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