Suction Cups‐Inspired Adhesive Patch with Tailorable Patterns for Versatile Wound Healing

Abstract Medical patches play an important role in wound healing because of their tissue conformality, drug release capacity, and convenient operation. Great efforts have been devoted to developing new‐generation patches with distinctive features promoting wound healing. Here, inspired by the struct...

Full description

Bibliographic Details
Main Authors: Rongkang Huang, Xiaoxuan Zhang, Wenzhao Li, Luoran Shang, Hui Wang, Yuanjin Zhao
Format: Article
Language:English
Published: Wiley 2021-09-01
Series:Advanced Science
Subjects:
Online Access:https://doi.org/10.1002/advs.202100201
id doaj-85b477b6a0af4b1485f1f0de152b3233
record_format Article
spelling doaj-85b477b6a0af4b1485f1f0de152b32332021-09-08T19:43:49ZengWileyAdvanced Science2198-38442021-09-01817n/an/a10.1002/advs.202100201Suction Cups‐Inspired Adhesive Patch with Tailorable Patterns for Versatile Wound HealingRongkang Huang0Xiaoxuan Zhang1Wenzhao Li2Luoran Shang3Hui Wang4Yuanjin Zhao5Department of Colorectal Surgery and Provincial Key Laboratory of Colorectal and Pelvic Floor Diseases Guangdong Institute of Gastroenterology Sixth Affiliated Hospital of Sun Yat‐sen University Guangdong 510655 ChinaDepartment of Rheumatology and Immunology The Affiliated Drum Tower Hospital of Nanjing University Medical School Nanjing 210008 ChinaDepartment of Biomedical Engineering The Hong Kong Polytechnic University Hung Hom Kowloon Hong Kong 999077 ChinaZhongshan‐Xuhui Hospital The Shanghai Key Laboratory of Medical Epigenetics Institutes of Biomedical Sciences Fudan University Shanghai 200032 ChinaDepartment of Colorectal Surgery and Provincial Key Laboratory of Colorectal and Pelvic Floor Diseases Guangdong Institute of Gastroenterology Sixth Affiliated Hospital of Sun Yat‐sen University Guangdong 510655 ChinaDepartment of Rheumatology and Immunology The Affiliated Drum Tower Hospital of Nanjing University Medical School Nanjing 210008 ChinaAbstract Medical patches play an important role in wound healing because of their tissue conformality, drug release capacity, and convenient operation. Great efforts have been devoted to developing new‐generation patches with distinctive features promoting wound healing. Here, inspired by the structure of octopus suction cups and the component of natural tissue, a biocompatible wound patch with selective adhesiveness and individualized design using a combined strategy of template‐replication and mask‐guided lithography is presented. Such patches are based on Ecoflex film with suction‐cup‐mimicking microstructures to adhere to normal skin and with biocompatible gelatin methacryloyl (GelMA) hydrogel to contact wounded areas. An ultraviolet mask with a tailorable pattern is employed to shape the GelMA hydrogel into customized geometry replicating individual wound areas, and thus both adhesion and antiadhesion properties are integrated into the same patch. In addition, vascular endothelial growth factor is loaded to accelerate the healing process. Based on these advantages, the authors demonstrate that the present patches not only adhere to different skin surfaces, but also promote the treatment of a rat cutaneous wound model. Thus, it is believed that this versatile patch can break through the limitation of traditional patches and be ideal candidates for wound healing and related biomedical applications.https://doi.org/10.1002/advs.202100201bioinspired patchesbiomaterialsselective adhesiontailorable patternswound healing
collection DOAJ
language English
format Article
sources DOAJ
author Rongkang Huang
Xiaoxuan Zhang
Wenzhao Li
Luoran Shang
Hui Wang
Yuanjin Zhao
spellingShingle Rongkang Huang
Xiaoxuan Zhang
Wenzhao Li
Luoran Shang
Hui Wang
Yuanjin Zhao
Suction Cups‐Inspired Adhesive Patch with Tailorable Patterns for Versatile Wound Healing
Advanced Science
bioinspired patches
biomaterials
selective adhesion
tailorable patterns
wound healing
author_facet Rongkang Huang
Xiaoxuan Zhang
Wenzhao Li
Luoran Shang
Hui Wang
Yuanjin Zhao
author_sort Rongkang Huang
title Suction Cups‐Inspired Adhesive Patch with Tailorable Patterns for Versatile Wound Healing
title_short Suction Cups‐Inspired Adhesive Patch with Tailorable Patterns for Versatile Wound Healing
title_full Suction Cups‐Inspired Adhesive Patch with Tailorable Patterns for Versatile Wound Healing
title_fullStr Suction Cups‐Inspired Adhesive Patch with Tailorable Patterns for Versatile Wound Healing
title_full_unstemmed Suction Cups‐Inspired Adhesive Patch with Tailorable Patterns for Versatile Wound Healing
title_sort suction cups‐inspired adhesive patch with tailorable patterns for versatile wound healing
publisher Wiley
series Advanced Science
issn 2198-3844
publishDate 2021-09-01
description Abstract Medical patches play an important role in wound healing because of their tissue conformality, drug release capacity, and convenient operation. Great efforts have been devoted to developing new‐generation patches with distinctive features promoting wound healing. Here, inspired by the structure of octopus suction cups and the component of natural tissue, a biocompatible wound patch with selective adhesiveness and individualized design using a combined strategy of template‐replication and mask‐guided lithography is presented. Such patches are based on Ecoflex film with suction‐cup‐mimicking microstructures to adhere to normal skin and with biocompatible gelatin methacryloyl (GelMA) hydrogel to contact wounded areas. An ultraviolet mask with a tailorable pattern is employed to shape the GelMA hydrogel into customized geometry replicating individual wound areas, and thus both adhesion and antiadhesion properties are integrated into the same patch. In addition, vascular endothelial growth factor is loaded to accelerate the healing process. Based on these advantages, the authors demonstrate that the present patches not only adhere to different skin surfaces, but also promote the treatment of a rat cutaneous wound model. Thus, it is believed that this versatile patch can break through the limitation of traditional patches and be ideal candidates for wound healing and related biomedical applications.
topic bioinspired patches
biomaterials
selective adhesion
tailorable patterns
wound healing
url https://doi.org/10.1002/advs.202100201
work_keys_str_mv AT rongkanghuang suctioncupsinspiredadhesivepatchwithtailorablepatternsforversatilewoundhealing
AT xiaoxuanzhang suctioncupsinspiredadhesivepatchwithtailorablepatternsforversatilewoundhealing
AT wenzhaoli suctioncupsinspiredadhesivepatchwithtailorablepatternsforversatilewoundhealing
AT luoranshang suctioncupsinspiredadhesivepatchwithtailorablepatternsforversatilewoundhealing
AT huiwang suctioncupsinspiredadhesivepatchwithtailorablepatternsforversatilewoundhealing
AT yuanjinzhao suctioncupsinspiredadhesivepatchwithtailorablepatternsforversatilewoundhealing
_version_ 1717761954761670656