Biomimetic hydrogel derived from decellularized dermal matrix facilitates skin wounds healing

Cutaneous wound healing affecting millions of people worldwide represents an unsolvable clinical issue that is frequently challenged by scar formation with dramatical pain, impaired mobility and disfigurement. Herein, we prepared a kind of light-sensitive decellularized dermal extracellular matrix-d...

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Main Authors: Yaling Yu, Huimin Xiao, Guoke Tang, Hongshu Wang, Junjie Shen, Yi Sun, Shuaiqun Wang, Wei Kong, Yimin Chai, Xuanzhe Liu, Xing Wang, Gen Wen
Format: Article
Language:English
Published: Elsevier 2023-08-01
Series:Materials Today Bio
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S2590006423001850
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author Yaling Yu
Huimin Xiao
Guoke Tang
Hongshu Wang
Junjie Shen
Yi Sun
Shuaiqun Wang
Wei Kong
Yimin Chai
Xuanzhe Liu
Xing Wang
Gen Wen
author_facet Yaling Yu
Huimin Xiao
Guoke Tang
Hongshu Wang
Junjie Shen
Yi Sun
Shuaiqun Wang
Wei Kong
Yimin Chai
Xuanzhe Liu
Xing Wang
Gen Wen
author_sort Yaling Yu
collection DOAJ
description Cutaneous wound healing affecting millions of people worldwide represents an unsolvable clinical issue that is frequently challenged by scar formation with dramatical pain, impaired mobility and disfigurement. Herein, we prepared a kind of light-sensitive decellularized dermal extracellular matrix-derived hydrogel with fast gelling performance, biomimetic porous microstructure and abundant bioactive functions. On account of its excellent cell biocompatibility, this ECM-derived hydrogel could induce a marked cellular infiltration and enhance the tube formation of HUVECs. In vivo experiments based upon excisional wound splinting model showed that the hydrogel prominently imparted skin wound healing, as evidenced by notably increased skin appendages and well-organized collagen expression, coupled with significantly enhanced angiogenesis. Moreover, the skin regeneration mediated by this bioactive hydrogel was promoted by an accelerated M1-to-M2 macrophage phenotype transition. Consequently, the decellularized dermal matrix-derived bioactive hydrogel orchestrates the entire skin healing microenvironment to promote wound healing and will be of high value in treatment of cutaneous wound healing. As such, this biomimetic ddECMMA hydrogel provides a promising versatile opinion for the clinical translation.
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spelling doaj.art-7d4a292730254476b1ffac7e614b9f5f2023-07-28T04:26:45ZengElsevierMaterials Today Bio2590-00642023-08-0121100725Biomimetic hydrogel derived from decellularized dermal matrix facilitates skin wounds healingYaling Yu0Huimin Xiao1Guoke Tang2Hongshu Wang3Junjie Shen4Yi Sun5Shuaiqun Wang6Wei Kong7Yimin Chai8Xuanzhe Liu9Xing Wang10Gen Wen11Department of Orthopedic Surgery, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, 200233, China; Institute of Microsurgery on Extremities, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, 200233, ChinaDepartment of Orthopedic Surgery, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, 200233, China; College of Fisheries and Life Science, Shanghai Ocean University, Shanghai, 201306, ChinaDepartment of Orthopedics, Shanghai General Hospital, Shanghai Jiaotong University, Shanghai, 200080, ChinaDepartment of Orthopedic Surgery, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, 200233, ChinaDepartment of Orthopedic Surgery, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, 200233, ChinaDepartment of Orthopedic Surgery, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, 200233, ChinaCollege of Information Engineering, Shanghai Maritime University, Shanghai, 201306, ChinaCollege of Information Engineering, Shanghai Maritime University, Shanghai, 201306, ChinaDepartment of Orthopedic Surgery, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, 200233, China; Corresponding author.Department of Orthopedic Surgery, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, 200233, China; Corresponding author.Beijing National Laboratory for Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, China; University of Chinese Academy of Sciences, Beijing, 100049, China; Corresponding author. Beijing National Laboratory for Molecular Sciences, Institute of Chemistry, Chinese Academy of Sciences, Beijing, 100190, China.Department of Orthopedic Surgery, Shanghai Sixth People's Hospital Affiliated to Shanghai Jiao Tong University School of Medicine, Shanghai, 200233, China; Corresponding author.Cutaneous wound healing affecting millions of people worldwide represents an unsolvable clinical issue that is frequently challenged by scar formation with dramatical pain, impaired mobility and disfigurement. Herein, we prepared a kind of light-sensitive decellularized dermal extracellular matrix-derived hydrogel with fast gelling performance, biomimetic porous microstructure and abundant bioactive functions. On account of its excellent cell biocompatibility, this ECM-derived hydrogel could induce a marked cellular infiltration and enhance the tube formation of HUVECs. In vivo experiments based upon excisional wound splinting model showed that the hydrogel prominently imparted skin wound healing, as evidenced by notably increased skin appendages and well-organized collagen expression, coupled with significantly enhanced angiogenesis. Moreover, the skin regeneration mediated by this bioactive hydrogel was promoted by an accelerated M1-to-M2 macrophage phenotype transition. Consequently, the decellularized dermal matrix-derived bioactive hydrogel orchestrates the entire skin healing microenvironment to promote wound healing and will be of high value in treatment of cutaneous wound healing. As such, this biomimetic ddECMMA hydrogel provides a promising versatile opinion for the clinical translation.http://www.sciencedirect.com/science/article/pii/S2590006423001850DecellularizationDermal tissuePhoto-responsibilityImmunomodulationWound healing
spellingShingle Yaling Yu
Huimin Xiao
Guoke Tang
Hongshu Wang
Junjie Shen
Yi Sun
Shuaiqun Wang
Wei Kong
Yimin Chai
Xuanzhe Liu
Xing Wang
Gen Wen
Biomimetic hydrogel derived from decellularized dermal matrix facilitates skin wounds healing
Materials Today Bio
Decellularization
Dermal tissue
Photo-responsibility
Immunomodulation
Wound healing
title Biomimetic hydrogel derived from decellularized dermal matrix facilitates skin wounds healing
title_full Biomimetic hydrogel derived from decellularized dermal matrix facilitates skin wounds healing
title_fullStr Biomimetic hydrogel derived from decellularized dermal matrix facilitates skin wounds healing
title_full_unstemmed Biomimetic hydrogel derived from decellularized dermal matrix facilitates skin wounds healing
title_short Biomimetic hydrogel derived from decellularized dermal matrix facilitates skin wounds healing
title_sort biomimetic hydrogel derived from decellularized dermal matrix facilitates skin wounds healing
topic Decellularization
Dermal tissue
Photo-responsibility
Immunomodulation
Wound healing
url http://www.sciencedirect.com/science/article/pii/S2590006423001850
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