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Macrophage metabolism reprogramming EGCG-Cu coordination capsules delivered in polyzwitterionic hydrogel for burn wound healing and regeneration

Excessive reactive oxygen species (ROS) at severe burn injury sites may promote metabolic reprogramming of macrophages to induce a deteriorative and uncontrolled inflammation cycle, leading to delayed wound healing and regeneration. Here, a novel bioactive, anti-fouling, flexible polyzwitterionic hy...

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Detalles Bibliográficos
Autores principales: Li, Qinghua, Song, Huijuan, Li, Shuangyang, Hu, Pengbo, Zhang, Chuangnian, Zhang, Ju, Feng, Zujian, Kong, Deling, Wang, Weiwei, Huang, Pingsheng
Formato: Online Artículo Texto
Lenguaje:English
Publicado: KeAi Publishing 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10391721/
https://www.ncbi.nlm.nih.gov/pubmed/37533477
http://dx.doi.org/10.1016/j.bioactmat.2023.07.011
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author Li, Qinghua
Song, Huijuan
Li, Shuangyang
Hu, Pengbo
Zhang, Chuangnian
Zhang, Ju
Feng, Zujian
Kong, Deling
Wang, Weiwei
Huang, Pingsheng
author_facet Li, Qinghua
Song, Huijuan
Li, Shuangyang
Hu, Pengbo
Zhang, Chuangnian
Zhang, Ju
Feng, Zujian
Kong, Deling
Wang, Weiwei
Huang, Pingsheng
author_sort Li, Qinghua
collection PubMed
description Excessive reactive oxygen species (ROS) at severe burn injury sites may promote metabolic reprogramming of macrophages to induce a deteriorative and uncontrolled inflammation cycle, leading to delayed wound healing and regeneration. Here, a novel bioactive, anti-fouling, flexible polyzwitterionic hydrogel encapsulated with epigallocatechin gallate (EGCG)-copper (Cu) capsules (termed as EGCG-Cu@CB(gel)) is engineered for burn wound management, which is dedicated to synergistically exerting ROS-scavenging, immune metabolic regulation and pro-angiogenic effects. EGCG-Cu@CB(gel) can scavenge ROS to normalize intracellular redox homeostasis, effectively relieving oxidative damages and blocking proinflammatory signal transduction. Importantly, EGCG-Cu can inhibit the activity of hexokinase and phosphofructokinase, alleviate accumulation of pyruvate and convert it to acetyl coenzyme A (CoA), whereby inhibits glycolysis and normalizes tricarboxylic acid (TCA) cycle. Additionally, metabolic reprogramming of macrophages by EGCG-Cu downregulates M1-type polarization and the expression of proinflammatory cytokines both in vitro and in vivo. Meanwhile, copper ions (Cu(2+)) released from the hydrogel facilitate angiogenesis. EGCG-Cu@CB(gel) significantly accelerates the healing of severe burn wound via promoting wound closure, weakening tissue-damaging inflammatory responses and enhancing the remodeling of pathological structure. Overall, this study demonstrates the great potential of bioactive hydrogel dressing in treating burn wounds without unnecessary secondary damage to newly formed skin, and highlights the importance of immunometabolism modulation in tissue repair and regeneration.
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spelling pubmed-103917212023-08-02 Macrophage metabolism reprogramming EGCG-Cu coordination capsules delivered in polyzwitterionic hydrogel for burn wound healing and regeneration Li, Qinghua Song, Huijuan Li, Shuangyang Hu, Pengbo Zhang, Chuangnian Zhang, Ju Feng, Zujian Kong, Deling Wang, Weiwei Huang, Pingsheng Bioact Mater Article Excessive reactive oxygen species (ROS) at severe burn injury sites may promote metabolic reprogramming of macrophages to induce a deteriorative and uncontrolled inflammation cycle, leading to delayed wound healing and regeneration. Here, a novel bioactive, anti-fouling, flexible polyzwitterionic hydrogel encapsulated with epigallocatechin gallate (EGCG)-copper (Cu) capsules (termed as EGCG-Cu@CB(gel)) is engineered for burn wound management, which is dedicated to synergistically exerting ROS-scavenging, immune metabolic regulation and pro-angiogenic effects. EGCG-Cu@CB(gel) can scavenge ROS to normalize intracellular redox homeostasis, effectively relieving oxidative damages and blocking proinflammatory signal transduction. Importantly, EGCG-Cu can inhibit the activity of hexokinase and phosphofructokinase, alleviate accumulation of pyruvate and convert it to acetyl coenzyme A (CoA), whereby inhibits glycolysis and normalizes tricarboxylic acid (TCA) cycle. Additionally, metabolic reprogramming of macrophages by EGCG-Cu downregulates M1-type polarization and the expression of proinflammatory cytokines both in vitro and in vivo. Meanwhile, copper ions (Cu(2+)) released from the hydrogel facilitate angiogenesis. EGCG-Cu@CB(gel) significantly accelerates the healing of severe burn wound via promoting wound closure, weakening tissue-damaging inflammatory responses and enhancing the remodeling of pathological structure. Overall, this study demonstrates the great potential of bioactive hydrogel dressing in treating burn wounds without unnecessary secondary damage to newly formed skin, and highlights the importance of immunometabolism modulation in tissue repair and regeneration. KeAi Publishing 2023-07-22 /pmc/articles/PMC10391721/ /pubmed/37533477 http://dx.doi.org/10.1016/j.bioactmat.2023.07.011 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Li, Qinghua
Song, Huijuan
Li, Shuangyang
Hu, Pengbo
Zhang, Chuangnian
Zhang, Ju
Feng, Zujian
Kong, Deling
Wang, Weiwei
Huang, Pingsheng
Macrophage metabolism reprogramming EGCG-Cu coordination capsules delivered in polyzwitterionic hydrogel for burn wound healing and regeneration
title Macrophage metabolism reprogramming EGCG-Cu coordination capsules delivered in polyzwitterionic hydrogel for burn wound healing and regeneration
title_full Macrophage metabolism reprogramming EGCG-Cu coordination capsules delivered in polyzwitterionic hydrogel for burn wound healing and regeneration
title_fullStr Macrophage metabolism reprogramming EGCG-Cu coordination capsules delivered in polyzwitterionic hydrogel for burn wound healing and regeneration
title_full_unstemmed Macrophage metabolism reprogramming EGCG-Cu coordination capsules delivered in polyzwitterionic hydrogel for burn wound healing and regeneration
title_short Macrophage metabolism reprogramming EGCG-Cu coordination capsules delivered in polyzwitterionic hydrogel for burn wound healing and regeneration
title_sort macrophage metabolism reprogramming egcg-cu coordination capsules delivered in polyzwitterionic hydrogel for burn wound healing and regeneration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10391721/
https://www.ncbi.nlm.nih.gov/pubmed/37533477
http://dx.doi.org/10.1016/j.bioactmat.2023.07.011
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