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Nanodefensin-encased hydrogel with dual bactericidal and pro-regenerative functions for advanced wound therapy

Background: Host defense peptides (HDPs) have emerged as a novel therapeutic paradigm for wound management; however, their clinical applications remain a challenge owing to their poor pharmacological properties and lack of suitable pharmaceutical formulations. Nanodefensin (ND), a nanoengineered hum...

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Autores principales: Luo, Gan, Sun, Yaqi, Zhang, Jue, Xu, Zhipeng, Lu, Wuyuan, Wang, Hanbin, Zhang, Yan, Li, Hui, Mao, Zhengwei, Ye, Shixin, Cheng, Baoli, Fang, Xiangming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7914350/
https://www.ncbi.nlm.nih.gov/pubmed/33664853
http://dx.doi.org/10.7150/thno.53089
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author Luo, Gan
Sun, Yaqi
Zhang, Jue
Xu, Zhipeng
Lu, Wuyuan
Wang, Hanbin
Zhang, Yan
Li, Hui
Mao, Zhengwei
Ye, Shixin
Cheng, Baoli
Fang, Xiangming
author_facet Luo, Gan
Sun, Yaqi
Zhang, Jue
Xu, Zhipeng
Lu, Wuyuan
Wang, Hanbin
Zhang, Yan
Li, Hui
Mao, Zhengwei
Ye, Shixin
Cheng, Baoli
Fang, Xiangming
author_sort Luo, Gan
collection PubMed
description Background: Host defense peptides (HDPs) have emerged as a novel therapeutic paradigm for wound management; however, their clinical applications remain a challenge owing to their poor pharmacological properties and lack of suitable pharmaceutical formulations. Nanodefensin (ND), a nanoengineered human α-defensin 5 (HD5), has shown improved pharmacological properties relative to the parent compound. In this study, we engineered a nanodefensin-encased hydrogel (NDEFgel), investigated the effects of NDEFgel on wound healing, and elucidated underlying mechanisms. Method: ND was chemically synthesized and tested functions by in vitro antimicrobial and scratch assays and western blotting. Different NDEFgels were evaluated by in vitro characterizations including degradation, drug release and antimicrobial activity. In full-thickness excisional murine models, the optimal NDEFgel was directly applied onto wound sites, and the efficacy was assessed. Moreover, the underlying mechanisms of pro-regenerative effect developed by NDEFgel were also explored. Results: Apart from bactericidal effects, ND modulated fibroblast behaviors by promoting migration and differentiation. Among the tested hydrogels, the Pluronic F127 (Plu) hydrogel represented the most desirable carrier for ND delivery owing to its favorable controlled release and compatibility with ND. Local treatment of NDEFgel on the wound bed resulted in accelerated wound regeneration and attenuated bacterial burden. We further demonstrated that NDEFgel therapy significantly upregulated genes related to collagen deposition and fibroblasts, and increased the expression of myofibroblasts and Rac1. We therefore found that Rac1 is a critical factor in the ND-induced modulation of fibroblast behaviors in vitro through a Rac1-dependent cytoskeletal rearrangement. Conclusion: Our results indicate that NDEFgel may be a promising dual-action therapeutic option for advanced wound management in the future.
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spelling pubmed-79143502021-03-03 Nanodefensin-encased hydrogel with dual bactericidal and pro-regenerative functions for advanced wound therapy Luo, Gan Sun, Yaqi Zhang, Jue Xu, Zhipeng Lu, Wuyuan Wang, Hanbin Zhang, Yan Li, Hui Mao, Zhengwei Ye, Shixin Cheng, Baoli Fang, Xiangming Theranostics Research Paper Background: Host defense peptides (HDPs) have emerged as a novel therapeutic paradigm for wound management; however, their clinical applications remain a challenge owing to their poor pharmacological properties and lack of suitable pharmaceutical formulations. Nanodefensin (ND), a nanoengineered human α-defensin 5 (HD5), has shown improved pharmacological properties relative to the parent compound. In this study, we engineered a nanodefensin-encased hydrogel (NDEFgel), investigated the effects of NDEFgel on wound healing, and elucidated underlying mechanisms. Method: ND was chemically synthesized and tested functions by in vitro antimicrobial and scratch assays and western blotting. Different NDEFgels were evaluated by in vitro characterizations including degradation, drug release and antimicrobial activity. In full-thickness excisional murine models, the optimal NDEFgel was directly applied onto wound sites, and the efficacy was assessed. Moreover, the underlying mechanisms of pro-regenerative effect developed by NDEFgel were also explored. Results: Apart from bactericidal effects, ND modulated fibroblast behaviors by promoting migration and differentiation. Among the tested hydrogels, the Pluronic F127 (Plu) hydrogel represented the most desirable carrier for ND delivery owing to its favorable controlled release and compatibility with ND. Local treatment of NDEFgel on the wound bed resulted in accelerated wound regeneration and attenuated bacterial burden. We further demonstrated that NDEFgel therapy significantly upregulated genes related to collagen deposition and fibroblasts, and increased the expression of myofibroblasts and Rac1. We therefore found that Rac1 is a critical factor in the ND-induced modulation of fibroblast behaviors in vitro through a Rac1-dependent cytoskeletal rearrangement. Conclusion: Our results indicate that NDEFgel may be a promising dual-action therapeutic option for advanced wound management in the future. Ivyspring International Publisher 2021-01-26 /pmc/articles/PMC7914350/ /pubmed/33664853 http://dx.doi.org/10.7150/thno.53089 Text en © The author(s) This is an open access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Luo, Gan
Sun, Yaqi
Zhang, Jue
Xu, Zhipeng
Lu, Wuyuan
Wang, Hanbin
Zhang, Yan
Li, Hui
Mao, Zhengwei
Ye, Shixin
Cheng, Baoli
Fang, Xiangming
Nanodefensin-encased hydrogel with dual bactericidal and pro-regenerative functions for advanced wound therapy
title Nanodefensin-encased hydrogel with dual bactericidal and pro-regenerative functions for advanced wound therapy
title_full Nanodefensin-encased hydrogel with dual bactericidal and pro-regenerative functions for advanced wound therapy
title_fullStr Nanodefensin-encased hydrogel with dual bactericidal and pro-regenerative functions for advanced wound therapy
title_full_unstemmed Nanodefensin-encased hydrogel with dual bactericidal and pro-regenerative functions for advanced wound therapy
title_short Nanodefensin-encased hydrogel with dual bactericidal and pro-regenerative functions for advanced wound therapy
title_sort nanodefensin-encased hydrogel with dual bactericidal and pro-regenerative functions for advanced wound therapy
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7914350/
https://www.ncbi.nlm.nih.gov/pubmed/33664853
http://dx.doi.org/10.7150/thno.53089
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