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当前针对伤口愈合阶段的治疗方法旨在减轻纤维化和瘢痕形成。

Current Approaches Targeting the Wound Healing Phases to Attenuate Fibrosis and Scarring.

机构信息

Burn, Trauma, and Critical Care Research Labs, Department of Surgery, University of Texas Medical Branch, Galveston, TX 77550, USA.

出版信息

Int J Mol Sci. 2020 Feb 7;21(3):1105. doi: 10.3390/ijms21031105.


DOI:10.3390/ijms21031105
PMID:32046094
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC7037118/
Abstract

Cutaneous fibrosis results from suboptimal wound healing following significant tissue injury such as severe burns, trauma, and major surgeries. Pathologic skin fibrosis results in scars that are disfiguring, limit normal movement, and prevent patient recovery and reintegration into society. While various therapeutic strategies have been used to accelerate wound healing and decrease the incidence of scarring, recent studies have targeted the molecular regulators of each phase of wound healing, including the inflammatory, proliferative, and remodeling phases. Here, we reviewed the most recent literature elucidating molecular pathways that can be targeted to reduce fibrosis with a particular focus on post-burn scarring. Current research targeting inflammatory mediators, the epithelial to mesenchymal transition, and regulators of myofibroblast differentiation shows promising results. However, a multimodal approach addressing all three phases of wound healing may provide the best therapeutic outcome.

摘要

皮肤纤维化是由于严重烧伤、创伤和大手术等严重组织损伤后伤口愈合不理想引起的。病理性皮肤纤维化导致的疤痕会导致毁容,限制正常运动,并阻碍患者的康复和重新融入社会。虽然已经使用了各种治疗策略来加速伤口愈合和减少疤痕形成,但最近的研究针对的是伤口愈合各个阶段的分子调节剂,包括炎症期、增殖期和重塑期。在这里,我们回顾了最近阐明可以减少纤维化的分子途径的文献,特别关注烧伤后疤痕。目前针对炎症介质、上皮间质转化和肌成纤维细胞分化调节剂的研究显示出有前景的结果。然而,针对伤口愈合的所有三个阶段的多模式方法可能提供最佳的治疗效果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a58e/7037118/a699f8b57a78/ijms-21-01105-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a58e/7037118/a699f8b57a78/ijms-21-01105-g001.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a58e/7037118/a699f8b57a78/ijms-21-01105-g001.jpg

相似文献

[1]
Current Approaches Targeting the Wound Healing Phases to Attenuate Fibrosis and Scarring.

Int J Mol Sci. 2020-2-7

[2]
Epithelial-mesenchymal transition in tissue repair and fibrosis.

Cell Tissue Res. 2016-9

[3]
Scar-free healing: from embryonic mechanisms to adult therapeutic intervention.

Philos Trans R Soc Lond B Biol Sci. 2004-5-29

[4]
A dose-ranging, parallel group, split-face, single-blind phase II study of light emitting diode-red light (LED-RL) for skin scarring prevention: study protocol for a randomized controlled trial.

Trials. 2019-7-15

[5]
New insights into the roles of myofibroblasts and innervation during skin healing and innovative therapies to improve scar innervation.

Exp Dermatol. 2018-6-28

[6]
Epithelial to mesenchymal transition in human skin wound healing is induced by tumor necrosis factor-alpha through bone morphogenic protein-2.

Am J Pathol. 2010-3-19

[7]
Advances in the modulation of cutaneous wound healing and scarring.

BioDrugs. 2005

[8]
Epithelial-mesenchymal transition in the formation of hypertrophic scars and keloids.

J Cell Physiol. 2019-5-20

[9]
The role of myofibroblasts in wound healing.

Curr Res Transl Med. 2016-11-4

[10]
Release of insulin from PLGA-alginate dressing stimulates regenerative healing of burn wounds in rats.

Clin Sci (Lond). 2015-12

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[2]
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[3]
Enhancing Wound Healing Through Secretome-Loaded 3D-Printed Biomaterials.

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[4]
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[5]
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Sci Rep. 2025-7-15

[6]
Natural Products for Improving Soft Tissue Healing: Mechanisms, Innovations, and Clinical Potential.

Pharmaceutics. 2025-6-8

[7]
Review of the 100 Most Cited Articles in from 2014 to 2024: A Bibliometric Analysis.

Eur Burn J. 2025-6-10

[8]
A multifunctional parathyroid hormone-related supramolecular peptide-loaded dual network hydrogel for radiation-induced wound repair.

Mater Today Bio. 2025-4-29

[9]
Dexketoprofen-Loaded Alginate-Grafted Poly(N-vinylcaprolactam)-Based Hydrogel for Wound Healing.

Int J Mol Sci. 2025-3-26

[10]
Lumbrokinase-containing gelatin nanofibers with multiple bioactivities for effective skin wound healing.

Mater Today Bio. 2025-3-28

本文引用的文献

[1]
Patch repair of deep wounds by mobilized fascia.

Nature. 2019-11-27

[2]
HMGB1 as a potential new marker of disease activity in patients with multiple sclerosis.

Neurol Sci. 2019-11-14

[3]
Pirfenidone attenuates the profibrotic contractile phenotype of differentiated human dermal myofibroblasts.

Biochem Biophys Res Commun. 2019-11-1

[4]
Mechanical strain promotes skin fibrosis through LRG-1 induction mediated by ELK1 and ERK signalling.

Commun Biol. 2019-10-4

[5]
Ablative fractional resurfacing with laser-facilitated steroid delivery for burn scar management: Does the depth of laser penetration matter?

Lasers Surg Med. 2020-2

[6]
Cuprous oxide nanoparticles reduces hypertrophic scarring by inducing fibroblast apoptosis.

Int J Nanomedicine. 2019-7-30

[7]
New Progress of Adipose-derived Stem Cells in the Therapy of Hypertrophic Scars.

Curr Stem Cell Res Ther. 2020

[8]
Targeting Degradation of the Transcription Factor C/EBPβ Reduces Lung Fibrosis by Restoring Activity of the Ubiquitin-Editing Enzyme A20 in Macrophages.

Immunity. 2019-8-27

[9]
Artesunate inhibits myofibroblast formation via induction of apoptosis and antagonism of pro-fibrotic gene expression in human dermal fibroblasts.

Cell Biol Int. 2019-8-30

[10]
Skin Acute Wound Healing: A Comprehensive Review.

Int J Inflam. 2019-6-2

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