自然启发的无疤痕愈合:指导先进疗法的生物材料设计。

IF 5.1 2区 医学 Q2 CELL & TISSUE ENGINEERING Tissue Engineering. Part B, Reviews Pub Date : 2024-06-01 Epub Date: 2024-01-11 DOI:10.1089/ten.TEB.2023.0224
Fernando López Lasaosa, Yin Zhou, Jiliang Song, Yiyan He, Yuwen Cui, Rosa María Bolea Bailo, Zhongwei Gu
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引用次数: 0

摘要

在过去的二十年中,生物材料在皮肤伤口治疗中的应用一直在稳步增长。生物材料成功应用于疤痕减少的关键是参与加速愈合和细胞因子的最新知识,这些知识可以在生物灵感材料中实现。口腔粘膜、胎儿皮肤、两栖动物、鱼类和爬行动物的皮肤等无疤痕愈合的自然模型是一个重要的信息来源。通过研究它们的微环境、细胞因子和炎症自我调节系统,可以定义无疤痕愈合的一般模型。这篇综述介绍了皮肤伤口愈合的基本概念和当前的概念,重点提供了一个详细的概述加速愈合无疤痕的主要过程。本文概述了发展和促进无疤痕愈合的共同特点和要点。所选自然模型的组织和愈合过程被单独描述(组织组织、结构成分、胶原和TGF等细胞因子的比例及其对炎症和疤痕过度生长的调节机制)。在讨论中包括了关于人体皮肤愈合的每个自然模型的比较工作。最后,通过分析每个模型确定的模式及其与正常愈合的不同之处,以促进新治疗方法的实施。
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Nature-Inspired Scarless Healing: Guiding Biomaterials Design for Advanced Therapies.

The use of biomaterials in the treatment of skin wounds has been steadily increasing over the last two decades. The key to the successful application of biomaterials in scar reduction is the up-to-date knowledge of the actors involved in accelerated healing and the cellular factors that can be implemented in bioinspired materials. Natural models of scarless healing such as oral mucosa, fetal skin and the skin of amphibians, fish, and reptiles are a great source of information. By investigating their microenvironments, cellular factors, and inflammatory self-regulatory systems, a general model of scarless healing can be defined. This review introduces the basic and current concepts of skin wound healing and focuses on providing a detailed overview of the main processes of accelerated healing without scarring. The article outlines the common features and key points that develop and promote scar-free healing. The tissues and healing processes of the selected natural models are described individually (tissue organization, structural components, ratios of cellular factors such as Collagen and transforming growth factor and their mechanisms of regulation of inflammation and scar overgrowth). A comparative work of each natural model concerning healing in human skin is included in the discussion. Finally, the patterns identified through the analysis of each model and their differences from normal healing are presented to facilitate the knowledge for the implementation of new treatments.

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来源期刊
Tissue Engineering. Part B, Reviews
Tissue Engineering. Part B, Reviews Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
12.80
自引率
1.60%
发文量
150
期刊介绍: Tissue Engineering Reviews (Part B) meets the urgent need for high-quality review articles by presenting critical literature overviews and systematic summaries of research within the field to assess the current standing and future directions within relevant areas and technologies. Part B publishes bi-monthly.
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