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克服与年龄相关的伤口愈合障碍的先进生物材料策略。

Advanced biomaterial strategies for overcoming age-associated wound healing impairments.

作者信息

Dores Rodrigo, Rodrigues Telma A, Carvalho Daniel, Batista Eva, Kozak Myroslava, Blanco-Elices Cristina, Fernandes Hugo, Bimbo Luis M

机构信息

Department of Pharmaceutical Technology, Faculty of Pharmacy, University of Coimbra, 3000-548 Coimbra, Portugal.

出版信息

APL Bioeng. 2025 Jun 6;9(2):021501. doi: 10.1063/5.0251889. eCollection 2025 Jun.

Abstract

Dermal wounds represent a substantial global healthcare burden, with significant economic impact and reduced quality of life for affected individuals. As skin ages, the wound healing capacity is significantly diminished through multiple pathways, including reduced cellular proliferation, altered inflammatory responses, impaired vascularization, and decreased extracellular matrix production. With worldwide demographics shifting toward an older population, effective wound management has become an increasingly critical healthcare challenge. Biomaterials have emerged as a powerful tool to address the specific challenges of wound healing by providing structural support and delivering therapeutic agents to facilitate tissue regeneration. These materials can even be engineered to match the specific mechanical properties of aged tissue while simultaneously releasing key age-tailored bioactive molecules, thereby addressing the complex healing deficits in aged skin. Recent advances in aged skin models have established them as crucial platforms for translational research, enabling more accurate prediction of biomaterial performance in elderly patients. Concurrently, composite biomaterials, which combine multiple functionalities in a single platform, have gained prominence as particularly promising clinical solutions. Though significant progress has been made, challenges persist in optimizing material properties and achieving reproducible clinical outcomes, demanding continued research focused specifically on age-related wound healing impairments.

摘要

皮肤伤口给全球医疗保健带来了沉重负担,对经济产生重大影响,并降低了受影响个体的生活质量。随着皮肤老化,伤口愈合能力会通过多种途径显著下降,包括细胞增殖减少、炎症反应改变、血管生成受损以及细胞外基质产生减少。随着全球人口结构向老龄化转变,有效的伤口管理已成为日益严峻的医疗保健挑战。生物材料已成为应对伤口愈合特定挑战的有力工具,通过提供结构支持和递送治疗剂来促进组织再生。这些材料甚至可以进行工程设计,以匹配老化组织的特定力学性能,同时释放关键的针对年龄定制的生物活性分子,从而解决老化皮肤中复杂的愈合缺陷。老化皮肤模型的最新进展已使其成为转化研究的关键平台,能够更准确地预测生物材料在老年患者中的性能。同时,在单一平台上结合多种功能的复合生物材料已成为特别有前景的临床解决方案而备受关注。尽管已取得重大进展,但在优化材料性能和实现可重复的临床结果方面仍存在挑战,需要继续开展专门针对与年龄相关的伤口愈合损伤的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/59da/12145203/c7251d237227/ABPID9-000009-021501_1-g001.jpg

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