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用于烧伤后皮肤再生的生物活性超分子聚合物

Bioactive Supramolecular Polymers for Skin Regeneration Following Burn Injury.

作者信息

Jankoski Penelope E, Masoud Abdul-Razak, Dennis Jenna, Trinh Sophia, DiMartino Loria R, Shrestha Jessica, Marrero Luis, Hobden Jeffery, Carter Jeffrey, Schoen Jonathan, Phelan Herbert, Smith Alison A, Clemons Tristan D

机构信息

School of Polymer Science and Engineering, University of Southern Mississippi, Hattiesburg, Mississippi 39406, United States.

Louisiana State University Health Sciences Center, New Orleans, Louisiana 70112, United States.

出版信息

Biomacromolecules. 2025 Aug 11;26(8):5471-5482. doi: 10.1021/acs.biomac.5c01107. Epub 2025 Jul 16.

Abstract

Severe deep dermal burns present a significant challenge for the clinician, often resulting in complications including infection, scarring, and potentially multisystem organ failure. The current standard of care, which involves debridement and skin coverage, has improved survival rates but remains insufficient for optimal tissue regeneration and functional recovery. Additionally, there can be limited donor skin availability with severe burns, leading to the use of skin substitutes to be applied with varying degrees of success reported. Biomaterial scaffolds, designed to reduce the reliance on skin grafting, could promote improved healing and patient outcomes. Recent research has focused on promoting the proliferative phase of wound healing through the use of extracellular matrix (ECM) mimetic scaffolds; however, these constructs continue to exhibit critical limitations, including mechanical fragility, heightened infection susceptibility, limited morphological conformity to host tissue architecture, and the necessity for secondary surgical intervention for scaffold retrieval. This study presents a bioactive supramolecular polymer capable of rapid self-assembly into nanofibers, which act as a scaffold to promote tissue regeneration following burn injury. The scaffold is biocompatible, biodegradable, and capable of presenting a bioactive peptide designed to reduce acute inflammation and promote keratinocyte migration in the scaffold. The supramolecular polymers significantly accelerated early wound healing in a clinically relevant deep dermal murine burn injury model. This work provides a promising approach to the development of biomaterials that combine both therapeutic strategies, with scaffolding to promote skin regeneration following severe burn injury.

摘要

严重的深度真皮烧伤给临床医生带来了重大挑战,常常导致包括感染、瘢痕形成以及潜在的多系统器官衰竭等并发症。目前的护理标准包括清创和皮肤覆盖,虽提高了生存率,但在实现最佳组织再生和功能恢复方面仍显不足。此外,严重烧伤时供体皮肤的可用性可能有限,这导致了皮肤替代物的使用,不过其应用效果各有不同。旨在减少对皮肤移植依赖的生物材料支架,有望促进伤口更好地愈合和改善患者预后。近期研究聚焦于通过使用细胞外基质(ECM)模拟支架来促进伤口愈合的增殖阶段;然而,这些构建物仍存在关键局限性,包括机械脆弱性、感染易感性增加、与宿主组织结构的形态契合度有限,以及需要二次手术取出支架。本研究展示了一种能够快速自组装成纳米纤维的生物活性超分子聚合物,该纳米纤维可作为支架促进烧伤后的组织再生。该支架具有生物相容性和可生物降解性,并且能够呈现一种生物活性肽,旨在减轻急性炎症并促进角质形成细胞在支架内迁移。在一个具有临床相关性的深度真皮小鼠烧伤损伤模型中,超分子聚合物显著加速了早期伤口愈合。这项工作为开发结合两种治疗策略的生物材料提供了一种有前景的方法,即利用支架促进严重烧伤后的皮肤再生。

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