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电刺激联合可生物降解的电活性取向纳米纤维聚己内酯/明胶/碳纳米管以加速伤口愈合。

Electrostimulation combined with biodegradable electroactive oriented nanofiber polycaprolactone/gelatin/carbon nanotube to accelerate wound healing.

作者信息

Chen Weizhi, Wei Yiliu, Chang Jing, Hui Yuwen, Ye Junchen, Weng Geng, Li Ming, Wang Yanhua, Wu Qiaoyi

机构信息

Department of Trauma Center and Emergency Surgery, The First Affiliated Hospital of Fujian Medical University, Fuzhou, China.

Department of Trauma Center & Emergency Surgery, National Regional Medical Center, Binhai Campus of the First Affiliated Hospital, Fujian Medical University, Fuzhou, China.

出版信息

Mater Today Bio. 2025 Jan 13;31:101490. doi: 10.1016/j.mtbio.2025.101490. eCollection 2025 Apr.

Abstract

Wound healing is a complex but precise physiological process. Howener, existing treatments are often difficult to meet the needs of different wound healing. With the background that exogenous electrical stimulation (ES) has been proven to be effective in regulating cell behavior, we constructed a electroactive wound dressing derived from carbon nanotubes (CNT) by electrospinning technology. The scaffold has a moderate hydrophilicity, which benefits to collecting of effusion, adhering to the wound site, and safely removing. Furthermore, the oriented structure has the potential to promote cell oriented growth, while the coupling of endogenous electric field (EFs) and ES could effectively regulate the phenotype of macrophages and reshape the immune microenvironment. At the same time, the active electrical stimulation promotes the secretion of active factors and the proliferation and migration of fibroblasts and endothelial cells. In vivo assays further confirm that PCL/GE/CNT combined ES strategy can significantly inhibit the early inflammatory response, while promoting vascular regeneration and collagen deposition. RNA sequencing analysis is used to reveal the mechanism at the molecular level. Overall, this study employed a composite strategy of combining CNT with moderately hydrophilic biocompatible nanofibers to achieve ES delivery simply and effectively, significantly improving tissue engineering outcomes. This innovative strategy provides a feasible approach for efficient wound repair, and provides an important experimental basis and theoretical guidance for future development in the field of skin tissue engineering.

摘要

伤口愈合是一个复杂但精确的生理过程。然而,现有的治疗方法往往难以满足不同伤口愈合的需求。在外源电刺激(ES)已被证明可有效调节细胞行为的背景下,我们通过静电纺丝技术构建了一种由碳纳米管(CNT)衍生的电活性伤口敷料。该支架具有适度的亲水性,有利于渗出液的收集、伤口部位的粘附以及安全去除。此外,取向结构有可能促进细胞的取向生长,而内源性电场(EFs)和ES的耦合可有效调节巨噬细胞的表型并重塑免疫微环境。同时,有源电刺激促进活性因子的分泌以及成纤维细胞和内皮细胞的增殖和迁移。体内试验进一步证实,PCL/GE/CNT联合ES策略可显著抑制早期炎症反应,同时促进血管再生和胶原蛋白沉积。RNA测序分析用于揭示分子水平的机制。总体而言,本研究采用将CNT与适度亲水性生物相容性纳米纤维相结合的复合策略,简单有效地实现了ES递送,显著改善了组织工程结果。这种创新策略为高效伤口修复提供了一种可行的方法,并为皮肤组织工程领域的未来发展提供了重要的实验依据和理论指导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31fa/11786698/18371a721155/ga1.jpg

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