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负载白藜芦醇的工程微胶囊具有双重抗菌和清除活性氧功能,用于程序性伤口愈合。

Resveratrol-loaded engineered microcapsules with dual antimicrobial and ROS-scavenging for programmed wound healing.

作者信息

Wang Anning, Lin Xiang, Wang Xirui, Yang Haiqiong, He Chengkai, Su Yaru, Yang Yueqiong, Zhang Jingyuan, Sun Changkai, Ding Xiaoya, Zhu Yinghua

机构信息

Dalian Dermatosis Hospital, Dalian, 116011, China.

The First Affiliated Hospital of Wenzhou Medical University, Wenzhou, 325035, China.

出版信息

Mater Today Bio. 2025 Jun 20;33:102007. doi: 10.1016/j.mtbio.2025.102007. eCollection 2025 Aug.

Abstract

Hydrogel microparticles have been proved effective for the skin wound repair. Attempts in this area focus on how to enrich the structures and encapsulate bioactive substances to achieve the spatially controllable release for accelerated wound healing. Here, we propose a novel core-shell microcapsule delivery system with the spatial encapsulation and release of resveratrol (RSV) and chitosan (CS) to treat infected wounds. Such microcapsules (ALG-CS) were generated through microfluidic electrospray technology, with the inner core encapsulating RSV and outer layer covered with the imine bond-crosslinked CS hydrogel. The designed CS hydrogel coating can improve the stability of microcapsules and further prevent the premature leakage of RSV. The gradually degraded CS hydrogel layer in acidic environment accompanied with the subsequent release RSV contributed to the enhanced antibacterial properties of the microcapsules. In addition, the released RSV exhibited outstanding antioxidant capacities to protect cells from oxidative stress . Thus, by applying the obtained RSV-loaded ALG-CS microcapsules onto the -infected wound beds, we have demonstrated that such microcapsules showed significant accelerated wound healing effects with alleviated oxidative stress, eliminated bacterial infection, down-regulated inflammatory response, and promoted collagen deposition and angiogenesis. These indicated that the microcapsule delivery systems are valuable for bacteria-infected wound therapy.

摘要

水凝胶微粒已被证明对皮肤伤口修复有效。该领域的研究重点在于如何丰富其结构并封装生物活性物质,以实现空间可控释放,从而加速伤口愈合。在此,我们提出一种新型的核壳微胶囊递送系统,用于空间封装和释放白藜芦醇(RSV)和壳聚糖(CS),以治疗感染伤口。这种微胶囊(ALG-CS)通过微流控电喷雾技术制备,内核封装RSV,外层覆盖有亚胺键交联的CS水凝胶。设计的CS水凝胶涂层可提高微胶囊的稳定性,并进一步防止RSV过早泄漏。在酸性环境中逐渐降解的CS水凝胶层伴随着RSV的后续释放,增强了微胶囊的抗菌性能。此外,释放的RSV表现出出色的抗氧化能力,可保护细胞免受氧化应激。因此,通过将获得的负载RSV的ALG-CS微胶囊应用于感染的伤口床,我们证明了这种微胶囊具有显著的加速伤口愈合效果,可减轻氧化应激、消除细菌感染、下调炎症反应,并促进胶原蛋白沉积和血管生成。这些表明微胶囊递送系统对细菌感染伤口治疗具有重要价值。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ce6b/12240178/5567a47cead7/ga1.jpg

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