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大蒜素负载水凝胶可提高多区域穿支皮瓣的存活率。

Allicin-loaded hydrogel enhances the viability of multiterritory perforator flap.

作者信息

Chen Xuankuai, Zhou Xingxing, Fu Kejian, Zhao Xibing, Hu Xiang, Cheng Sheng, Jiang Renhao, Dong Chengji, Wang Long, Wu Hongqiang, Gao Weiyang, Shen Liyan

机构信息

Department of Orthopaedics, The Second Affiliated Hospital and Yuying Children's Hospital of Wenzhou Medical University, Wenzhou, 325027, China.

Key Laboratory of Orthopaedics of Zhejiang Province, Wenzhou, 325027, China.

出版信息

Mater Today Bio. 2025 Jun 26;33:102026. doi: 10.1016/j.mtbio.2025.102026. eCollection 2025 Aug.

Abstract

The multiterritory perforator flap has gained increasing clinical adoption in limb reconstruction and wound repair due to its procedural simplicity and distinct clinical advantages. Allicin, a multifunctional phytochemical renowned for its potent antioxidant properties, faces significant limitations due to rapid metabolic clearance, which substantially diminishes its therapeutic efficacy. Recent advances in hydrogel technology have highlighted their potential as advanced wound dressings, particularly through their capacity for sustained drug release. Our research synthesized HAMA-400K-Allicin (a hyaluronic acid methacryloyl hydrogel incorporating allicin), aiming to improve perforator flaps' survival rate by long-term oxidative stress alleviation. Characterization studies demonstrated that the synthesized hydrogel exhibits a densely crosslinked network architecture, robust tissue adhesion, and photosensitive properties. Notably, HAMA-400K-Allicin exhibited excellent biocompatibility and facilitated sustained allicin release for up to one week. Experimental validation revealed that both allicin and HAMA-400K-Allicin significantly improved perforator flap survival rates in rat models, with the hydrogel formulation demonstrating superior therapeutic outcomes. Mechanistic investigations further suggested that HAMA-400K-Allicin promotes flap survival through dual activation of the PI3K/AKT and HO-1/NRF2 signaling pathways. Ultimately, in a rat model, HAMA-400K-Allicin exhibited a robust effect in promoting perforator flap survival. In conclusion, this hydrogel system combines straightforward manufacturing processes with high clinical efficacy, positioning it as a promising solution for complex wound management scenarios.

摘要

由于操作简便且具有独特的临床优势,多区域穿支皮瓣在肢体重建和伤口修复中的临床应用日益广泛。大蒜素是一种以其强大的抗氧化特性而闻名的多功能植物化学物质,但由于其快速的代谢清除,面临着显著的局限性,这大大降低了其治疗效果。水凝胶技术的最新进展凸显了它们作为先进伤口敷料的潜力,特别是通过其持续药物释放的能力。我们的研究合成了HAMA - 400K - 大蒜素(一种包含大蒜素的甲基丙烯酰化透明质酸水凝胶),旨在通过长期减轻氧化应激来提高穿支皮瓣的存活率。表征研究表明,合成的水凝胶呈现出密集交联的网络结构、强大的组织粘附性和光敏特性。值得注意的是,HAMA - 400K - 大蒜素表现出优异的生物相容性,并促进大蒜素持续释放长达一周。实验验证表明,大蒜素和HAMA - 400K - 大蒜素均能显著提高大鼠模型中穿支皮瓣的存活率,水凝胶制剂显示出更好的治疗效果。机制研究进一步表明,HAMA - 400K - 大蒜素通过PI3K/AKT和HO - 1/NRF2信号通路的双重激活促进皮瓣存活。最终,在大鼠模型中,HAMA - 400K - 大蒜素在促进穿支皮瓣存活方面表现出强大的效果。总之,这种水凝胶系统将简单的制造工艺与高临床疗效相结合,使其成为复杂伤口管理场景的一种有前景的解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d83/12269518/fcdfc282cf1b/ga1.jpg

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