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生物打印共生敷料:一种受地衣启发的方法,用于增强生物活性和结构完整性的糖尿病伤口愈合。

Bioprinted Symbiotic Dressings: A Lichen-Inspired Approach to Diabetic Wound Healing with Enhanced Bioactivity and Structural Integrity.

作者信息

Liu Hai, Mei Hongxiang, Jiang Hejin, Jiang Linli, Lin Kaifeng, Jiang Minwen, Ding Ning, Li Xiaojie, Gao Ziqi, Liu Bin, Lin Wei, Li Juan, Zhou Jiajing

机构信息

College of Biomass Science and Engineering, West China Hospital of Stomatology, Sichuan University, Chengdu, 610065, China.

State Key Laboratory of Oral Diseases & National Center for Stomatology & National Clinical Research Center for Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu, 610041, China.

出版信息

Small. 2024 Dec 11:e2407105. doi: 10.1002/smll.202407105.

Abstract

Providing oxygen and preventing infection at wound sites are effective ways to heal diabetic chronic wounds. Inspired by natural lichens, a bioprinted biogenic hydrogel (BBH) containing microalgae and probiotics is developed for diabetic chronic wound therapeutics, which offers prolonged biogenetic oxygen supply by microalgae and infection inhibition by probiotics. The rational design of symbiotic BBH with customizable structure and microorganism composition enhances wound resilience against elevated glucose levels and hypoxia, leading to the increased migration ability of fibroblasts and the angiogenic potential of human umbilical vein endothelial cells. Notably, BBH-treated diabetic wounds exhibit dense vascular distribution, reduced hypoxia levels and inflammatory responses, and enhanced epithelial differentiation and keratinization abilities. Consequently, the BBH achieves rapid tissue repairing within 3 d and restores approximately 90% of the whole skin structure within 12 d. This work presents an engineered platform for regulating biological microenvironment of diabetic wounds and provides insights for developing bioprinted hybrid microorganism systems.

摘要

在伤口部位提供氧气和预防感染是治愈糖尿病慢性伤口的有效方法。受天然地衣启发,一种含有微藻和益生菌的生物打印生物源水凝胶(BBH)被开发用于糖尿病慢性伤口治疗,它通过微藻提供延长的生物源氧气供应,并通过益生菌抑制感染。具有可定制结构和微生物组成的共生BBH的合理设计增强了伤口对高血糖水平和缺氧的恢复能力,导致成纤维细胞迁移能力增加以及人脐静脉内皮细胞的血管生成潜力增强。值得注意的是,经BBH处理的糖尿病伤口表现出密集的血管分布、降低的缺氧水平和炎症反应,以及增强的上皮分化和角质化能力。因此,BBH在3天内实现快速组织修复,并在12天内恢复约90%的全层皮肤结构。这项工作提出了一个用于调节糖尿病伤口生物微环境的工程平台,并为开发生物打印混合微生物系统提供了见解。

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