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有氧运动诱导的循环细胞外囊泡联合脱细胞真皮基质水凝胶通过促进血管生成促进糖尿病伤口愈合。

Aerobic exercise-induced circulating extracellular vesicle combined decellularized dermal matrix hydrogel facilitates diabetic wound healing by promoting angiogenesis.

作者信息

Liu Haifeng, Wu Bing, Shi Xin, Cao Yanpeng, Zhao Xin, Liang Daqiang, Qin Qihuang, Liang Xinzhi, Lu Wei, Wang Daping, Liu Jun

机构信息

Guangzhou Medical University, Guangzhou, China.

Department of Sports Medicine, The First Affiliated Hospital of Shenzhen University, Shenzhen Second People's Hospital, Shenzhen, China.

出版信息

Front Bioeng Biotechnol. 2022 Aug 23;10:903779. doi: 10.3389/fbioe.2022.903779. eCollection 2022.

Abstract

Insufficient blood supply results in unsatisfactory wound healing, especially for challenging wound repair such as diabetic wound defects. Regular exercise training brings a lot of benefits to cardiovascular fitness and metabolic health including attenuation of T2DM progression. Circulating extracellular vesicles (EVs) are postulated to carry a variety of signals involved in tissue crosstalk by their modified cargoes, representing novel mechanisms for the effects of exercise. Prominently, both acute and chronic aerobic exercise training can promote the release of exercise-induced cytokines and enhance the angiogenic function of circulating angiogenic cell-derived EVs. We investigated the possible angiogenesis potential of aerobic exercise-induced circulating EVs (EXE-EVs) on diabetic wound healing. Circulating EVs were isolated from the plasma of rats subjected to 4 weeks of moderate aerobic exercise or sedentariness 24 h after the last training session. The therapeutic effect of circulating EVs was evaluated by proliferation, migration, and tube formation assays of human umbilical vein endothelial cells (HUVECs), as well as by quantification of angiogenesis and cutaneous wound healing in diabetic rats. The number of circulating EVs did not change significantly in exercised rats 24 h post-exercise in comparison with the sedentary rats. Nevertheless, EXE-EVs showed remarkable pro-angiogenic effect by augmenting proliferation, migration, and tube formation of HUVECs. Furthermore, the findings of animal experiments revealed that the EXE-EVs delivered by decellularized dermal matrix hydrogel (DDMH) could significantly promote the repair of skin defects through stimulating the regeneration of vascularized skin. The present study is the first attempt to demonstrate that aerobic exercise-induced circulating EVs could be utilized as a cell-free therapy to activate angiogenesis and promote diabetic wound healing. Our findings suggest that EXE-EVs may stand for a potential strategy for diabetic soft tissue wound repair.

摘要

血液供应不足会导致伤口愈合不理想,尤其是对于具有挑战性的伤口修复,如糖尿病伤口缺损。定期运动训练对心血管健康和代谢健康有诸多益处,包括减缓2型糖尿病的进展。循环细胞外囊泡(EVs)被认为通过其修饰的货物携带多种参与组织间相互作用的信号,代表了运动效应的新机制。值得注意的是,急性和慢性有氧运动训练都可以促进运动诱导的细胞因子释放,并增强循环血管生成细胞衍生的EVs的血管生成功能。我们研究了有氧运动诱导的循环EVs(EXE-EVs)对糖尿病伤口愈合的潜在血管生成潜力。在最后一次训练后24小时,从进行了4周中等强度有氧运动或久坐不动的大鼠血浆中分离循环EVs。通过人脐静脉内皮细胞(HUVECs)的增殖、迁移和管形成试验,以及糖尿病大鼠血管生成和皮肤伤口愈合的定量分析来评估循环EVs的治疗效果。与久坐不动的大鼠相比,运动后24小时运动大鼠的循环EVs数量没有显著变化。然而,EXE-EVs通过增强HUVECs的增殖、迁移和管形成显示出显著的促血管生成作用。此外,动物实验结果表明,通过脱细胞真皮基质水凝胶(DDMH)递送的EXE-EVs可以通过刺激血管化皮肤的再生显著促进皮肤缺损的修复。本研究首次尝试证明有氧运动诱导的循环EVs可作为一种无细胞疗法来激活血管生成并促进糖尿病伤口愈合。我们的研究结果表明,EXE-EVs可能代表一种糖尿病软组织伤口修复的潜在策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5853/9445842/e14b35313522/fbioe-10-903779-g005.jpg

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