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明胶甲基丙烯酰化水凝胶释放的载 VH298 的细胞外囊泡通过 HIF-1α 介导的血管生成增强促进糖尿病伤口愈合。

VH298-loaded extracellular vesicles released from gelatin methacryloyl hydrogel facilitate diabetic wound healing by HIF-1α-mediated enhancement of angiogenesis.

机构信息

Research Center for Tissue Repair and Regeneration Affiliated to the Medical Innovation Research Division and the 4th Medical Center of Chinese PLA General Hospital, Beijing, 100048, China; Chinese PLA Medical School, Beijing, 100853, China.

Department of General Surgery, The First Medical Center of Chinese PLA General Hospital, Beijing, 100853, China.

出版信息

Acta Biomater. 2022 Jul 15;147:342-355. doi: 10.1016/j.actbio.2022.05.018. Epub 2022 May 16.

Abstract

Endothelial malfunction is responsible for impaired angiogenesis in diabetic patients, thereby causing the delayed healing progress of diabetic wounds. Exosomes or extracellular vesicles (EVs) have emerged as potential therapeutic vectors carrying drug cargoes to diseased cells. In the present study, EVs were reported as a new treatment for diabetic wounds by delivering VH298 into endothelial cells. Firstly, EVs derived from epidermal stem cells (ESCs) were loaded with VH298 (VH-EVs), and the characteristics of VH-EVs were identified. VH-EVs showed promotive action on the function of human umbilical vein endothelial cells (HUVECs) in vitro by activating HIF-1α signaling pathway. VH-EVs were also found to have a therapeutic effect on wound healing and angiogenesis in vivo. We further fabricated gelatin methacryloyl (GelMA) hydrogel for sustained release of VH-EVs, which possessed high biocompatibility and proper mechanical properties. In diabetic mice, GelMA hydrogel containing VH-EVs (Gel-VH-EVs) effectively promoted wound healing by locally enhancing blood supply and angiogenesis. The underlying mechanism for enhanced angiogenesis was possibly associated with the activation of HIF-1α/VEGFA signaling pathway. Collectively, our findings suggest a promising EV-based strategy for the VH298 delivery to endothelial cells and provide a new bioactive dressing for diabetic wound treatment. STATEMENT OF SIGNIFICANCE: The angiogenic dysfunction is the main cause of diabetic wound unhealing. Extracellular vesicles (EVs) have been reported to be helpful but their efficacy is limited for angiogenesis in cutaneous regeneration. VH298 holds great promise to improve angiogenesis by stabilizing HIF-1α which is reported at low level in diabetic wounds. Here, we loaded EVs with VH298 (VH-EVs) to exert an on-target enhancement of proangiogenic capacity in diabetic wound. Then, we applied a photo-crosslinkable hydrogel, gelatin methacryloyl (GelMA) containing VH-EVs (Gel-VH-EVs) as a convenient biomaterial and an adaptable scaffold for sustained releasing VH-EVs. The results showed significant therapeutic effect of Gel-VH-EVs on skin defect repair. Our findings suggest a promising EVs-based drug delivery strategy and a new functional wound dressing for patients.

摘要

内皮功能障碍是糖尿病患者血管生成受损的原因,导致糖尿病创面愈合过程延迟。外泌体或细胞外囊泡 (EVs) 已成为携带药物 cargo 递送至病变细胞的潜在治疗载体。在本研究中,通过将 VH298 递送至内皮细胞,报道了 EVs 作为治疗糖尿病创面的新方法。首先,从表皮干细胞 (ESCs) 中提取的 EVs 负载 VH298(VH-EVs),并鉴定了 VH-EVs 的特征。VH-EVs 通过激活 HIF-1α 信号通路,在体外促进人脐静脉内皮细胞 (HUVECs) 的功能。还发现 VH-EVs 在体内对伤口愈合和血管生成具有治疗作用。我们进一步制备了明胶甲基丙烯酰 (GelMA) 水凝胶,用于 VH-EVs 的持续释放,该水凝胶具有高生物相容性和适当的机械性能。在糖尿病小鼠中,含有 VH-EVs 的 GelMA 水凝胶 (Gel-VH-EVs) 通过局部增强血液供应和血管生成有效促进伤口愈合。增强血管生成的潜在机制可能与激活 HIF-1α/VEGFA 信号通路有关。总之,我们的研究结果表明,基于 EV 的 VH298 递送至内皮细胞的策略具有广阔的前景,并为糖尿病创面治疗提供了一种新的生物活性敷料。

意义声明

血管生成功能障碍是糖尿病创面愈合不良的主要原因。已经报道细胞外囊泡 (EVs) 有助于改善血管生成,但在皮肤再生中其功效有限。VH298 通过稳定 HIF-1α 来改善血管生成,HIF-1α 在糖尿病创面中的水平较低。在这里,我们将 VH298 加载到 EVs 中(VH-EVs),以增强糖尿病创面中促血管生成能力的靶向增强。然后,我们应用了一种光交联水凝胶,即含有 VH-EVs 的明胶甲基丙烯酰 (GelMA)(Gel-VH-EVs)作为一种方便的生物材料和一种适应支架,用于持续释放 VH-EVs。结果表明,Gel-VH-EVs 对皮肤缺损修复具有显著的治疗效果。我们的研究结果表明,EVs 为基础的药物递送策略具有广阔的前景,为患者提供了一种新的功能性创面敷料。

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