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作为机械增强型抗炎生物创面敷料的原始结冷胶-胶原互穿网络水凝胶在烧伤创面治疗中的应用。

Pristine Gellan Gum-Collagen Interpenetrating Network Hydrogels as Mechanically Enhanced Anti-inflammatory Biologic Wound Dressings for Burn Wound Therapy.

机构信息

Department of Pharmacy, Faculty of Science, National University of Singapore, 5 Science Drive 2, 117545, Singapore.

Roquette Singapore Innovation Center, Helios, 11 Biopolis Way, #05-06, 138667, Singapore.

出版信息

ACS Appl Bio Mater. 2021 Feb 15;4(2):1470-1482. doi: 10.1021/acsabm.0c01363. Epub 2021 Feb 3.

Abstract

Gellan gum is a biologically inert natural polymer that is increasingly favored as a material-of-choice to form biorelevant hydrogels. However, as a burn wound dressing, native gellan gum hydrogels do not drive host's biology toward regeneration and are mechanically inadequate wound barriers. To overcome these issues, we fabricateda gellan gum-collagen full interpenetrating network (full-IPN) hydrogel that can house adipose-derived mesenchymal stem cells (ADSCs) and employ their multilineage differentiation potential and produce wound-healing paracrine factors to reduce inflammation and promote burn wound regeneration. Herein, a robust temperature-dependent simultaneous IPN (SIN) hydrogel fabrication process was demonstrated using applied rheology for the first time. Subsequently after fabrication, mechanical characterization assays showed that the IPN hydrogels were easy to handle without deforming and retained sufficient mass to effect ADSCs' anti-inflammation property in a simulated wound environment. The IPN hydrogels' increased stiffness proved conducive for mechanotransduced cell adhesion. Scanning electron microscopy revealed theIPN's porous network, which enabled encapsulated ADSCs to spread and proliferate, for up to 3 weeks of culture, further shown by cells' dynamic filopodia extension observed in 3D confocal images. Successful incorporation of ADSCs accorded the IPN hydrogels with biologic wound-dressing properties, which possess the ability to promote human dermal fibroblast migration and secrete an anti-inflammatory paracrine factor, TSG-6 protein, as demonstrated in the 2D scratch wound assay and ELISA, respectively. More importantly, upon application onto murine full thickness burn wounds, our biologic wound dressing enhanced early wound closure, reduced inflammation, and promoted complete skin regeneration. Altogether, our results highlight the successful mechanical and biological enhancement of the inert matrix of gellan gum. Through completely natural procedures, a highly applicable biologic wound dressing is introduced for cell-based full thickness burn wound therapy.

摘要

结冷胶是一种生物惰性的天然聚合物,作为生物相关水凝胶的首选材料,其应用日益受到青睐。然而,作为一种烧伤创面敷料,天然结冷胶水凝胶不能促使宿主生物学向再生方向发展,且机械性能不足,无法作为有效的创面屏障。为了解决这些问题,我们制备了一种结冷胶-胶原完全互穿网络(full-IPN)水凝胶,该水凝胶可容纳脂肪间充质干细胞(ADSCs),并利用其多能性分化潜能和产生创面愈合的旁分泌因子,以减轻炎症反应,促进烧伤创面再生。在此,我们首次应用流变学技术,展示了一种稳健的、温度依赖性的同步互穿网络(SIN)水凝胶制备工艺。随后的机械性能测试表明,该互穿网络水凝胶易于操作,不会变形,并保留了足够的质量,以在模拟创面环境中发挥 ADSCs 的抗炎作用。该互穿网络水凝胶的硬度增加有利于细胞黏附的力传递。扫描电子显微镜揭示了互穿网络的多孔网络,使包封的 ADSCs 能够在模拟创面环境中扩散和增殖,培养 3 周。通过在 3D 共聚焦图像中观察到细胞动态的丝状伪足延伸,进一步证实了这一点。成功地将 ADSCs 掺入互穿网络水凝胶中,赋予其生物创面敷料的特性,即能够促进人真皮成纤维细胞的迁移,并分泌抗炎性的旁分泌因子 TSG-6 蛋白,这分别在 2D 划痕实验和 ELISA 中得到了证明。更重要的是,将该生物创面敷料应用于小鼠全层烧伤创面后,能够促进早期创面闭合,减轻炎症反应,促进完全皮肤再生。总之,我们的研究结果突出了结冷胶惰性基质的机械和生物学增强作用。通过完全自然的方法,引入了一种高度适用的生物创面敷料,用于基于细胞的全层烧伤创面治疗。

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