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负载生长因子的原位光交联聚(3-羟基丁酸酯-co-3-羟基戊酸酯)/甲基丙烯酰化明胶混合贴片用于糖尿病伤口愈合

Growth factor loaded in situ photocrosslinkable poly(3-hydroxybutyrate-co-3-hydroxyvalerate)/gelatin methacryloyl hybrid patch for diabetic wound healing.

作者信息

Augustine Robin, Hasan Anwarul, Dalvi Yogesh B, Rehman Syed Raza Ur, Varghese Ruby, Unni Raghunath Narayanan, Yalcin Huseyin C, Alfkey Rashad, Thomas Sabu, Al Moustafa Ala-Eddin

机构信息

Department of Mechanical and Industrial Engineering, College of Engineering, Qatar University, Doha 2713, Qatar; Biomedical Research Center, Qatar University, Doha 2713, Qatar.

Department of Mechanical and Industrial Engineering, College of Engineering, Qatar University, Doha 2713, Qatar; Biomedical Research Center, Qatar University, Doha 2713, Qatar.

出版信息

Mater Sci Eng C Mater Biol Appl. 2021 Jan;118:111519. doi: 10.1016/j.msec.2020.111519. Epub 2020 Sep 18.

Abstract

Management of chronic diabetic ulcers remains as a major challenge in healthcare which requires extensive multidisciplinary approaches to ensure wound protection, management of excess wound exudates and promoting healing. Developing wound healing patches that can act as a protective barrier and support healing is highly needed to manage chronic diabetic ulcers. In order to boost the wound healing potential of patch material, bioactive agents such as growth factors can be used. Porous membranes made of nanofibers generated using electrospinning have potential for application as wound coverage matrices. However, electrospun membranes produced from several biodegradable polymers are hydrophobic and cannot manage the excess exudates produced by chronic wounds. Gelatin-methacryloyl (GelMA) hydrogels absorb excess exudates and provide an optimal biological environment for the healing wound. Epidermal growth factor (EGF) promotes cell migration, angiogenesis and overall wound healing. Poly(3-hydroxybutyrate-co-3-hydroxyvalerate) (PHBV) membranes provide microbial, thermal and mechanical barrier properties to the wound healing patch. Herein, we developed a biodegradable polymeric patch based on the combination of mechanically stable electrospun PHBV, GelMA hydrogel and EGF for promoting diabetic wound healing. In vitro and in vivo studies were carried out to evaluate the effect of developed patches on cell proliferation, cell migration, angiogenesis and wound healing. Our results showed that EGF loaded patches can promote the migration and proliferation of multiple types of cells (keratinocytes, fibroblasts and endothelial cells) and enhance angiogenesis. In situ development of the patch and subsequent in vivo wound healing study in diabetic rats showed that EGF loaded patches provide rapid healing compared to control wounds. Interestingly, 100 ng EGF per cm of the patches was enough to provide favourable cellular response, angiogenesis and rapid diabetic wound healing. Overall results indicate that EGF loaded PHBV-GelMA hybrid patch could be a promising approach to promote diabetic wound healing.

摘要

慢性糖尿病溃疡的管理仍然是医疗保健领域的一项重大挑战,这需要广泛的多学科方法来确保伤口保护、处理过多的伤口渗出液并促进愈合。开发能够作为保护屏障并支持愈合的伤口愈合贴片对于管理慢性糖尿病溃疡非常必要。为了提高贴片材料的伤口愈合潜力,可以使用生长因子等生物活性剂。通过静电纺丝制备的纳米纤维多孔膜有潜力用作伤口覆盖基质。然而,由几种可生物降解聚合物制成的静电纺丝膜是疏水的,无法处理慢性伤口产生的过多渗出液。明胶-甲基丙烯酰基(GelMA)水凝胶可吸收过多的渗出液,并为愈合伤口提供最佳的生物环境。表皮生长因子(EGF)可促进细胞迁移、血管生成和整体伤口愈合。聚(3-羟基丁酸酯-co-3-羟基戊酸酯)(PHBV)膜为伤口愈合贴片提供微生物、热和机械屏障特性。在此,我们基于机械稳定的静电纺丝PHBV、GelMA水凝胶和EGF的组合开发了一种可生物降解的聚合物贴片,以促进糖尿病伤口愈合。进行了体外和体内研究,以评估所开发贴片对细胞增殖、细胞迁移、血管生成和伤口愈合的影响。我们的结果表明,负载EGF的贴片可以促进多种类型细胞(角质形成细胞、成纤维细胞和内皮细胞)的迁移和增殖,并增强血管生成。贴片的原位形成以及随后在糖尿病大鼠中的体内伤口愈合研究表明,与对照伤口相比,负载EGF的贴片可实现快速愈合。有趣的是,每平方厘米贴片含100 ng EGF足以提供良好的细胞反应、血管生成和快速的糖尿病伤口愈合。总体结果表明,负载EGF的PHBV-GelMA混合贴片可能是促进糖尿病伤口愈合的一种有前途的方法。

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