School of Biology, Indian Institute of Science Education and Research Thiruvananthapuram, Maruthamala, Vithura 695551, India.
ACS Appl Bio Mater. 2021 Apr 19;4(4):3320-3331. doi: 10.1021/acsabm.0c01648. Epub 2021 Mar 10.
Compromised angiogenesis is a major factor contributing delayed wound healing in diabetic patients. Graft-assisted healing using synthetic and natural scaffolds supplemented with micromolecules for stimulating angiogenesis is the contemporary tissue engineering strategy for treating diabetic wounds. This study deployed the carbodiimide chemical reaction for coupling gelatin with a porcine cholecyst-derived scaffold (CDS) for enhancing angiogenesis. The modification was confirmed by the trinitrobenzene sulfonic acid assay and scanning electron microscopy. The gelatin-coupled CDS was more stable than the bare CDS in an proteolytic environment and allowed survival of keratinocytes (HaCaT), indicating its suitability for chronic skin wound application. The gelatin coupling brought significant improvement in the angiogenic potential of the CDS as evident from the enhanced viability of endothelial cells. An chorioallantoic membrane assay also demonstrated the angiogenic potential of the modified scaffold. Further, the modified scaffold promoted angiogenesis and aided faster healing of full-thickness excision wounds in streptozotocin-induced diabetic rats. It is concluded that the gelatin-coupled CDS is a potential advanced wound care material for treating diabetic wounds.
血管生成受损是糖尿病患者伤口愈合延迟的主要因素。使用合成和天然支架进行移植物辅助愈合,并辅以刺激血管生成的小分子,是治疗糖尿病创面的现代组织工程策略。本研究利用碳二亚胺化学反应将明胶与猪胆囊衍生支架(CDS)偶联,以增强血管生成。通过三硝基苯磺酸测定和扫描电子显微镜证实了修饰。在蛋白水解环境中,与 bare CDS 相比,明胶偶联的 CDS 更稳定,并且允许角蛋白细胞(HaCaT)存活,表明其适合慢性皮肤伤口应用。明胶偶联显著提高了 CDS 的血管生成潜力,内皮细胞的活力增强就是明证。绒毛尿囊膜试验也证明了改性支架的血管生成潜力。此外,改性支架促进了血管生成,并有助于加速链脲佐菌素诱导的糖尿病大鼠全层切除伤口的愈合。综上所述,明胶偶联的 CDS 是一种有潜力的治疗糖尿病创面的先进伤口护理材料。