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一种通过协同葡萄糖响应性降血糖和抗炎作用促进糖尿病伤口愈合的多糖-碳酸钙微球掺杂水凝胶

A Polysaccharide-Calcium Carbonate Microsphere-Doped Hydrogel for Accelerated Diabetic Wound Healing via Synergistic Glucose-Responsive Hypoglycemic and Anti-Inflammatory Effects.

作者信息

Liu Wei, Lei Lijing, Ma Fanyi, Zhan Mengke, Zhu Jinhua, Khan Md Zaved H, Liu Xiuhua

机构信息

Henan International Joint Laboratory of Medicinal Plants Utilization, College of Chemistry and Molecular Sciences, Henan Key Laboratory of Natural Medicine Innovation and Transformation, State Key Laboratory of Antiviral Drugs, Henan University, Kaifeng 475004, China.

Department of Chemical Engineering, Jashore University of Science and Technology, Jashore 7408, Bangladesh.

出版信息

ACS Biomater Sci Eng. 2025 Jan 13;11(1):415-428. doi: 10.1021/acsbiomaterials.4c02090. Epub 2025 Jan 1.

Abstract

As common complications of diabetes, long-term hyperglycemia and inflammatory infiltration often lead to prolonged unhealing of chronic diabetic wounds. The natural hydrogel-containing plant polysaccharides were recorded to have effective hypoglycemic and anti-inflammatory effects. This study focused on the accelerating effect of diabetic wound healing of hydrogels doped with polysaccharide (DOP)─calcium carbonate (CaCO) microspheres, which have glucose-responsive insulin release and anti-inflammatory effects. The hydrogel defined as PL-PVA/DOP-CaCO was designed via the borate ester bonds between polylysine-phenylboronic acids (PL-PBA) and dihydroxyl groups of poly(vinyl alcohol) (PVA). DOP modified on the surface of CaCO microspheres can simultaneously act with PBA to dope into the PL-PVA hydrogel and maintain glucose sensitivity. The mechanical and swelling properties of the hybrid hydrogels were reinforced by the incorporated microspheres. Meanwhile, the hyperglycemia was also regulated by the released insulin and DOP. The in vitro results indicated that the PL-PVA/DOP-CaCO hydrogel had good biocompatibility and inflammatory activity and could promote fibroblast proliferation and migration. In vivo experiments demonstrated that the INS@PL-PVA/DOP-CaCO hydrogel can significantly promote wound healing in diabetic rats by glucose-responsive regulation of hyperglycemia, inhibiting inflammation, improving angiogenesis, and accelerating the secretion of endothelial cells and proliferation of fibroblasts on wound tissues. The results bring new insights into the field of glucose-responsive hydrogels, showing their potential as drug delivery systems of macromolecular therapeutics to treat diabetic skin wounds.

摘要

作为糖尿病的常见并发症,长期高血糖和炎症浸润常导致慢性糖尿病伤口长期不愈合。含植物多糖的天然水凝胶具有有效的降血糖和抗炎作用。本研究聚焦于掺杂多糖(DOP)-碳酸钙(CaCO)微球的水凝胶对糖尿病伤口愈合的加速作用,该微球具有葡萄糖响应性胰岛素释放和抗炎作用。定义为PL-PVA/DOP-CaCO的水凝胶是通过聚赖氨酸-苯硼酸(PL-PBA)与聚乙烯醇(PVA)的二羟基之间的硼酸酯键设计而成。在CaCO微球表面修饰的DOP可与PBA同时作用,掺杂到PL-PVA水凝胶中并保持葡萄糖敏感性。掺入的微球增强了杂化水凝胶的力学性能和溶胀性能。同时,释放的胰岛素和DOP也对高血糖起到调节作用。体外结果表明,PL-PVA/DOP-CaCO水凝胶具有良好的生物相容性和炎症活性,可促进成纤维细胞增殖和迁移。体内实验表明,INS@PL-PVA/DOP-CaCO水凝胶可通过葡萄糖响应性调节高血糖、抑制炎症、改善血管生成以及加速伤口组织上内皮细胞的分泌和成纤维细胞的增殖,显著促进糖尿病大鼠的伤口愈合。这些结果为葡萄糖响应性水凝胶领域带来了新的见解,显示出它们作为治疗糖尿病皮肤伤口的大分子治疗药物递送系统的潜力。

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