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一种用于增强糖尿病伤口愈合的新型bola-molecular 分子自组装水凝胶。

A novel bola-molecular self-assembling hydrogel for enhancing diabetic wound healing.

机构信息

School of Pharmacy, Shenyang Key Laboratory of Functional Drug Carrier Materials, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang 110016, PR China.

School of Life Science and Bio-pharmaceutics, Shenyang Pharmaceutical University, 103 Wenhua Road, Shenyang 110016, China.

出版信息

J Colloid Interface Sci. 2024 Apr;659:385-396. doi: 10.1016/j.jcis.2023.12.100. Epub 2023 Dec 22.

Abstract

HYPOTHESIS

Chronic wounds, particularly those caused by diabetes, pose a significant challenge for clinical treatment due to their prolonged healing process and associated complications, which can lead to increased morbidity. A biocompatible hydrogel with strong antibacterial properties and the ability to promote angiogenesis can be directly absorbed in the wound site for healing.

EXPERIMENTS

A series of self-healing, antibacterial bolaamphiphilic supramolecular self-assembling hydrogels (HLQMes/Cu) were developed based on metal-ligand coordination between various concentrations of Cu solution and the head group of l-histidine methyl ester in HLQMes. This is the first report on the application of bola-molecular supramolecular hydrogels for the treatment of chronic wounds.

FINDINGS

The bola-molecular hydrogels reduced the toxicity of copper ions by coordination, and the HLQMes/Cu hydrogel, with 1.3 mg/mL Cu (HLQMes/Cu1.3), demonstrated good biocompatibility and antibacterial properties and effectively enhanced wound healing in a diabetic wound model with full-thickness injuries. Immunohistochemical analysis revealed that the HLQMes/Cu1.3 hydrogel enhanced epithelial formation and collagen deposition in wounds. Immunofluorescence studies confirmed that the HLQMes/Cu1.3 hydrogel attenuated the expression of proinflammatory factor (IL-6) and promoted angiogenesis by upregulating α-SMA and CD31. These findings demonstrate the potential of this bolaamphiphilic supramolecular self-assembling hydrogel as a promising candidate for diabetic wound treatment.

摘要

假设

慢性伤口,特别是由糖尿病引起的伤口,由于其愈合过程漫长且存在相关并发症,会导致发病率增加,因此对临床治疗构成了重大挑战。一种具有强抗菌性能和促进血管生成能力的生物相容性水凝胶,可以直接在伤口部位吸收进行愈合。

实验

基于不同浓度 Cu 溶液与 HLQMes 头基中 l-组氨酸甲酯之间的金属配体配位,开发了一系列自修复、抗菌的两亲性超分子自组装水凝胶(HLQMes/Cu)。这是首次报道将 bola-分子超分子水凝胶应用于治疗慢性伤口。

发现

通过配位, bola-分子水凝胶减少了铜离子的毒性,HLQMes/Cu 水凝胶(HLQMes/Cu1.3)中 Cu 浓度为 1.3mg/mL,表现出良好的生物相容性和抗菌性能,并能有效促进全层损伤的糖尿病伤口模型中的伤口愈合。免疫组织化学分析表明,HLQMes/Cu1.3 水凝胶增强了伤口上皮形成和胶原沉积。免疫荧光研究证实,HLQMes/Cu1.3 水凝胶通过上调α-SMA 和 CD31 来抑制促炎因子(IL-6)的表达并促进血管生成。这些发现表明,这种两亲性超分子自组装水凝胶作为治疗糖尿病伤口的潜在候选物具有潜力。

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