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基于物理交联和氢键策略的猴头菇β-葡聚糖/单宁酸水凝胶,用于加速伤口愈合。

Hericium erinaceus β-glucan/tannic acid hydrogels based on physical cross-linking and hydrogen bonding strategies for accelerating wound healing.

机构信息

State Key Laboratory of Food Science and Resources, China-Canada Joint Lab of Food Science and Technology (Nanchang), Nanchang University, Nanchang, Jiangxi Province 330047, China.

State Key Laboratory of Food Science and Resources, China-Canada Joint Lab of Food Science and Technology (Nanchang), Nanchang University, Nanchang, Jiangxi Province 330047, China.

出版信息

Int J Biol Macromol. 2024 Nov;279(Pt 4):135381. doi: 10.1016/j.ijbiomac.2024.135381. Epub 2024 Sep 6.

Abstract

The majority of natural fungal β-glucans exhibit diverse biological functionalities, such as immunomodulation and anti-inflammatory effects, attributed to their distinctive helix or highly branched conformation This study utilized β-glucan with helix conformation and high-viscosity extracted from Hericium erinaceus, employing freeze-thaw and solvent exchange strategies to induce multiple hydrogen bonding between molecules, thereby initiating the self-assembly process of β-glucan from random coil to stable helix conformation without chemical modifications. Subsequently, the natural bioactive compound tannic acid was introduced through physical entanglement, imparting exceptional antioxidant properties to the hydrogel. The HEBG/TA hydrogel exhibited injectable properties, appropriate mechanical characteristics, degradability, temperature-responsive tannic acid release, antioxidant activity, and hemostatic potential. In vivo experiments using skin full-thickness defect and deep second-degree burn wound models demonstrated significant therapeutic efficacy, including neovascularization, and tissue regeneration. Moreover, the HEBG/TA hydrogel demonstrated its ability to regulate cytokines by effectively inhibiting the production of inflammatory mediators (TNF-α, IL-6), while simultaneously enhancing the expression of cell proliferation factor KI-67 and markers associated with angiogenesis such as CD31 and α-SMA. This study highlights the potential of combining natural β-glucan with bioactive molecules for skin repair.

摘要

大多数天然真菌β-葡聚糖表现出多种生物功能,如免疫调节和抗炎作用,这归因于其独特的螺旋或高度支化构象。本研究利用从珊瑚菌中提取的具有螺旋构象和高粘度的β-葡聚糖,采用冻融和溶剂交换策略在分子间诱导多次氢键,从而引发β-葡聚糖从无规线团到稳定螺旋构象的自组装过程,而无需化学修饰。随后,通过物理缠结引入天然生物活性化合物单宁酸,赋予水凝胶优异的抗氧化性能。HEBG/TA 水凝胶表现出可注射性、适当的机械特性、可降解性、温度响应性的单宁酸释放、抗氧化活性和止血潜力。在皮肤全层缺损和深二度烧伤创面模型的体内实验中,该水凝胶表现出显著的治疗效果,包括新生血管形成和组织再生。此外,HEBG/TA 水凝胶通过有效抑制炎症介质(TNF-α、IL-6)的产生,同时增强细胞增殖因子 KI-67 和与血管生成相关的标志物(如 CD31 和 α-SMA)的表达,展示了其调节细胞因子的能力。本研究强调了将天然β-葡聚糖与生物活性分子结合用于皮肤修复的潜力。

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