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基于黄芪多糖/羧甲基壳聚糖/海藻酸钠的导电水凝胶用于糖尿病伤口愈合及肌肉功能评估

Astragalus polysaccharide/carboxymethyl chitosan/sodium alginate based electroconductive hydrogels for diabetic wound healing and muscle function assessment.

作者信息

Tang Letian, Xie Shuyang, Wang Danyang, Wei Yiying, Ji Xiaopu, Wang Yicheng, Zhao Nana, Mou Zonglei, Li Baoping, Sun Wan Ru, Wang Ping Yu, Basmadji Nicola Paccione, Pedraz José Luis, Vairo Claudia, Lafuente Eusebio Gainza, Ramalingam Murugan, Xiao Xiaofei, Wang Ranran

机构信息

Institute of Rehabilitation Medicine, School of Special Education and Rehabilitation, Binzhou Medical University, Yantai 264003, People's Republic of China.

Key Laboratory of Tumor Molecular Biology, Binzhou Medical University, Yantai 264003, People's Republic of China.

出版信息

Carbohydr Polym. 2025 Feb 15;350:123058. doi: 10.1016/j.carbpol.2024.123058. Epub 2024 Nov 26.

DOI:10.1016/j.carbpol.2024.123058
PMID:39647958
Abstract

Natural polysaccharides with excellent biocompatibility are considered ideal materials for repairing diabetic foot ulcer. However, diabetic foot ulcer is often accompanied by decreased muscle function, even resulting in muscle atrophy. During wound repair, monitoring muscle function at the wound site in real time can identify the decreased muscle strength timely, which is crucial for precise wound rehabilitation. Nevertheless, the majority of hydrogels are primarily utilized for wound healing and lack the capability for electromyography monitoring. Here, we designed a multinetwork hydrogel composed of astragalus polysaccharide, chitosan, and sodium alginate and internally embedded conductive PPy-PDA-MnO nanoparticles (P-NPs) loaded with resveratrol (Res) for wound repair and muscle function assessment. The intrinsic hypoglycemic and anti-inflammatory properties of astragalus polysaccharides, combined with the antioxidative and proangiogenic functions of Res, synergistically facilitate wound healing. The multinetwork structure affords the hydrogel excellent mechanical properties. Furthermore, the addition of conductive NPs not only improves the mechanical performance of the hydrogel but also confers electrical conductivity. The conductive hydrogel acts as an epidermal electrode which can be utilized for monitoring of electromyography signals. This novel approach for treating diabetic wounds ultimately achieves improved wound repair and muscle function assessment, carrying out a monitoring-guided safe and accurate wound repair.

摘要

具有优异生物相容性的天然多糖被认为是修复糖尿病足溃疡的理想材料。然而,糖尿病足溃疡常伴有肌肉功能下降,甚至导致肌肉萎缩。在伤口修复过程中,实时监测伤口部位的肌肉功能能够及时发现肌肉力量下降,这对于精确的伤口康复至关重要。然而,大多数水凝胶主要用于伤口愈合,缺乏肌电图监测能力。在此,我们设计了一种由黄芪多糖、壳聚糖和海藻酸钠组成的多网络水凝胶,并在内部嵌入负载白藜芦醇(Res)的导电聚吡咯-聚多巴胺-二氧化锰纳米颗粒(P-NPs),用于伤口修复和肌肉功能评估。黄芪多糖固有的降血糖和抗炎特性,与白藜芦醇的抗氧化和促血管生成功能相结合,协同促进伤口愈合。多网络结构赋予水凝胶优异的力学性能。此外,导电纳米颗粒的加入不仅提高了水凝胶的力学性能,还赋予其导电性。导电水凝胶可作为表皮电极用于监测肌电图信号。这种治疗糖尿病伤口的新方法最终实现了更好的伤口修复和肌肉功能评估,进行了监测引导下的安全准确的伤口修复。

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