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胶原蛋白/壳聚糖基多孔支架的配方开发用于皮肤伤口修复和再生。

Formulation development of collagen/chitosan-based porous scaffolds for skin wounds repair and regeneration.

机构信息

Department of Drug Sciences, University of Pavia, Viale Taramelli 12, 27100 Pavia, Italy.

Department of Public Health, Experimental and Forensic Medicine, University of Pavia, via Forlanini 2, 27100 Pavia, Italy.

出版信息

Int J Biol Macromol. 2023 Jul 1;242(Pt 3):125000. doi: 10.1016/j.ijbiomac.2023.125000. Epub 2023 May 20.

Abstract

Herein we developed a hydrogel based porous cross-linked scaffold intended for the treatment of chronic skin ulcers. It is made of collagen, the most abundant protein of mammals ECM, and chitosan, a natural polysaccharide endowed with numerous positive cues for wound repair. Different cross-linking methods, namely UV irradiation with the addition of glucose, addition of tannic acid as cross-linking agent and ultrasonication, were employed to prepare a cross-linked hydrogel with a highly interconnected 3D internal structure. The variables considered critical to obtain a suitable system for the envisaged application are the composition of hydrogels, especially the concentration of chitosan, and the concentration ratio between chitosan and collagen. Stable systems, characterized by high porosity, were obtained thanks to the use of freeze-drying process. To assess the influence of the above-mentioned variables on scaffold mechanical properties, a Design of Experiments (DoE) approach was exploited, which resulted in the identification of the best hydrogel composition. In vitro and in vivo assays on a fibroblast model cell line and on a murine model, respectively, demonstrated scaffold biocompatibility, biomimicry, and safety.

摘要

在这里,我们开发了一种基于水凝胶的多孔交联支架,旨在治疗慢性皮肤溃疡。它由胶原蛋白组成,胶原蛋白是哺乳动物 ECM 中最丰富的蛋白质,壳聚糖是一种天然多糖,具有许多促进伤口修复的积极信号。我们采用了不同的交联方法,即添加葡萄糖的紫外线照射、添加单宁酸作为交联剂和超声处理,制备了具有高度互连 3D 内部结构的交联水凝胶。考虑到获得适用于预期应用的合适系统的关键变量是水凝胶的组成,特别是壳聚糖的浓度,以及壳聚糖和胶原蛋白之间的浓度比。由于使用了冷冻干燥工艺,稳定的系统具有高孔隙率的特点。为了评估上述变量对支架机械性能的影响,我们采用了实验设计(DoE)方法,确定了最佳水凝胶组成。在成纤维细胞模型细胞系和小鼠模型上进行的体外和体内试验分别证明了支架的生物相容性、仿生学和安全性。

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