Yousefi-Mashouf Hamid, Bailly Lucie, Orgéas Laurent, Henrich Bernardoni Nathalie
University Grenoble Alpes, Centre National de la Recherche Scientifique (CNRS), Grenoble INP, 3SR, Grenoble, France.
University Grenoble Alpes, Centre National de la Recherche Scientifique (CNRS), Grenoble INP, GIPSA-lab, Grenoble, France.
Front Bioeng Biotechnol. 2023 Jan 12;10:1094197. doi: 10.3389/fbioe.2022.1094197. eCollection 2022.
Among the biopolymers used to make hydrogels, gelatin is very attractive due to its biocompatibility, biodegradability and versatile physico-chemical properties. A proper and complete characterization of the mechanical behavior of these hydrogels is critical to evaluate the relevance of one formulation over another for a targeted application, and to optimise their processing route accordingly. In this work, we manufactured neat gelatin and gelatin covalently cross-linked with glutaraldehyde at various concentrations, yielding to hydrogels with tunable mechanical properties that we characterized under finite strain, cyclic tension, compression and shear loadings. The role of both the chemical formulation and the kinematical path on the mechanical performances of the gels is highlighted. As an opening towards biomedical applications, the properties of the gels are confronted to those of native soft tissues particularly complicated to restore, the human vocal folds. A specific cross-linked hydrogel is selected to mimic vocal-fold fibrous tissues.
在用于制造水凝胶的生物聚合物中,明胶因其生物相容性、生物降解性和多样的物理化学性质而极具吸引力。对这些水凝胶的力学行为进行恰当而全面的表征,对于评估一种配方相对于另一种配方在特定应用中的相关性,并相应地优化其加工路线至关重要。在这项工作中,我们制备了纯明胶以及与不同浓度戊二醛共价交联的明胶,得到了具有可调力学性能的水凝胶,并在有限应变、循环拉伸、压缩和剪切载荷下对其进行了表征。突出了化学配方和运动路径对凝胶力学性能的作用。作为迈向生物医学应用的开端,将凝胶的性能与天然软组织(尤其是修复起来特别复杂的人类声带)的性能进行了对比。选择了一种特定的交联水凝胶来模拟声带纤维组织。