Ball Vincent
Faculté de Chirurgie Dentaire, Université de Strasbourg, 8 rue Sainte Elizabeth, 67000 Strasbourg, France.
Institut National de la Santé et de la Recherche Médicale, Unité Mixte de Recherche, 1 Rue Eugène Boeckel, CEDEX, 67084 Strasbourg, France.
Gels. 2023 Feb 10;9(2):149. doi: 10.3390/gels9020149.
(1) Background: Gelatin is widely used in food science, bioengineering, and as a sealant. However, for most of those applications, the mechanical properties of gelatin gels need to be improved by means of physical or chemical crosslinking. Among the used chemical agents, genipin allows low cytotoxicity in addition to improved Young's modulus. However, the mechanical properties of gelatin-genipin gels have only been investigated at the macroscale, and there is no knowledge of the influence of the genipin concentration on the surface homogeneity of Young's modulus. (2) Methods: To this aim, the influence of genipin concentration on Young's modulus of gelatin gels was investigated by means of ferrule-top micro-indentation. The data were compared with storage moduli obtained by shear rheology data. (3) Results: Ferrule-top indentation measurements allowed us to show that Young's moduli of gelatin-genipin gels increase up to a plateau value after approximately 12 mg/mL in genipin and 4 h of crosslinking. Young's moduli distribute with high homogeneity over 80 µm × 80 µm surface areas and are consistent with the storage moduli obtained by shear rheology. (4) Conclusions: It has been shown that ferrule-top indentation data fitted with the Hertz model yield Young's moduli of gelatin-genipin gels which are consistent with the storage moduli obtained by characterization at the macroscale using shear rheometry. In addition, Young's moduli are homogenously distributed (with some irregularities at the highest genipin concentrations) and can be increased by two orders of magnitude with respect to the uncrosslinked gel.
(1) 背景:明胶广泛应用于食品科学、生物工程以及作为密封剂。然而,对于大多数这些应用,明胶凝胶的机械性能需要通过物理或化学交联来改善。在所用的化学试剂中,京尼平除了能提高杨氏模量外,还具有低细胞毒性。然而,明胶 - 京尼平凝胶的机械性能仅在宏观尺度上进行了研究,对于京尼平浓度对杨氏模量表面均匀性的影响尚无了解。(2) 方法:为此,通过套圈顶部微压痕法研究了京尼平浓度对明胶凝胶杨氏模量的影响。将数据与通过剪切流变学数据获得的储能模量进行比较。(3) 结果:套圈顶部压痕测量表明,在京尼平浓度约为12 mg/mL且交联4小时后,明胶 - 京尼平凝胶的杨氏模量增加至平稳值。杨氏模量在80 µm×80 µm的表面积上高度均匀分布,并且与通过剪切流变学获得的储能模量一致。(4) 结论:结果表明,用赫兹模型拟合的套圈顶部压痕数据得出的明胶 - 京尼平凝胶杨氏模量与使用剪切流变仪在宏观尺度上表征获得的储能模量一致。此外,杨氏模量均匀分布(在最高京尼平浓度下有一些不规则性),并且相对于未交联凝胶可提高两个数量级。