明胶
粘弹性
材料科学
弹性模量
复合材料
生物物理学
化学
生物化学
生物
作者
Laurens Parmentier,Stien Dhaese,Jean-Yves Duquesne,Fabrice Bray,Louis Van der Meeren,André G. Skirtach,Christian Rolando,Ruslan I. Dmitriev,Sandra Van Vlierberghe
标识
DOI:10.1016/j.ijbiomac.2023.127619
摘要
Given the clinical need for osteoregenerative materials incorporating controlled biomimetic and biophysical cues, a novel highly-substituted norbornene-modified gelatin was developed enabling thiol-ene crosslinking exploiting thiolated gelatin as cell-interactive crosslinker. Comparing the number of physical crosslinks, the degree of hydrolytic degradation upon modification, the network density and the chemical crosslinking type, the osteogenic effect of visco-elastic and topographical properties was evaluated. This novel network outperformed conventional gelatin-based networks in terms of osteogenesis induction, as evidenced in 2D dental pulp stem cell seeding assays, resulting from the presentation of both a local (substrate elasticity, 25–40 kPa) and a bulk (compressive modulus, 25–45 kPa) osteogenic substrate modulus in combination with adequate fibrillar cell adhesion spacing to optimally transfer traction forces from the fibrillar ECM (as evidenced by mesh size determination with the rubber elasticity theory) and resulting in a 1.7-fold increase in calcium production (compared to the gold standard gelatin methacryloyl (GelMA)).
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