自愈水凝胶
细胞外基质
纤维
化学
组织工程
生物物理学
超微结构
化学工程
高分子化学
生物医学工程
生物化学
解剖
医学
生物
工程类
作者
Antoine Frayssinet,Dalila Petta,Corinne Illoul,Bernard Haye,Anastasiia Markitantova,David Eglin,Gervaise Mosser,Matteo D’Este,Christophe Hélary
标识
DOI:10.1016/j.carbpol.2020.116042
摘要
A platform of enzymatically-crosslinked Collagen/Tyramine hyaluronan derivative (Col/HA-Tyr) hydrogels with tunable compositions and gelation conditions was developed to evaluate the impact of the preparation conditions on their physical, chemical and biological properties. At low HA-Tyr content, hydrogels exhibited a fibrillar structure, with lower mechanical properties compared to pure Col hydrogels. At high HA-Tyr and Horse Radish Peroxydase (HRP) content, a microfibrillar network was formed beside the banded Col fibrils and a synergistic effect of the hybrid structure on mechanical properties was observed. These hydrogels were highly resistant against enzymatic degradation while keeping a high degree of hydration. Unlike HA-Tyr hydrogels, encapsulation of human dermal fibroblasts within Col/HA-Tyr hydrogels allowed for high cell viability. These results showed that high HA-Tyr and HRP concentrations are required to positively impact the physical properties of hydrogels while preserving collagen fibrils. Those Col/HA-Tyr hydrogels appear promising for novel tissue engineering applications following a biomimetic approach.
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