材料科学
成骨细胞
破骨细胞
生物医学工程
陶瓷
蛋白水解酶
再生(生物学)
活力测定
明胶
维生素连接蛋白
细胞粘附
生物物理学
细胞
粘附
细胞生物学
整合素
化学
生物化学
复合材料
酶
体外
医学
生物
作者
Annj Zamuner,Paola Brun,Roberta Ciccimarra,Francesca Ravanetti,Lorenzo Veschini,Hamada Elsayed,Stefano Sivolella,Giovanna Iucci,Andrea Porzionato,L. Di Silvio,Antonio Cacchioli,Enrico Bernardo,Monica Dettin
标识
DOI:10.1088/1748-605x/ac1555
摘要
Biofunctionalization was investigated for polymers and metals considering their scarce integration ability. On the contrary few studies dealt with ceramic biofunctionalization because the bioactive and bioresorbable surfaces of ceramics are able to positively interact with biological environment. In this study the cell-response improvement on biofunctionalized wollastonite and diopside-based scaffolds was demonstrated. The ceramics were first obtained by heat treatment of a silicone embedding reactive oxide fillers and then biofunctionalized with adhesive peptides mapped on vitronectin. The most promisingin vitroresults, in terms of h-osteoblast proliferation and bone-related gene expression, were reached anchoring selectively a peptide stable toward proteolytic degradation induced by serum-enriched medium. Inin vivoassays the anchoring of this protease-stable adhesive peptide was combined with self-assembling peptides, for increasing cell viability and angiogenesis. The results demonstrated external and internal cell colonization of biofunctionalized scaffolds with formation of new blood vessels (neoangiogenesis) and stimulation of ectopic mineralization.
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