Dettin Monica, Bagno Andrea, Morpurgo Margherita, Cacchioli Antonio, Conconi Maria Teresa, Di Bello Carlo, Gabbi Carlo, Gambaretto Roberta, Parnigotto Pier Paolo, Pizzinato Sara, Ravanetti Francesca, Guglielmi Massimo
Department of Chemical Process Engineering, University of Padova, Padova, Italy.
Tissue Eng. 2006 Dec;12(12):3509-23. doi: 10.1089/ten.2006.12.3509.
A wide range of biochemical signals promoting cell functions (adhesion, migration, proliferation, and differentiation) and thereby improving the osseointegration process are currently investigated. Unfortunately, their application for the production of bioactive implantable devices is often hampered by their insolubility; instability; and limited availability of a large amount of inexpensive, high-purity samples. An attractive alternative is the use of short peptides carrying the minimum active sequence of the natural factors. Synthetic peptides mapped on fibronectin and vitronectin have been demonstrated to enhance cell adhesion both to polystyrene and acellular bone matrix; in particular, a nonapeptide sequence from human vitronectin works via an osteoblast-specific adhesion mechanism. In this study, we incorporated these peptides into a sol-gel silica dressing applied to coat sand-blasted and acid-attacked titanium samples; measured the kinetic of peptide release; and used titanium disks, coated with a peptide-enriched film, as substrates to determine the peptide concentration that maximizes cell adhesion in vitro. We also evaluated in vivo the capacity of the vitronectin-derived peptide to improve osteogenic activity: histologic analysis revealed markedly improved osteogenic activity around peptide-enriched samples. This article also discusses the role of surface characteristics and the importance of bioactive peptides.
目前正在研究多种促进细胞功能(黏附、迁移、增殖和分化)从而改善骨整合过程的生化信号。不幸的是,它们在生物活性可植入装置生产中的应用常常受到其不溶性、不稳定性以及难以获得大量廉价高纯度样品的限制。一种有吸引力的替代方法是使用携带天然因子最小活性序列的短肽。已证明映射在纤连蛋白和玻连蛋白上的合成肽可增强细胞对聚苯乙烯和脱细胞骨基质的黏附;特别是,来自人玻连蛋白的一个九肽序列通过成骨细胞特异性黏附机制起作用。在本研究中,我们将这些肽掺入溶胶 - 凝胶二氧化硅敷料中,用于涂覆喷砂和酸蚀钛样品;测量肽释放动力学;并使用涂有富含肽薄膜的钛盘作为底物,以确定在体外使细胞黏附最大化的肽浓度。我们还在体内评估了玻连蛋白衍生肽改善成骨活性的能力:组织学分析显示富含肽样品周围的成骨活性明显改善。本文还讨论了表面特性的作用以及生物活性肽的重要性。