Nguyen Hieu, Qian Jing Jing, Bhatnagar Rajendra S, Li Song
Department of Bioengineering and The Center for Tissue Engineering, University of California, Berkeley, CA, USA.
Biochem Biophys Res Commun. 2003 Nov 7;311(1):179-86. doi: 10.1016/j.bbrc.2003.09.192.
The cells in bone grow on a composite matrix made up of mineral and organic (mainly type-I collagen) components. In this study, anorganic bone mineral (ABM) particles were coated with a cell-binding domain of type-I collagen (P-15 peptide) to mimic the bone matrix components and suspended in injectable hyaluronate (Hy) hydrogels. The ABM/P-15/Hy was compared to ABM/Hy-the same matrix without P-15 peptide. Osteoblast-like HOS cells migrated through the hydrogels around ABM/P-15 or ABM particles; however, more cells adhered to ABM/P-15/Hy particles, and the cells formed better surface coverage and had more stress fibers on ABM/P-15/Hy. HOS cells cultured on ABM/P-15/Hy had increased osteogenic gene expression for alkaline phosphatase and bone morphogenetic proteins, and deposited more mineralized matrix. Studies with two different hydrogels (carboxymethylcellulose and sodium alginate) showed similar enhanced cell attachment and mineralization. The studies suggest that the ABM/P-15 in hydrogels can be used as an injectable biomimetic matrix to facilitate bone repair.
骨中的细胞生长在由矿物质和有机成分(主要是I型胶原蛋白)组成的复合基质上。在本研究中,无机骨矿物质(ABM)颗粒被I型胶原蛋白的细胞结合结构域(P-15肽)包被,以模拟骨基质成分,并悬浮于可注射的透明质酸(Hy)水凝胶中。将ABM/P-15/Hy与ABM/Hy(不含P-15肽的相同基质)进行比较。成骨样HOS细胞通过围绕ABM/P-15或ABM颗粒的水凝胶迁移;然而,更多细胞黏附于ABM/P-15/Hy颗粒,并且细胞在ABM/P-15/Hy上形成更好的表面覆盖,并有更多应力纤维。在ABM/P-15/Hy上培养的HOS细胞碱性磷酸酶和成骨蛋白的成骨基因表达增加,并沉积更多矿化基质。使用两种不同水凝胶(羧甲基纤维素和海藻酸钠)的研究显示出类似的增强细胞黏附和矿化作用。这些研究表明,水凝胶中的ABM/P-15可用作可注射的仿生基质以促进骨修复。