Fan Yuwei, Sun Zhi, Wang Rizhi, Abbott Christopher, Moradian-Oldak Janet
Center for Craniofacial Molecular Biology, School of Dentistry, University of Southern California, 2250 Alcazar Street, CSA 103, Los Angeles, CA 90033, USA.
Biomaterials. 2007 Jul;28(19):3034-42. doi: 10.1016/j.biomaterials.2007.02.016. Epub 2007 Feb 22.
Fabricating the structures similar to dental enamel through the in vitro preparation method is of great interest in the fields of dentistry and material sciences. Developing enamel is composed of calcium phosphate mineral, water, and enamel matrix proteins, mainly amelogenins. To prepare a material mimicking such composition a novel approach of simultaneously assembling amelogenin and calcium phosphate precipitates by electrolytic deposition (ELD) was established. It was found that recombinant full-length amelogenin (rP172) self-assembled into nanochain structures during ELD (following increase in solution pH), and had significant effect on the induction of the parallel bundles of calcium phosphate nanocrystals, grown on semiconductive silicon wafer surface. When a truncated amelogenin (rP148) was used; no nanochain assembly was observed, neither parallel bundles were formed. The coating obtained in the presence of rP172 had improved elastic modulus and hardness when compared to the coating incorporated with rP148. Our data suggest that the formation of organized bundles in amelogenin-apatite composites is mainly driven by amelogenin nanochain assembly and highlights the potential of such composite for future application as dental restorative materials.
通过体外制备方法制造类似于牙釉质的结构在牙科和材料科学领域引起了极大的兴趣。发育中的牙釉质由磷酸钙矿物质、水和牙釉质基质蛋白组成,主要是釉原蛋白。为了制备模仿这种成分的材料,建立了一种通过电解沉积(ELD)同时组装釉原蛋白和磷酸钙沉淀物的新方法。研究发现,重组全长釉原蛋白(rP172)在ELD过程中(随着溶液pH值升高)自组装成纳米链结构,并对在半导体硅片表面生长的平行排列的磷酸钙纳米晶体的诱导有显著影响。当使用截短的釉原蛋白(rP148)时,未观察到纳米链组装,也未形成平行束。与含有rP148的涂层相比,在rP172存在下获得的涂层具有更高的弹性模量和硬度。我们的数据表明,釉原蛋白-磷灰石复合材料中有序束的形成主要由釉原蛋白纳米链组装驱动,并突出了这种复合材料作为牙科修复材料未来应用的潜力。