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超敏晶体介导的生物启发纳米结构的界面组装

Interfacial assembly of bioinspired nanostructures mediated by supersensitive crystals.

作者信息

Toda Yuriko, Shibata Yo, Kataoka Yu, Kawawa Tadaharu, Miyazaki Takashi

机构信息

Department of Prosthodontics, Showa University School of Dentistry, 2-1-2 Kitasenzoku, Ohta-ku, Tokyo 145-8515, Japan.

出版信息

J Biomed Mater Res A. 2008 Mar 15;84(4):869-74. doi: 10.1002/jbm.a.31488.

Abstract

Laboratory-designed biocomposites structured by organic matrices impregnated with oriented biominerals have been significantly progressed by mimicking biological processes, although several problems associated with their formulation or antigenicity remain to be solved. Here, we describe a new strategy for the formulation of bioinspired nanostructures that involves spontaneous mediation by cooperative interactions between inorganic nanocrystals and host cells without the complex procedures required for laboratory-designed biocomposites. In the present study, osteoblastic cells were cultured on hydroxyapatite and beta-tricalcium phosphate nanocrystals prepared by discharging in electrolytes. Specifically, a high level of assembly of collagenous proteins associated with cell proliferation was achieved on nanoscale beta-tricalcium phosphate crystals by catalysis of polyphosphate chains produced during cell culture. Furthermore, a spatial structure that was practically composed of natural biocomposites found in bone and teeth was obtained on the nanocrystals due to increased cross-linking between inorganic molecules and biomolecules. Suggestions for the spontaneous formulation of bioinspired nanostructures in a living body mediated by inorganic biomaterials are also discussed.

摘要

通过模仿生物过程,由浸渍有定向生物矿物质的有机基质构成的实验室设计生物复合材料取得了显著进展,尽管其配方或抗原性相关的几个问题仍有待解决。在此,我们描述了一种用于构建仿生纳米结构的新策略,该策略涉及无机纳米晶体与宿主细胞之间的协同相互作用的自发介导,而无需实验室设计生物复合材料所需的复杂程序。在本研究中,成骨细胞在通过在电解质中放电制备的羟基磷灰石和β-磷酸三钙纳米晶体上培养。具体而言,通过细胞培养过程中产生的多磷酸盐链的催化作用,在纳米级β-磷酸三钙晶体上实现了与细胞增殖相关的胶原蛋白的高水平组装。此外,由于无机分子与生物分子之间交联增加,在纳米晶体上获得了实际上由骨骼和牙齿中发现的天然生物复合材料组成的空间结构。还讨论了由无机生物材料介导在生物体内自发形成仿生纳米结构的建议。

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