在可生物降解的聚合物基板上,生物启发的结晶碳酸酸的生长
William L Murphy1, David J Mooney
1Department of Biomedical Engineering, Biologic and Materials Sciences, and Chemical Engineering, University of Michigan, Ann Arbor, Michigan 48109-1078, USA. wmurphy@engin.umich.edu
Journal of the American Chemical Society
|February 28, 2002
概括
这项研究通过增加表面功能组,增强了在多 (α-乙烯) 材料上类似骨的矿物质的形成. 这种仿生方法提供了对生物矿化和骨科组织再生潜力的洞察力.
科学领域:
- 生物材料科学 生物材料科学
- 生物矿物化的生物矿物化
- 聚合物化学 聚合物化学
背景情况:
- 生物矿化是复杂的,涉及生物宏分子-矿物相互作用.
- 了解这些过程对于开发用于组织再生的生物材料至关重要.
研究的目的:
- 了解和控制矿物质形成在一个多 (α-基) 模型系统.
- 为了获得对生物矿物化的洞察.
- 开发用于骨科组织再生的生物材料.
主要方法:
- 聚合物表面的功能化通过水解的聚合物 (乳酸-co-glycolide) (PLG) 薄膜.
- 处理过的聚合物暴露于模拟体液 (SBF).
- 使用离子结合试验分析矿物质形成.
主要成果:
- 增加的表面功能组 (碳酸,) 增强了聚合物表面能量.
- 观察到异质矿物质生长和连续矿物膜形成的增加3倍.
- 形成的矿物质被确定为碳酸酸盐,类似于骨矿物质.
结论:
- 聚 ((α-基) 材料可以通过生物仿真工艺进行矿化.
- 矿物核化比简单的静电相互作用更复杂.
- 表面功能化是增强生物仿真矿物化的可行策略.
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