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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Effect of Hydrolysis Pretreatment on the Formation of Bone-like Apatite on Poly(L-lactide) by Mineralization in Simulated Body Fluids
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Effect of Hydrolysis Pretreatment on the Formation of Bone-like Apatite on Poly(L-lactide) by Mineralization in Simulated Body Fluids

机译:水解预处理对模拟体液矿化对聚L-丙交酯形成骨状磷灰石的影响

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A bone-like apatite-coated surface that mediates a positive interaction between materials and bone is key to the development of desirable bone substitute materials. To incorporate apatite-coating on poly(L-laetide) (PLLA) surfaces, the effect of the hydrolysis of PLLA surfaces on the formation ability of bone-like apatite was investigated in this study.PLLA films and porous PLLA scaffolds were hydrolyzed for different time periods in alkaline solution and the hydrolyzed PLLA surfaces were characterized with X-ray photoelectron spectroscopy, atomic force microscopy, contact angle, and the measurement of carboxyl density. An apatite coating was formed by mineralizing the hydrolyzed PLLA in simulated body fluids (SBF) for 3 weeks and characterized. The hydrolyzed PLLA surfaces were rich in COOH and OH; the hydrophilicity, surface roughness, and carboxyl density increased with the hydrolysis time. After the incubation in SBF, a bone-like apatite layer with different morphology and composition was formed on the PLLA surfaces. The apatite formation on PLLA surfaces was promoted by the hydrolysis pretreatment and this increases with hydrolysis time. In addition, the compression module of the apatite-coated PLLA scaffolds increased compared with the pure PLLA scaffolds and increased with the hydrolysis time. The hydrolysis pretreatment was important in functionalizing the PLLA surfaces, facilitating subsequent apatite nucleation and apatite growth.
机译:介导材料与骨骼之间正向相互作用的类骨磷灰石涂层表面是开发理想的骨骼替代材料的关键。为了在聚(L-laetide)(PLLA)表面上加入磷灰石涂层,研究了PLLA表面水解对骨状磷灰石形成能力的影响.PLLA膜和多孔PLLA支架被水解为不同的通过X射线光电子能谱,原子力显微镜,接触角和羧基密度的测量来表征碱性溶液和水解的PLLA表面的时间。通过在模拟体液(SBF)中将水解的PLLA矿化3周来形成磷灰石涂层,并进行表征。水解的PLLA表面富含COOH和OH。亲水性,表面粗糙度和羧基密度随水解时间的增加而增加。在SBF中孵育后,在PLLA表面形成了具有不同形态和组成的骨状磷灰石层。水解预处理促进了PLLA表面磷灰石的形成,并且随着水解时间的增加而增加。此外,与纯PLLA支架相比,磷灰石涂层的PLLA支架的压缩模量增加,并且随水解时间增加。水解预处理对于功能化PLLA表面,促进随后的磷灰石成核和磷灰石生长至关重要。

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