首页> 外文会议>Third Yugoslav Materials Research Society Conference September 20-24, 1999 Held in Herceg-Novi, Yugoslavia. >Analysis of In Vivo Substitution of Bone Tissue by HAp/PLLA Composite Biomaterial with PLLA of Different Molecular Weights Using FTIR Spectroscopy
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Analysis of In Vivo Substitution of Bone Tissue by HAp/PLLA Composite Biomaterial with PLLA of Different Molecular Weights Using FTIR Spectroscopy

机译:HAp / PLLA复合生物材料与不同分子量PLLA体内替代骨骼组织的FTIR光谱分析

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Hydroxyapatite/poly-L-lactide (HAp/PLLA) composite biomaterial with PLLA of 50,000 and 430,000 g/mole molecular weight was studied in vivo. The biocomposite with PLLA of both molecular weights was implanted into mice and after 1 and 3 weeks removed from their organisms and analyzed by the FT-IR spectroscopy. After one week of testing in vivo, the implanted samples gave spectra in which absorption bands arising from new-formed functional groups of amine and peptide can be seen. Analysis of the spectra revealed faster formation of peptide compounds when the biocomposite with PLLA of lower molecular weight was used. After 3 weeks, the spectra of the biocomposite of both compositions were registered with pronounced absorption bands at about 3420 and 1650 cm~(-1) assigned to new-generated collagen, a component of the extracellular connective-tissue matrix. Also, in the case of the biocomposite sample with PLLA of lower molecular weight, disappearance of the previously present absorption band at about 1760 cm~(-1) originating from the C=O group of PLLA indicates complete bioresorption of the PLLA used. Analysis of the microstructures of the sample surfaces by scanning electron microscopy before and after implantation revealed bioresorption of the PLLA polymer phase in the system with PLLA of lower molecular weight and generation of collagen fibers at the sites of implanted bioresorptive PLLA. A mixture of autologous bone powder and HAp/PLLA biocomposite was also examined. After implantation, the same final products as in the case of HAp/PLLA composite biomaterial alone were found.
机译:在体内研究了羟基磷灰石/聚L-丙交酯(HAp / PLLA)复合生物材料,其PLLA为50,000和430,000 g / mol。将两种分子量均具有PLLA的生物复合材料植入小鼠体内,并在1和3周后从其生物体中移出并通过FT-IR光谱进行分析。在体内测试一周后,植入的样品给出了光谱,在其中可见到由胺和肽的新形成的官能团引起的吸收带。光谱分析显示,当使用具有较低分子量PLLA的生物复合物时,肽化合物的形成更快。 3周后,两种组合物的生物复合物的光谱在分配给新生胶原的约3420和1650cm-1处具有明显的吸收带,所述胶原为细胞外结缔组织基质的成分。同样,在具有较低分子量的PLLA的生物复合样品的情况下,先前存在的在约1760cm-1(-1)处的吸收带从PLLA的C = O基团消失而消失,表明所用PLLA的完全生物吸收。在植入之前和之后,通过扫描电子显微镜对样品表面的微观结构进行分析,结果表明系统中PLLA聚合物相的生物吸收具有较低分子量的PLLA,并且在植入的生物吸收性PLLA部位产生了胶原纤维。还检查了自体骨粉和HAp / PLLA生物复合材料的混合物。植入后,发现与单独使用HAp / PLLA复合生物材料的最终产品相同。

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