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The biocompatibility of carbon hydroxyapatite/beta-glucan composite for bone tissue engineering studied with Raman and FTIR spectroscopic imaging

机译:拉曼和FTIR光谱成像研究羟基磷灰石碳/β-葡聚糖复合材料在骨组织工程中的生物相容性

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摘要

The spectroscopic approaches of FTIR imaging and Raman mapping were applied to the characterisation of a new carbon hydroxyapatite/beta-glucan composite developed for bone tissue engineering. The composite is an artificial bone material with an apatite-forming ability for the bone repair process. Rabbit bone samples were tested with an implanted bioactive material for a period of several months. Using spectroscopic and chemometric methods, we were able to determine the presence of amides and phosphates and the distribution of lipid-rich domains in the bone tissue, providing an assessment of the composite's bioactivity. Samples were also imaged in transmission using an infrared microscope combined with a focal plane array detector. CaF2 lenses were also used on the infrared microscope to improve spectral quality by reducing scattering artefacts, improving chemometric analysis. The presence of collagen and lipids at the bone/composite interface confirmed biocompatibility and demonstrate the suitability of FTIR microscopic imaging with lenses in studying these samples. It confirmed that the composite is a very good background for collagen growth and increases collagen maturity with the time of the bone growth process. The results indicate the bioactive and biocompatible properties of this composite and demonstrate how Raman and FTIR spectroscopic imaging have been used as an effective tool for tissue characterisation.
机译:FTIR成像和拉曼作图的光谱方法被用于表征为骨组织工程开发的新型碳羟基磷灰石/β-葡聚糖复合材料。该复合材料是具有用于骨修复过程的磷灰石形成能力的人造骨材料。用植入的生物活性材料对兔骨样品进行了几个月的测试。使用光谱学和化学计量学方法,我们能够确定酰胺和磷酸盐的存在以及富含脂质的结构域在骨组织中的分布,从而提供了复合材料生物活性的评估。还使用红外显微镜结合焦平面阵列检测器对样品进行透射成像。 CaF2透镜还用于红外显微镜,以通过减少散射伪像,改善化学计量分析来改善光谱质量。骨/复合物界面处胶原蛋白和脂质的存在证实了生物相容性,并证明了在研究这些样品时用透镜进行FTIR显微成像的适用性。它证实了该复合物是胶原蛋白生长的很好的背景,并且随着骨生长过程的时间增加了胶原蛋白的成熟度。结果表明该复合材料的生物活性和生物相容性,并证明拉曼光谱和FTIR光谱成像已被用作组织表征的有效工具。

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