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New approach in evaluation of ceramic-polymer composite bioactivity and biocompatibility

机译:评估陶瓷-聚合物复合材料生物活性和生物相容性的新方法

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摘要

Regeneration of bone defects was promoted by a novel β-glucan/carbonate hydroxyapatite composite and characterized by Raman spectroscopy, microCT and electron microscopy. The elastic biomaterial with an apatite-forming ability was developed for bone tissue engineering and implanted into the critical-size defects of rabbits’ tibiae. The bone repair process was analyzed on non-decalcified bone/implant sections during a 6-month regeneration period. Using spectroscopic methods, we were able to determine the presence of amides, lipids and assign the areas of newly formed bone tissue. Raman spectroscopy was also used to assess the chemical changes in the composite before and after the implantation process. SEM analyses showed the mineralization degree in the defect area and that the gap size decreased significantly. Microscopic images revealed that the implant debris were interconnected to the poorly mineralized inner side of a new bone tissue. Our study demonstrated that the composite may serve as a biocompatible background for collagen ingrowth and exhibits the advantages of applying Raman spectroscopy, SEM and microCT in studying these samples.Electronic supplementary materialThe online version of this article (doi:10.1007/s00216-017-0518-0) contains supplementary material, which is available to authorized users.
机译:新型β-葡聚糖/碳酸羟基磷灰石复合材料促进了骨缺损的再生,并通过拉曼光谱,microCT和电子显微镜对其进行了表征。具有磷灰石形成能力的弹性生物材料被开发用于骨组织工程,并被植入到兔子胫骨的临界尺寸缺损中。在6个月的再生期内,对未脱钙的骨/植入物切片进行了骨修复过程分析。使用光谱方法,我们能够确定酰胺,脂质的存在并确定新形成的骨组织的区域。拉曼光谱法还用于评估植入过程前后复合材料中的化学变化。扫描电镜分析显示缺陷区的矿化度,间隙尺寸明显减小。显微图像显示,植入物碎片与新骨组织的矿化程度较弱的内侧相互连接。我们的研究表明,该复合材料可作为胶原蛋白向内生长的生物相容性背景,并显示出在研究这些样品中应用拉曼光谱,SEM和microCT的优势。电子补充材料本文的在线版本(doi:10.1007 / s00216-017-0518) -0)包含补充材料,授权用户可以使用。

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