首页> 外文期刊>Journal of biomedical materials research, Part A >Novel hydroxyapatite/carboxymethylchitosan composite scaffolds prepared through an innovative 'autocatalytic' electroless coprecipitation route.
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Novel hydroxyapatite/carboxymethylchitosan composite scaffolds prepared through an innovative 'autocatalytic' electroless coprecipitation route.

机译:通过创新的“自催化”化学共沉淀途径制备的新型羟基磷灰石/羧甲基壳聚糖复合支架。

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摘要

A developmental composite scaffold for bone tissue engineering applications composed of hydroxyapatite (HA) and carboxymethylchitosan (CMC) was obtained using a coprecipitation method, which is based on the "autocatalytic" electroless deposition route. The results revealed that the pores of the scaffold were regular, interconnected, and possess a size in the range of 20-500 microm. Furthermore, the Fourier transform infra-red spectrum of the composite scaffolds exhibited all the characteristic peaks of apatite, and the appearance of typical bands from CMC, thus showing that coprecipitation of both organic and inorganic phases was effective. The X-ray diffraction pattern of composite scaffolds demonstrated that calcium-phosphates consisted of crystalline HA. From microcomputed tomography analysis, it was possible to determine that composite scaffolds possess a 58.9% +/- 6% of porosity. The 2D morphometric analysis demonstrated that on average the scaffolds consisted of 24% HA and 76% CMC. The mechanicalproperties were assessed using compressive tests, both in dry and wet states. Additionally, in vitro tests were carried out to evaluate the water-uptake capability, weight loss, and bioactive behavior of the composite scaffolds. The novel hydroxyapatite/carboxymethylchitosan composite scaffolds showed promise whenever degradability and bioactivity are simultaneously desired, as in the case of bone tissue-engineering scaffolding applications.
机译:使用基于“自动催化”化学沉积路线的共沉淀方法,获得了由羟基磷灰石(HA)和羧甲基壳聚糖(CMC)组成的用于骨组织工程应用的发展性复合支架。结果表明,支架的孔是规则的,相互连接的,并且具有在20-500微米范围内的尺寸。此外,复合支架的傅立叶变换红外光谱显示了磷灰石的所有特征峰,并且出现了来自CMC的典型谱带,因此表明有机相和无机相的共沉淀都是有效的。复合支架的X射线衍射图表明磷酸钙由结晶HA组成。通过微计算机断层扫描分析,可以确定复合支架的孔隙率为58.9%+/- 6%。二维形态分析表明,支架平均包括24%的HA和76%的CMC。在干态和湿态下均使用压缩试验评估了力学性能。另外,进行了体外测试以评估复合支架的吸水能力,重量减轻和生物活性行为。新颖的羟基磷灰石/羧甲基壳聚糖复合支架在有可降解性和生物活性同时需要的情况下显示出希望,例如在骨组织工程支架应用中。

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