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首页> 外文期刊>Journal of Materials Science >Preparation, characterization, and in vitro evaluation of nanostructured chitosan/apatite and chitosan/Si-doped apatite composites
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Preparation, characterization, and in vitro evaluation of nanostructured chitosan/apatite and chitosan/Si-doped apatite composites

机译:纳米结构壳聚糖/磷灰石和壳聚糖/硅掺杂磷灰石复合材料的制备,表征和体外评价

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Chitosan/apatite (CHI/Ap) composites are attracting great attention as biomaterials for bone repair and regeneration procedures. The reason is their unique set of properties: bioactivity and osteoconductivity provided by Ap and resorbability supplied by CHI among others. Thus, in this study, CHI/Ap and CHI/Si-doped Ap composites were prepared and characterized. Particle size, surface area, in vitro physiological stability, enzymatic biodegradation, and bioactivity were evaluated. Unimodal particle size distribution was obtained for composites with high CHI/Ap ratios while bimodal distribution was present in composites with low CHI/Ap ratio. Physiological stability decreased with Si doping and with the CHI content. Acetylation degree and molecular weight of CHI did not affect in vitro stability. Rate of enzymatic degradation increased with the CHI content in composites. Si-doped Ap composites also showed increased degradation with respect to non-doped ones. The bioactivity of the composites was evidenced by the deposition on their surface of a calcium phosphate layer with Ap morphology after immersion in simulated body fluid. Both, biodegradation and bioactivity were dependent on the molecular weight of the polymeric CHI matrix. These results suggest that the CHI/Ap composites obtained are promising materials for bone regeneration applications.
机译:壳聚糖/磷灰石(CHI / Ap)复合材料作为用于骨骼修复和再生程序的生物材料引起了广泛关注。原因是它们具有独特的性能:Ap提供的生物活性和骨传导性以及CHI提供的可吸收性。因此,在这项研究中,制备并表征了CHI / Ap和CHI / Si掺杂的Ap复合材料。评价了粒径,表面积,体外生理稳定性,酶促生物降解和生物活性。对于高CHI / Ap比的复合材料,获得了单峰粒度分布,而对于低CHI / Ap比的复合材料,则存在双峰分布。硅掺杂和CHI含量降低了生理稳定性。 CHI的乙酰化程度和分子量不影响其体外稳定性。酶降解速率随复合材料中CHI含量的增加而增加。硅掺杂的Ap复合材料相对于非掺杂的复合材料,其降解也有所增加。浸入模拟体液后,复合材料的生物活性由具有Ap形态的磷酸钙层表面沉积所证实。生物降解性和生物活性均取决于聚合物CHI基质的分子量。这些结果表明,获得的CHI / Ap复合材料是用于骨再生应用的有前途的材料。

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