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Hydroxyapatite based biocomposite scaffold: A highly biocompatible material for bone regeneration

机译:基于羟基磷灰石的生物复合支架:一种高度生物相容性的骨再生材料

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The conventional approaches for treating bone defects such as autografts donor tissue shortages and allografts transmission of diseases pose many shortcomings. The objective of this study was to design a nano strontium/magnesium doped hydroxyapatite (Sr/Mg-HA) with chitosan (CTS) and multi-walled carbon nanotubes (MWCNT) (Sr/Mg-HA/MWCNT/CTS) biocomposite was created to support the growth of osteoblasts using a solvent evaporation method. To help the growth of osteoblasts, a solvent evaporation technique was used to design a nano strontium/magnesium doped hydroxyapatite with chitosan and multi-walled carbon nanotubes biocomposite. We studied the biocompatibility and efficiency?in vitro?of biocomposite following physicochemical analyzes. Tests of biocompatibility, cell proliferation, mineralization, and osteogenic differentiation have shown that?in-vitro?safety and effectiveness of biocomposite are good. The performance of biocomposite was more efficient in?in-vitro?as well as?in vivo?experiments than in Sr/Mg-HA nanoparticles. Briefly, the Sr/Mg-HA/MWCNT/CTS biocomposite is an ideal candidate for effective bone repair in clinics with excellent mechanical properties with durable multi-biofunctional antibacterial properties and osteoinductivity.
机译:治疗诸如自体移植供体组织短缺和同种异体移植的疾病的骨缺损的常规方法造成许多缺点。本研究的目的是设计纳米锶/镁掺杂羟基磷灰石(SR / Mg-HA),用壳聚糖(CTS)和多壁碳纳米管(MWCNT)(MWCNT)(SR / Mg-HA / MWCNT / CTS)生物复合物进行了生物复合材料使用溶剂蒸发方法支持成骨细胞的生长。为了帮助成骨细胞的生长,使用溶剂蒸发技术用壳聚糖和多壁碳纳米管生物复合设计纳米锶/镁掺杂羟基磷灰石。我们研究了生物相容性和效率?体外α在物理化学分析后生物复合材料。生物相容性,细胞增殖,矿化和成骨分化的试验表明,体外α,生物复合材料的安全性和有效性良好。生物复合材料的性能在体外更有效?以及α在体内?实验比在Sr / mg-ha纳米粒子中。简而言之,SR / Mg-HA / MWCNT / CTS生物复合材料是具有耐用多生物功能抗菌性能和骨诱导性的优异机械性能的临床骨骼修复的理想候选者。

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