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In vitro characterization of novel nanostructured collagen-hydroxyapatite composite scaffolds doped with magnesium with improved biodegradation rate for hard tissue regeneration

机译:具有镁的新型纳米结构胶原磷灰石复合支架的体外表征,具有改善的硬组织再生生物降解率

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New materials are required for bone healing in regenerative medicine able to temporarily substitute damaged bone and to be subsequently resorbed and replaced by endogenous tissues. Taking inspiration from basic composition of the mammalian bones, composed of collagen, apatite and a number of substitution ions, among them magnesium (Mg 2 ), in this work, novel composite scaffolds composed of collagen(10%)-hydroxyapatite (HAp)(90%) and collagen(10%)-HAp(80%)-Mg(10%) were developed. The lyophilization was used for composites preparation. An insight into the nanostructural nature of the developed scaffolds was performed by Scanning Electron Microscopy coupled with Energy Dispersive X-Ray and Transmission Electron Microscopy coupled with Energy Dispersive X-Ray. The HAp nanocrystallite clusters and Mg nanoparticles were homogeneously distributed within the scaffolds and adherent to the collagen fibrils. The samples were tested for degradation in Simulated Body Fluid (SBF) solution by soaking for up to 28 days. The release of Mg from collagen(10%)-HAp(80%)-Mg(10%) composite during the period of up to 21 days was attested, this composite being characterized by a decreased degradation rate with respect to the composite without Mg. The developed composite materials are promising for applications as bone substitute materials favouring bone healing and regeneration.
机译:再生药物中骨愈合需要新材料,能够暂时替代受损骨骼,随后被内源组织复合并替换。从哺乳动物骨骼的基本组成中,由胶原蛋白,磷灰石和许多替代离子组成,其中镁(Mg 2)组成,在这项工作中,由胶原(10%) - 羟基磷灰石(HAP)组成的新型复合支架(发育了90%)和胶原(10%) - HAP(80%) - Mg(10%)。冻干化用于复合材料制剂。通过将电子显微镜与能量分散X射线和透射电子显微镜耦合,与能量分散X射线耦合的电子显微镜进行了进入显影支架的纳米结构性质的洞察。 HAP纳米晶体簇和Mg纳米颗粒在支架内均匀分布并粘附到胶原型原纤维中。通过浸泡最多28天,测试样品以降解模拟体液(SBF)溶液。在最多21天期间,胶原蛋白(10%) - Hap(80%) - Mg(10%)复合材料的Mg释放,该复合材料表征在没有MG的情况下降低降解速率降低。开发的复合材料是对骨替代材料的应用,优先替代骨愈合和再生。

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