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Controlled SrR Delivery by the Incorporation of Mg Particles on Biodegradable PLA-Based Composites

机译:通过在可生物降解的PLA基复合材料上掺入Mg颗粒来控制SRR递送

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摘要

Among several ions playing a vital role in the body, Sr2+ and Mg2+ are involved in the mechanism of bone formation, making them especially useful for bone tissue engineering applications. Recently, polylactic acid (PLA)/Mg composites have emerged as a promising family of biomaterials due to their inherent biocompatibility and biodegradability properties. In these composites, polymer and bio-metal have a synergetic effect—while the PLA inhibits the Mg fast reactivity, Mg provides bioactivity to the inert polymer buffering the medium pH during degradation. Meanwhile, the typical form of administrating Sr2+ to patients is through the medication strontium ranelate (SrR), which increases the bone mineral density. Following this interesting research line, a new group of composites, which integrates Mg particles and SrR charged onto halloysite nanotubes (HNT) in a polymeric matrix, was proposed. PLA/Mg/SrR–HNT composites have been processed following a colloidal route, obtaining homogenous composites granulated and film-shaped. The drug delivery profile was evaluated in terms of in vitro lixiviation/dissolution paying special attention to the synergism of both ions release. The combination of two of the most reported ions involved in bone regeneration in the composite biomaterial may generate extra interest in bone healing applications.
机译:在几种离子打在身上了至关重要的作用,SR2 +和Mg2 +参与骨形成机制,使之成为骨组织工程应用特别有用。最近,聚乳酸(PLA)/ Mg复合材料已成为生物材料的有前途的家人由于其固有的生物相容性和生物降解性。在这些复合材料,聚合物和生物金属具有协同作用,而PLA抑制Mg的快速反应性,镁提供生物活性的惰性聚合物降解期间缓冲介质的pH值。同时,施用的Sr 2+的患者的典型形式是通过药物的雷奈酸锶(SRR),这增加了骨矿物质密度。根据这一有趣的研究路线,一组新的复合材料,它集成了镁粒子和带电SRR到在聚合物基体高岭土纳米管(HNT),提出了。 PLA /镁/ SRR-HNT复合材料已经被处理以下的胶体路线,从而获得均匀的复合材料造粒和薄膜状。药物递送分布在体外浸提/溶解要特别注意两种离子释放的协同作用来评价。两个在复合生物材料参与骨再生的报道最多的离子的组合可产生骨愈合应用额外的利益。

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