Ferrández-Montero Ana, Eguiluz Alvaro, Vazquez Elena, Guerrero Joab David, Gonzalez Zoilo, Sanchez-Herencia Antonio Javier, Ferrari Begoña
Institute of Ceramic and Glass (ICV), Spanish National Research Council (CSIC), 28049 Madrid, Spain.
Laboratory of Physicochemistry of Polymers and Interfaces (LPPI), CY Cergy Paris University, Neuville-sur-Oise, 95031 Cergy, France.
Polymers (Basel). 2021 Mar 28;13(7):1061. doi: 10.3390/polym13071061.
Among several ions playing a vital role in the body, Sr and Mg 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 Sr 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.
在对人体起着至关重要作用的几种离子中,锶(Sr)和镁(Mg)参与了骨形成机制,这使得它们在骨组织工程应用中格外有用。最近,聚乳酸(PLA)/镁复合材料因其固有的生物相容性和生物降解性而成为一类很有前景的生物材料。在这些复合材料中,聚合物和生物金属具有协同效应——PLA抑制镁的快速反应性,而镁为惰性聚合物提供生物活性,在降解过程中缓冲介质pH值。同时,给患者施用锶的典型形式是通过药物雷奈酸锶(SrR),它能增加骨矿物质密度。沿着这条有趣的研究路线,提出了一组新型复合材料,即在聚合物基体中整合负载在埃洛石纳米管(HNT)上的镁颗粒和SrR。PLA/Mg/SrR-HNT复合材料已通过胶体路线制备而成,得到了颗粒状和薄膜状的均匀复合材料。从体外浸出/溶解方面评估了药物释放情况,并特别关注了两种离子释放的协同作用。复合生物材料中两种最常被报道的参与骨再生的离子的组合,可能会在骨愈合应用中引发更多关注。