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A novel vehicle-like drug delivery 3D printing scaffold and its applications for a rat femoral bone repairing in vitro and in vivo

机译:一种新型车辆样药物递送3D印刷支架及其在体外和体内修复大鼠股骨骨的应用

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The high surface area ratio and special structure of mesoporous bioactive glass (MBG) endow it with excellent physical adsorption of various drugs without destroying the chemical activity. Silicate 1393 bioactive glass (1393) is famous for its fantastic biodegradability and osteogenesis. Herein, we have built a novel vehicle-like drug delivery 3D printing scaffold with multiplexed drug delivery capacity by coating MBG on the surface of 1393 (1393@MBG). Furthermore, we have applied DEX and BMP-2 on the 1393@MBG scaffold to endow it with antibacterial and osteogenic properties. Results indicated that this 1393@MBG scaffold could effectively load and controlled release BMP-2, DNA and DEX, which can be applied for orthopedic treatment. The in vitro study showed that the DEX loaded 1393@MBG exhibited excellent antibacterial ability, which was evaluated by Staphylococcus aureus (S. aureus), and the BMP-2 loaded 1393@MBG can improve the alkaline phosphatase (ALP) activity and upregulate the expression of osteogenesis-related genes (OCN and RUNX2) of human bone mesenchymal stem cells (hBMSCs). Moreover, the in vivo study further confirmed that the BMP-2 loaded 1393@MBG group showed better osteogenic capacity as compared to that of the 1393 group in a rat femoral defect. Together, these results suggested that the vehicle-like drug delivery 3D printing scaffold 1393@MBG could be a promising candidate for bone repair and relative bone disease treatment.? The author(s).
机译:中孔生物活性玻璃(MBG)的高表面积比和特殊结构赋予各种药物的优异物理吸附而不破坏化学活性。硅酸盐1393生物活性玻璃(1393)以其奇妙的生物降解性和骨质发生而闻名。在此,我们通过在1393(1393mbg)的表面上涂覆MBG,构建了一种具有多路复用药物输送能力的新型车辆样药物递送3D印刷支架。此外,我们在1393 @ MBG支架上施用了DEX和BMP-2,以赋予抗菌和成骨特性。结果表明,该1393 @ MBG支架可以有效地载有载荷和控制的释放BMP-2,DNA和DEX,其可用于整形外科治疗。体外研究表明,DEX加载的1393 @ MBG表现出优异的抗菌能力,其通过金黄色葡萄球菌(Aureus)评估,并且BMP-2负载1393mMG可以改善碱性磷酸酶(ALP)活性并上调人骨间充质干细胞(HBMSCs)对骨发生相关基因(OCN和RUNX2)的表达。此外,在体内研究进一步证实,与大鼠股骨缺陷中的1393组相比,BMP-2负载1393×/ MBG组显示出更好的骨质骨质能力。这些结果表明,车辆样药物递送3D印刷脚手架1393 @ MBG可能是骨修复和相对骨病治疗的有希望的候选者。作者。

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