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Functionalized mesoporous bioactive glass scaffolds for enhanced bone tissue regeneration

机译:用于增强骨组织再生的官能化介孔生物活性玻璃支架

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Mesoporous bioactive glass (MBG), which possesses excellent bioactivity, biocompatibility and osteoconductivity, has played an important role in bone tissue regeneration. However, it is difficult to prepare MBG scaffolds with high compressive strength for applications in bone regeneration; this difficulty has greatly hindered its development and use. To solve this problem, a simple powder processing technique has been successfully developed to fabricate a novel type of MBG scaffold (MBGS). Furthermore, amino or carboxylic groups could be successfully grafted onto MBGSs (denoted as N-MBGS and C-MBGS, respectively) through a post-grafting process. It was revealed that both MBGS and the functionalized MBGSs could significantly promote the proliferation and osteogenic differentiation of bMSCs. Due to its positively charged surface, N-MBGS presented the highest in vitro osteogenic capability of the three samples. Moreover, in vivo testing results demonstrated that N-MBGS could promote higher levels of bone regeneration compared with MBGS and C-MBGS. In addition to its surface characteristics, it is believed that the decreased degradation rate of N-MBGS plays a vital role in promoting bone regeneration. These findings indicate that MBGSs are promising materials with potential practical applications in bone regeneration, which can be successfully fabricated by combining a powder processing technique and post-grafting process.
机译:具有优异的生物活性,生物相容性和骨导电性的中孔生物活性玻璃(MBG)在骨组织再生中发挥着重要作用。然而,难以制备具有高抗压强度的MBG支架,用于骨再生中的应用;这种困难极大地阻碍了其开发和使用。为了解决这个问题,已经成功开发了一种简单的粉末加工技术以制造一种新型的MBG支架(MBG)。此外,可以通过接枝过程将氨基或羧基分别成功接枝到MBGS上(分别表示为N-MBG和C-MBGS)。据透露,MBG和官能化的MBGSs都可以显着促进BMSC的增殖和骨质发生分化。由于其带正电荷的表面,N-MBG呈现了三个样品的最高体外成骨能力。此外,体内测试结果表明,与MBGS和C-MBGs相比,N-MBG可以促进较高水平的骨再生。除了其表面特征外,据信N-MBG的降解率降低在促进骨再生方面发挥着至关重要的作用。这些发现表明,MBGSS是具有潜在实际应用在骨再生中的有前途的材料,其可以通过组合粉末加工技术和后嫁接过程来成功制造。

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