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首页> 外文期刊>Acta biomaterialia >Copper-doped mesoporous silica nanospheres, a promising immunomodulatory agent for inducing osteogenesis
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Copper-doped mesoporous silica nanospheres, a promising immunomodulatory agent for inducing osteogenesis

机译:铜掺杂的介孔二氧化硅纳米球,一种诱导成骨的有前途的免疫调节剂

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The application of mesoporous silica nanospheres (MSNs) loaded with drugs/growth factors to induce osteogenic differentiation of stem cells has been trialed by a number of researchers recently. However, limitations such as high cost, complex fabrication and unintended side effects from supraphysiological concentrations of the drugs/growth factors represent major obstacles to any potential clinical application in the near term. In this study we reported an in situ one-pot synthesis strategy of MSNs doped with hypoxia-inducing copper ions and systematically evaluated the nanospheres by in vitro biological assessments. The Cu-containing mesoporous silica nanospheres (Cu-MSNs) had uniform spherical morphology (similar to 100 nm), ordered mesoporous channels (similar to 2 nm) and homogeneous Cu distribution. Cu-MSNs demonstrated sustained release of both silicon (Si) and Cu ions and controlled degradability. The Cu-MSNs were phagocytized by immune cells and appeared to modulate a favorable immune environment by initiating proper pro-inflammatory cytokines, inducing osteogenic/angiogenic factors and suppressing osteoclastogenic factors by the immune cells. The immune microenvironment induced by the Cu-MSNs led to robust osteogenic differentiation of bone mesenchymal stem cells (BMSCs) via the activation of Oncostation M (OSM) pathway. These results suggest that the novel Cu-MSNs could be used as an immunomodulatory agent with osteostimulatory capacity for bone regeneration/therapy application.
机译:最近,许多研究人员已尝试将载有药物/生长因子的中孔二氧化硅纳米球(MSN)诱导干细胞成骨分化。然而,诸如药物/生长因子的超生理学浓度的高成本,复杂的制造和意想不到的副作用等限制代表了短期内任何潜在临床应用的主要障碍。在这项研究中,我们报道了原位一锅合成的MSNs掺杂缺氧诱导铜离子的策略,并通过体外生物学评估系统地评估了纳米球。含铜的介孔二氧化硅纳米球(Cu-MSNs)具有均匀的球形形态(类似于100 nm),有序的介孔通道(类似于2 nm)和均匀的Cu分布。 Cu-MSNs证明了硅(Si)和Cu离子的持续释放以及可控的降解性。 Cu-MSNs被免疫细胞吞噬,并似乎通过启动适当的促炎细胞因子,诱导成骨/血管生成因子和抑制破骨细胞生成因子来调节良好的免疫环境。 Cu-MSNs诱导的免疫微环境通过激活Oncostation M(OSM)途径导致了骨间充质干细胞(BMSC)的强大成骨分化。这些结果表明,新型Cu-MSNs可以用作具有骨刺激能力的免疫调节剂,用于骨再生/治疗应用。

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