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首页> 外文期刊>Materials science & engineering >Scavenging free radicals and soaring osteoinduction by extra cellular matrix protein-based nanocomposites on degenerative bone treatments
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Scavenging free radicals and soaring osteoinduction by extra cellular matrix protein-based nanocomposites on degenerative bone treatments

机译:额外的基于细胞基质蛋白的纳米复合材料在退化性骨治疗中清除自由基并促进骨诱导

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A number of materials are now available to alleviate the ever-growing bone disruption. However, these are inadequate and inappropriate for addressing issues associated natural process of aging and degeneration of bone due to diseases. This study advances the existing material and offers more privileged and synergistically active remedy for these conditions. Here, they are three different nano-composites prepared such as nano-TiO_2 with chitosan (TC), nano-TiO_2 with chondroitin 4-sulfate (TG), and nano-TiO_2 with chitosan and chondroitin 4-sulfate (TCG), whereas nano-TiO_2 act as a control. The prepared nanocomposite was studied for determining its bactericidal and fungicidal activity by using disk diffusion method. In addition, the osteoinductive, free radical forming, and scavenging abilities of the nanocomposite treated MG-63 cell lines were analyzed using gene expression and biochemical analysis respectively. The augmented fungicidal (~16 mm) activities of TCG against bone-infecting pathogens can be effectively used in bone transplantation application. The expression of osteoblast-inducing genes in MG-63 cell line and their up-regulation in nanocomposite treatment, especially in TCG, made this material more desirable. The formation of free radicals such as thiobarbituric acid reactive substance and nitric oxide gradually reduced with the treatment of nanocomposites than control and nano-TiO_2. Contrarily, it was found that MG-63 along with nanocomposites statistically increases the production of ALP, antioxidant enzymes (super oxide mutase) and total antioxidant activity (ferric reducing antioxidant power) in several folds compare with the control and nano-TiO_2. All the results with statistical scale suggest TCG as an effectual and affordable biomaterial in bone regeneration therapy among the prepared samples.
机译:现在有许多材料可以缓解不断增长的骨破坏。但是,这些不足以解决与疾病引起的自然衰老和骨骼退化的自然过程相关的问题。这项研究改进了现有材料,并为这些情况提供了更多特权和协同作用的补救措施。在这里,它们是三种不同的纳米复合材料,例如带有壳聚糖(TC)的nano-TiO_2,带有4-硫酸软骨素(TG)的nano-TiO_2和带有壳聚糖和4-硫酸软骨素(TCG)的nano-TiO_2。 -TiO_2充当对照。用圆盘扩散法研究了所制备的纳米复合材料的杀菌活性。另外,分别使用基因表达和生化分析来分析纳米复合物处理的MG-63细胞系的骨诱导,自由基形成和清除能力。 TCG对骨感染病原体的杀菌作用增强(〜16 mm),可有效用于骨移植。 MG-63细胞系中成骨细胞诱导基因的表达及其在纳米复合材料处理中的上调,特别是在TCG中,使这种材料更加理想。与对照和纳米TiO_2相比,通过纳米复合物的处理,诸如硫代巴比妥酸反应性物质和一氧化氮等自由基的形成逐渐减少。相反,发现MG-63与纳米复合材料相比,与对照和纳米TiO_2相比,在统计学上增加了ALP的产生,抗氧化酶(超氧化物歧化酶)和总抗氧化活性(铁的抗氧化能力)。所有具有统计规模的结果均表明,TCG是制备的样本中骨再生治疗中一种有效且价格合理的生物材料。

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