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Effect of surfactant concentration on textural characteristics and biomineralization behavior of mesoporous bioactive glasses

机译:表面活性剂浓度对介孔生物活性玻璃质地特征和生物矿化行为的影响

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We report mesoporous bioactive glasses (MBGs) with different pore architecture synthesized using the supra-molecular chemical approach using acid assisted sol-gel method followed by evaporation induced self-assembly (EISA) process. The surfactant of non-ionic block co-polymer used in the present work act as structure directing agent (SDA) with varying amount, which brings different textural properties. As prepared glasses possess wormhole-like mesostructure with different textural characteristics and it varies with surfactant concentrations. The pristine MBGs have been characterized by various analytical techniques before and after immersing in simulated body fluid (SBF). The textural properties show non-monotonous variations with varying the surfactant concentrations. We have quantified the various structural species present in the glass sample by using local structural probe such as nuclear magnetic resonance technique. Invitro studies on the MBGs revealed the influence of textural characteristics on the formation of nano-crystalline hydroxycarbonated apatite (HCA) layer. The biodegradability is largely related to the pore architecture and it affects the biocompatibility as well as bone formation. In-vitro studies reveals that there are serious negative effects that have been observed in the case of larger pore sized samples due to rapid degradation. We found that MBG with pore sizes of few nano meters exhibit favorable biocompatibility in vitro behavior and found to be promising candidate in the field of bio-materials including tissue regeneration and drug storage.
机译:我们报告了具有不同孔结构的介孔生物活性玻璃(MBGs),使用超分子化学方法使用酸辅助溶胶-凝胶法合成,然后进行蒸发诱导自组装(EISA)工艺合成。在本工作中使用的非离子嵌段共聚物的表面活性剂以不同的量充当结构导向剂(SDA),这带来了不同的质地特性。制备的玻璃具有像虫洞一样的介孔结构,具有不同的纹理特征,并且随表面活性剂的浓度而变化。原始MBG在浸入模拟体液(SBF)之前和之后已通过各种分析技术进行了表征。织构性质显示出随着表面活性剂浓度的变化非单调变化。我们已经通过使用局部结构探针(例如核磁共振技术)对玻璃样品中存在的各种结构物种进行了量化。对MBGs的体外研究揭示了纹理特征对纳米晶羟基碳酸磷灰石(HCA)层形成的影响。可生物降解性在很大程度上与孔的结构有关,它会影响生物相容性以及骨骼的形成。体外研究表明,由于快速降解,在较大孔径的样品中观察到了严重的负面影响。我们发现孔径为几纳米的MBG在体外表现出良好的生物相容性,并被发现是包括组织再生和药物存储在内的生物材料领域的有希望的候选者。

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