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Compressive Strength Enhancement of Carbon Nanotube Reinforced 13-93B1 Bioactive Glass Scaffolds

机译:碳纳米管的抗压强度增强13-93B1生物活性玻璃支架

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45S5 Bioglass (R) has been used quite extensively in the form of particulate as synthetic bone graft. However, 45S5 glass has certain limitations such as difficulty in sintering and slow and partial conversion to hydroxy carbonated apatite. In pursuit of overcoming these limitations, bioactive glasses (13-93B1) containing increased amount of B2O3 by partial replacement of SiO2 have been prepared using sol-gel technique in this study. Since bioactive glasses are brittle in nature, therefore, they are unsuitable for load bearing sites. Consequently, 3D porous scaffolds by reinforcement with varying weight percent of carbon nanotubes (CNTs) have been fabricated in this work by physical mixing and polymer foam replication technique. Compared with pure 13-93B1 bioactive glasses, addition of 0.2 weight percent of CNT resulted in maximum increase in compressive strength from 1.80 MPa to 5.84 MPa (a 224% increase) and elastic modulus from 102 MPa to 269.4 MPa (a 164% increase), respectively. Bioactivity of these scaffolds was confirmed in vitro using simulated body fluid test for 28 days. The compressive strength post-SBF studies were within the range of compressive strength of trabecular bone. These results show potential of fabricating a 3D porous scaffold with sufficient strength and biocompatibility using CNT-1393B1 bioactive glasses.
机译:45S5生物胶(R)以颗粒形式广泛使用,作为合成骨移植物。然而,45s5玻璃具有一定的限制,例如烧结难以烧结和缓慢和部分转化为羟基碳酸化磷灰石。为了克服这些限制,通过本研究中的溶胶 - 凝胶技术制备了通过部分替代SiO 2含有增加量的B2O3的生物活性玻璃(13-93b1)。由于生物活性玻璃本质上是脆性的,因此它们不适合承载位点。因此,通过具有不同重量百分比的碳纳米管(CNT)的3D多孔支架已经通过物理混合和聚合物泡沫复制技术在该工作中制造了碳纳米管(CNT)。与纯13-93b1生物活性玻璃相比,加入0.2重量%的CNT,导致压缩强度的最大增加从1.80MPa到5.84MPa(增加224%增加)和从102MPa到269.4MPa的弹性模量(增加164%) , 分别。使用模拟体液测试在体外确认这些支架的生物活性28天。后SBF研究的抗压强度在沟细胞骨的抗压强度范围内。这些结果表明,使用CNT-1393B1生物活性玻璃具有足够的强度和生物相容性的制造3D多孔支架的潜力。

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