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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >Preparation and in vivo biocompatibility studies of different mesoporous bioactive glasses
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Preparation and in vivo biocompatibility studies of different mesoporous bioactive glasses

机译:不同介孔生物活性玻璃的制备及体内生物相容性研究

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A new generation of nanostructured glasses called mesoporous bioactive glasses (MBGs) exhibit superior surface texture, porosity and bioactive characteristics. The present study is carried out to develop and detailed characterize of ternary SiO2-CaO-P2O5MBG structure, fabricated by three different variations using different surfactants, e.g., hexadecyltrimethylammonium bromide (CTAB), poly-ethylene glycol,(PEG) and Pluronic P123. After thorough physico-chemical characterization, MBG granules were investigated for in vivo bone regeneration in animal bone defect model (rabbit) where standard S53P4 bioactive glass was used as control. All the synthesized MBG powders showed nano-range median particle size of 80–120?nm (MBG-CTAB), 50–70?nm (MBG-PEG and MBG-P123) while their specific surface area as 473.2, 52.2 and 169.3?m2/g respectively. All MBGs showed mesoporous nature corroborating transmission electron microscopy (TEM) observation as well. Bone regeneration property was measured after 45 and 90 days post-implantation at distal epiphysis of rabbit femur by radiography, histology, fluorochrome labeling, micro computed tomography (micro-CT) and vital organ histology. Results from in vivo studies indicated that the MBG materials produce minimal toxicity to the body. Furthermore, the biocompatibility and biodegradability of the implant makes them more suitable for application in bone tissue engineering. Among various implants, MBG fabricated using suitable surfactant (CTAB) shown the best result compared to other implants. Nonetheless, all the materials are suitable for application in bone tissue engineering and have potential for bone regeneration and healing.
机译:新一代称为中孔生物活性玻璃(MBG)的纳米结构玻璃表现出优异的表面纹理,孔隙率和生物活性特性。进行本研究以开发和详细表征三元SiO2-CaO-P2O5MBG结构,其使用不同表面活性剂的三种不同变化制造,例如十六烷基三甲基溴化铵(CTAB),聚乙二醇,(PEG)和Pluronic P123。在彻底的物理化学表征后,研究了MBG颗粒,用于动物骨缺损模型(兔子)中的体内骨再生,其中标准S53P4生物活性玻璃用作对照。所有合成的MBG粉末显示纳米范围中值中值粒径为80-120·NM(MBG-CTAB),50-70·NM(MBG-PEG和MBG-P123),而其比表面积为473.2,52.2和169.3?分别为m2 / g。所有MBG都显示出介孔的性质证实透射电子显微镜(TEM)观察。在植入后45至90天后通过射线照相,组织学,荧光染料标记,微计算机断层扫描(MICRO-CT)和重要器官组织学,在植入兔股骨的远端骨骺后植入后45至90天后测量骨再生性能。来自体内研究的结果表明,MBG材料对身体产生了最小的毒性。此外,植入物的生物相容性和生物降解性使其更适合于在骨组织工程中的应用。在各种植入物中,使用合适的表面活性剂(CTAB)制造的MBG显示与其他植入物相比最好的结果。尽管如此,所有材料都适用于骨组织工程中的应用,并具有骨再生和愈合的潜力。

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