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首页> 外文期刊>CERAMICS INTERNATIONAL >Preparation of novel porous calcium silicate scaffold loaded by celecoxib drug using freeze drying technique: Fabrication, characterization and simulation
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Preparation of novel porous calcium silicate scaffold loaded by celecoxib drug using freeze drying technique: Fabrication, characterization and simulation

机译:使用冷冻干燥技术的Celecoxib药物制备由Celecoxib药物负载的新型多孔钙硅酸钙支架:制造,表征和仿真

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摘要

In the current investigation, the microarchitecture of bio-nanocomposite scaffold, which is fabricated by natural synthetic diopside and composed of magnetite nanoparticles (MNPs), is considered. The MNPs are tested with various weight fractions (0, 5, 10, and 15 wt%) and are manufactured by the freeze-drying technique using sodium alginate as base matrix for the first time. Due to the limitation of the mechanical properties of calcium phosphates (CaPs) and bioactive glasses (BG), clinical usage of calcium silicate ceramics (CSC) are greatly affected. Therefore, CSCs are produced with the incorporation of metal oxides into the base binary xCaO-ySiO(2), as well as the substitution of calcium ions. Furthermore, mechanical and biological properties of CSCs are enhanced, which are a result of the ability to give out bioactive ions and their distinct compositions. After that, the porous bio-nanocomposite scaffolds are investigated for biological and mechanical properties corresponding to hardness versus elastic modulus, apatite formation versus biodegradation rate, wetting properties versus roughness and electrical conductivity of the sample. Then, the composition, microstructure, and physical characteristics are also examined using different techniques such as X-ray diffraction (XRD), transmission electron microscopy (TEM), and scanning electron microscopy (SEM) which is equipped with energy-dispersive X-ray spectroscopy (EDX). The obtained outcomes show that addition of diopside bioceramic enhances the mechanical and physical properties of the samples. It is shown that the prepared porous bio-nanocomposite scaffolds, containing 10 wt% MNPs, represents a better agreement in serving as a bone graft for the cancer disease treatment and hyperthermia term. The results indicate that the specimen with 10 wt% MNPs in the bionanocomposite release the celecoxib drug easier, however, its has better porosity and mechanical behavior that make it suitable candidate for bone implantations.
机译:在本前研究中,考虑了由天然合成介质界面制造的生物纳米复合支架和由磁铁矿纳米颗粒(MNP)制造的微型纳米复合支架的微体建筑。用各种重量级分(0,5,10和15wt%)测试MNP,并通过藻酸钠作为碱基基质的冷冻干燥技术制造。由于磷酸钙(盖子)和生物活性玻璃(BG)的机械性能的限制,硅酸钙陶瓷(CSC)的临床使用受到大受影响。因此,通过将金属氧化物掺入基础二元XcaO-YsiO(2)中,以及钙离子的取代来生产CSC。此外,增强了CSC的机械和生物学性质,其是发出生物活性离子及其不同组合物的能力的结果。之后,研究了多孔生物纳米复合支架,用于对应于硬度与弹性模量,磷灰石形成的生物和机械性能,与生物降解速率相比,润湿性能与样品的粗糙度和导电性。然后,使用不同的技术,例如X射线衍射(XRD),透射电子显微镜(TEM)和扫描电子显微镜(SEM),以及配备有能量分散X射线的组合物,微观结构和物理特性。光谱学(EDX)。所获得的结果表明,添加潜水潜冲的生物陶瓷增强了样品的机械和物理性质。结果表明,含有10wt%MNP的制备的多孔生物纳米复合支架代表了作为癌症疾病治疗和热疗术语的骨移植更好的协议。结果表明,在Bionanocposite释放中,具有10wt%MNP的样品释放塞克西布药物具有更好的孔隙率和机械行为,使其成为骨植入的合适候选者。

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