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Developing a novel magnesium glycerophosphate/silicate-based organic-inorganic composite cement for bone repair

机译:开发一种新型甘油磷酸镁/硅酸盐基有机无机复合水泥,用于骨修复

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Considering that the phospholipids and glycerophosphoric acid are the basic materials throughout the metabolism of the whole life period and the bone is composed of organic polymer collagen and inorganic mineral apatite, a novel self-setting composite of magnesium glycerophosphate (MG) and di-calcium silicate(C2S)/tri-calcium silicate(C3S) was developed as bio-cement for bone repair, reconstruction and regeneration. The composite was prepared by mixing the MG, C2S and C3S with the certain ratios, and using the deionized water and phosphoric acid solution as mixed liquid. The combination and formation of the composites was characterized by FTIR, XPS and XRD. The physicochemical properties were studied by setting time, compressive strength, pH value, weight loss in the PBS and surface change by SEM-EDX. The biocompatibility was evaluated by cell culture in the leaching solution of the composites. The preliminary results showed that when di- and tri-calcium silicate contact with water, there are lots of Ca(OH)(2) generated making the pH value of solution is higher than 9 which is helpful for the formation of hydroxyapatite(HA) that is the main bone material. The new organic-inorganic self-setting bio-cements showed initial setting time is ranged from 20 min to 85 min and the compressive strength reached 30 MPa on the 7th days, suitable as the bone fillers. The weight loss was 20% in the first week, and 25% in the 4th week. Meanwhile, the new HA precipitated on the composite surface during the incubation in the SBF showed bioactivity. The cell cultured in the leaching liquid of the composite showed high proliferation inferring the new bio-cement has good biocompatibillty to the cells.
机译:考虑到磷脂和甘油磷酸是整个生命周期的整个代谢的基础材料,骨骼由有机聚合物胶原和无机矿物磷灰石组成,一种新型的甘油磷酸镁(Mg)和二钙硅酸盐的自凝聚复合物(C2S)/三钙硅酸钙(C3S)被开发为骨修复,重建和再生的生物水泥。通过将Mg,C 2 S和C 3S与某些比例混合,并使用去离子水和磷酸溶液作为混合液体来制备复合材料。复合材料的组合和形成的特征在于FTIR,XPS和XRD。通过设定时间,抗压强度,pH值,PBS中的体重减轻和SEM-EDX来研究物理化学性质。通过在复合材料的浸出溶液中通过细胞培养评估生物相容性。初步结果表明,当二氧化硅酸钙与水硅酸钙接触时,产生大量的Ca(OH)(2),使得溶液的pH值高于9,这有助于形成羟基磷灰石(HA)这是主要的骨材料。新的有机无机自定义生物水泥显示初始设定时间为20分钟至85分钟,第7天达到30MPa,适合作为骨填充物。在第一周的体重减轻是20%,第4周的25%。同时,在SBF的孵育期间,在复合表面上沉淀的新HA显示出生物活性。在复合材料的浸出液中培养的细胞显示出高增殖推断,新的生物水泥具有良好的生物化合物到细胞。

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