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Physicochemical and osteoplastic characteristics of 3D printed bone grafts based on synthetic calcium phosphates and natural polymers

机译:基于合成磷酸钙和天然聚合物的3D印刷骨移植物理化学和骨质特性

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A creation of personalized implants for regeneration of bone tissue seems to be a very promising biomedical technological approach. We have studied the physicochemical characteristics, cyto- and biocompatibility of three-dimensional constructs based on sodium alginate and gelatin in combination with 2 types of calcium phosphate (tricalcium phosphate or octacalcium phosphate) obtained by inkjet 3D printing. In our experiments, we have studied the physical and chemical properties of the constructs - their porosity, chemical composition, microarchitecture of the surface and mechanical elasticity. The cytocompatibility of 3D constructs and matrix-for-cell properties were investigated in vitro on a model of human osteosarcoma MG-63 cell line by means of MTT assay. The biocompatibility of 3D constructs was studied on the model of subcutaneous implantation in mice up to 12 weeks. All types of 3D constructs were cytocompatible in vitro, demonstrated good matrix-for-cells properties, and had supported cell proliferation for 2 weeks. In results of subcutaneous in vivo test all constructs demonstrated biocompatibility with slow bioresorption of organic and inorganic components. Osteogenesis proceeded more actively in rat tibia model defects (marginal excision), substituted by 3D printed 3-component implants based on alginate, gelatin and octacalcium phosphate.
机译:为骨组织再生创建个性化植入物似乎是一种非常有前景的生物医学技术方法。我们研究了基于藻酸钠和明胶的三维构建体的物理化学特征,细胞和生物相容性与通过喷墨3D印刷获得的2种磷酸钙(磷酸三钙或磷酸钙或磷酸钙)组合。在我们的实验中,我们研究了构建体的物理和化学性质 - 它们的孔隙率,化学成分,表面的微体系结构和机械弹性。通过MTT测定在人骨肉瘤Mg-63细胞系的模型上在体外研究了3D构建体和基质 - 细胞性质的细胞偶联性。研究了3D构建体的生物相容性,对小鼠的皮下植入模型研究了12周。所有类型的3D构建体在体外都是细胞系相态,证明了良好的基质 - 细胞性质,并支持细胞增殖2周。在皮下体内测试的结果,所有构建体均表现出生物相容性,具有有机和无机组分的慢生物化合物。大鼠胫骨模型缺陷(边际切除)在基于藻酸盐,明胶和磷酸盐的三分之型植入物取代的大鼠胫骨模型缺陷(边际切除)更加积极地进行。

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