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首页> 外文期刊>Journal of Materials Science: Materials in Medicine >Nanoparticles of cobalt-substituted hydroxyapatite in regeneration of mandibular osteoporotic bones
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Nanoparticles of cobalt-substituted hydroxyapatite in regeneration of mandibular osteoporotic bones

机译:钴取代羟基磷灰石纳米粒子在下颌骨质疏松性骨再生中的作用

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摘要

Indications exist that paramagnetic calcium phosphates may be able to promote regeneration of bone faster than their regular, diamagnetic counterparts. In this study, analyzed was the influence of paramagnetic cobalt-substituted hydroxyapatite nanoparticles on osteoporotic alveolar bone regeneration in rats. Simultaneously, biocompatibility of the material was tested in vitro, on osteoblastic MC3T3-E1 and epithelial Caco-2 cells in culture. The material was shown to be biocompatible and nontoxic when added to epithelial monolayers in vitro, while it caused a substantial decrease in the cell viability as well as deformation of the cytoskeleton and cell morphology when incubated with the osteoblastic cells. In the course of 6 months after the implantation of the material containing different amounts of cobalt, ranging from 5 to 12 wt%, in the osteoporotic alveolar bone of the lower jaw, the following parameters were investigated: histopathological parameters, alkaline phosphatase and alveolar bone density. The best result in terms of osteoporotic bone tissue regeneration was observed for hydroxyapatite nanoparticles with the largest content of cobalt ions. The histological analysis showed a high level of reparatory ability of the nanoparticulate material implanted in the bone defect, paralleled by a corresponding increase in the alveolar bone density. The combined effect of growth factors from autologous plasma admixed to cobalt-substituted hydroxyapatite was furthermore shown to have a crucial effect on the augmented osteoporotic bone regeneration upon the implantation of the biomaterial investigated in this study.
机译:有迹象表明,顺磁性磷酸钙可能比常规的抗磁性磷酸钙更快地促进骨骼的再生。在这项研究中,分析了顺磁性钴取代羟基磷灰石纳米颗粒对大鼠骨质疏松性牙槽骨再生的影响。同时,在体外培养的成骨细胞MC3T3-E1和上皮Caco-2细胞上测试了该材料的生物相容性。当在体外将其添加到上皮单层中时,该材料被证明具有生物相容性且无毒,而当与成骨细胞一起孵育时,它会导致细胞活力以及细胞骨架的变形和细胞形态的显着降低。在下颌骨质疏松性牙槽骨中植入5%至12wt%的钴含量不同的材料植入后的6个月内,研究了以下参数:组织病理学参数,碱性磷酸酶和牙槽骨密度。对于具有最大钴离子含量的羟基磷灰石纳米颗粒,在骨质疏松性骨组织再生方面观察到了最佳结果。组织学分析显示,植入到骨缺损中的纳米颗粒材料具有很高的修复能力,同时相应地增加了牙槽骨密度。研究表明,自体血浆与钴取代的羟基磷灰石混合后,生长因子的综合作用对植入的骨质疏松骨再生具有至关重要的作用。

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    Institute of Technical Sciences Serbian Academy of Sciences and Arts">(1);

    Department of Prosthodontics Clinic of Stomatology Faculty of Medicine University of Niš">(2);

    Institute of Biomedical Research Faculty of Medicine University of Niš">(3);

    Institute of Biomedical Research Faculty of Medicine University of Niš">(3);

    Institute of Pathology Faculty of Medicine University of Niš">(4);

    Department of Biology and Ecology Faculty of Science University of Niš">(5);

    Institute of Technical Sciences Serbian Academy of Sciences and Arts">(1);

    Therapeutic Micro and Nanotechnology Laboratory Department of Bioengineering and Therapeutic Sciences University of California">(6);

    Institute of Technical Sciences Serbian Academy of Sciences and Arts">(1);

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