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Minocycline-released hydroxyapatite-gelatin nanocomposite and its cytocompatibility in vitro

机译:米诺环素释放的羟基磷灰石-明胶纳米复合材料及其体外细胞相容性

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摘要

The incorporation of antibacterial agents into biomaterials is extremely desirable for repairing bone defects. Minocycline, a semi-synthetic tetracycline antibiotic, is active against aerobic, anaerobic, Gram-positive and Gram-negative bacteria, and can enhance bone formation, decrease connective tissue breakdown and diminish bone resorption. In this study, a novel minocycline-releasing biomaterial was synthesized using a biomimetic method. A measured amount of an acidic hydroxyapatite and minocycline solution was respectively added to a gelatin solution and kept at 40°C and pH 7-8 for 2 h. The mixture was aged overnight, lyophilized and a hydroxyapatite-gelatin- minocycline composite was obtained. The composite was co-cultured with rat bone marrow stromal cells (BMSCs) in vitro. Our results show that nanohydroxyapatite was distributed evenly in the fibrils of the gelatin. Minocycline was incorporated into the composite and could be released from the composite particles slowly over 2 weeks in vitro. The composite promoted BMSC adhesion, proliferation and differentiation in vitro. The approach described here may provide a basis for the preparation of an antibacterial biomaterial for bone regeneration.
机译:将抗菌剂掺入生物材料中对于修复骨缺损是非常需要的。 Minocycline是一种半合成的四环素抗生素,对需氧,厌氧,革兰氏阳性和革兰氏阴性细菌具有活性,可增强骨骼形成,减少结缔组织分解并减少骨吸收。在这项研究中,使用仿生方法合成了一种新型的美诺环素释放生物材料。将测定量的酸性羟磷灰石和米诺环素溶液分别添加至明胶溶液中,并在40°C和pH 7-8下保持2小时。将混合物老化过夜,冻干,获得羟基磷灰石-明胶-米诺环素复合物。该复合物与大鼠骨髓基质细胞(BMSCs)在体外共培养。我们的结果表明,纳米羟基磷灰石均匀分布在明胶的原纤维中。将米诺环素掺入复合材料中,并可以在体外2周内从复合材料颗粒中缓慢释放出来。该复合物在体外促进BMSC的粘附,增殖和分化。本文所述方法可为制备用于骨再生的抗菌生物材料提供基础。

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