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首页> 外文期刊>Archives of Oral Biology >In vitro release kinetic of dimethyloxaloylglycine and l-mimosine from bovine bone mineral
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In vitro release kinetic of dimethyloxaloylglycine and l-mimosine from bovine bone mineral

机译:牛骨矿物质中二甲基草酰酰甘氨酸和L-亚胺的体外释放动力学

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Objective Prolyl hydroxylases (PHD) are oxygen sensors and therefore pharmacological targets to stimulate periodontal regeneration. Here we evaluate the release profile of the PHD inhibitors dimethyloxaloylglycine and l-mimosine from bone substitutes. Materials Dimethyloxaloylglycine and l-mimosine were lyophilised onto bone substitutes including bovine bone mineral, beta-tricalcium phosphate, and hydroxyapatite. Release kinetic was evaluated by bioassays with gingival and periodontal ligament fibroblasts. We determined the capacity of PHD inhibitors to provoke VEGF expression and to repress metabolic activity and proliferation as assessed by immunoassay, MTT conversion and 3[H]thymidine incorporation, respectively. Results We found that the PHD inhibitors are released from bovine bone mineral as indicated by the increase of VEGF production in gingival and periodontal ligament fibroblasts. Supernatants obtained after 1 h also decreased metabolic activity and proliferation of the fibroblasts. A fibrin matrix prolonged the release of PHD inhibitors up to 192 h. A similar cellular response was found when supernatants from PHD inhibitors loaded beta-tricalcium phosphate and hydroxyapatite embedded in fibrin were assessed. Conclusions In conclusion bone substitutes can serve as carriers for PHD inhibitors that maintain their capacity to provoke a pro-angiogenic response in vitro. These findings provide the basis for preclinical studies to evaluate if this release kinetic can stimulate periodontal regeneration.
机译:目的脯氨酰羟化酶(PHD)是氧气传感器,因此是刺激牙周再生的药理学靶标。在这里,我们评估了骨替代品中PHD抑制剂二甲基草酰酰甘氨酸和L-亚莫辛的释放曲线。材料将二甲基草酰酰甘氨酸和1-mimosine冻干到骨替代品上,包括牛骨矿物质,β-磷酸三钙和羟基磷灰石。通过牙龈和牙周膜成纤维细胞的生物测定评估释放动力学。我们分别通过免疫测定,MTT转化和3 [H]胸苷掺入法确定了PHD抑制剂激发VEGF表达,抑制代谢活性和增殖的能力。结果我们发现,从牙龈和牙周膜成纤维细胞中VEGF产生的增加可以看出,PHD抑制剂从牛骨矿物质中释放出来。 1小时后获得的上清液也降低了成纤维细胞的代谢活性和增殖。纤维蛋白基质将PHD抑制剂的释放延长至192小时。当评估来自PHD抑制剂的上清液加载了β-磷酸三钙和包埋在纤维蛋白中的羟磷灰石时,发现了类似的细胞反应。结论综上所述,骨替代物可以作为PHD抑制剂的载体,保持其在体外引起促血管生成反应的能力。这些发现为临床前研究评估这种释放动力学是否可以刺激牙周再生提供了基础。

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