[地塞米松和膨胀应激对体外小鼠颅骨缝合线成骨细胞的影响,特别是3h -胸苷和3h -脯氨酸的掺入]。

H Nagano
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引用次数: 0

摘要

缝合线对膨胀应力的反应被认为与骨对正畸牙齿运动的反应是平行的。为了探讨正畸牙齿移动过程中心理应激与成骨细胞的关系,我们在体外研究了膨胀应激和10(-7)M地塞米松对小鼠颅骨缝合成骨细胞的影响。该模型由施加于小鼠矢状缝合线的拉力组成。膨胀应力诱导缝合处形成类骨,并刺激缝合处成骨细胞中3h -胸苷和3h -脯氨酸的掺入。此外,3h -胸腺嘧啶在成骨细胞中的标记指数也受到刺激。另一方面,地塞米松抑制掺入、标记指数和基质形成。此外,10(-7)M地塞米松处理可抑制膨胀应激诱导的这些刺激。如前所述,地塞米松是一种合成糖皮质激素,可抑制膨胀应激刺激下缝合成骨细胞中3h -胸腺嘧啶和3h -脯氨酸的结合、3h -胸腺嘧啶的标记指数以及基质的形成。因此,在正畸牙齿运动过程中,心理应激刺激下糖皮质激素的分泌增加可能会抑制牙周韧带成骨细胞的增殖、细胞分化和基质形成。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[The effects of dexamethasone and expansion stress on the osteoblasts in mouse calvarial suture in vitro, with special reference to incorporation of 3H-thymidine and 3H-proline].

Behavior of sutures in response to expansion stress are thought to be in parallel with the response of bone to orthodontic tooth movement. To investigate this relation between psychologic stress and osteoblasts during orthodontic tooth movement, the effects of expansion stress and 10(-7) M dexamethasone on sutural osteoblasts of mouse calvaria were examined in vitro. The model consists of a tensile force applied to the mouse sagittal suture. Expansion stress induced the formation of osteoid in the sutural areas, and incorporation of 3H-thymidine and 3H-proline in sutural osteoblasts were found to be stimulated by expansion stress. Furthermore, labelling index of 3H-thymidine in the osteoblasts was also found to be stimulated. On the other hand, dexamethasone inhibited the incorporation, labelling index and matrix formation. Moreover, these induced stimulations in expansion stress were inhibited by 10(-7) M dexamethasone treatment. As described above, dexamethasone, which is a synthetic glucocorticoid, inhibited the incorporation of 3H-thymidine and 3H-proline, the labelling index of 3H-thymidine, and the matrix formation in sutural osteoblasts that were stimulated by expansion stress. Therefore, also during orthodontic tooth movement, increased secretion of glucocorticoid that is stimulated by psychologic stress may inhibit the proliferation, cell differentiation, and matrix formation of osteoblasts in periodontal ligaments.

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