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首页> 外文期刊>European journal of medical research. >Immunohistochemical expression of heat shock proteins in the mouse periodontal tissues due to orthodontic mechanical stress
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Immunohistochemical expression of heat shock proteins in the mouse periodontal tissues due to orthodontic mechanical stress

机译:正畸机械应力作用下小鼠牙周组织中热休克蛋白的免疫组织化学表达

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The histopathology of periodontal ligament of the mouse subjected to mechanical stress was studied. Immunohistochemical expressions of HSP27 and pHSP27 were examined. Experimental animals using the maxillary molars of ddY mouse by Waldo method were used in the study. A separator was inserted to induce mechanical stress. After 10 minutes, 20 minutes, 1 hour, 3 hours, 9 hours and 24 hours, the regional tissues were extracted, fixed in 4% paraformaldehyde and 0.05 M phosphate-buffered fixative solution. Paraffin sections were made for immunohistochemistry using HSP27 and p-HSP27. In the control group, the periodontal ligament fibroblasts expressed low HSP27 and p-HSP27. However, in the experimental group, periodontal ligament fibroblasts expressed HSP27 10 minutes after mechanical load application in the tension side. The strongest expression was detected 9 hours after inducing mechanical load. p-HSP27 was also expressed in a time-dependent manner though weaker than HSP27. The findings suggest that HSP27 and p-HSP27 were expressed for the maintenance of homeostasis of periodontal ligament by the activation of periodontal ligament fibroblasts on the tension side. It also suggests that these proteins act as molecular chaperones for osteoblast activation and maintenance of homeostasis.Keywords: Heat shock protein, HSP27, periodontal ligament cells, mechanical stress, orthodontic tooth movement
机译:研究了小鼠机械应力下牙周膜的组织病理学。检查了HSP27和pHSP27的免疫组织化学表达。实验中采用Waldo法,采用ddY小鼠上颌磨牙的实验动物。插入隔板以引起机械应力。 10分钟,20分钟,1小时,3小时,9小时和24小时后,提取区域组织,固定在4%多聚甲醛和0.05 M磷酸盐缓冲液中。使用HSP27和p-HSP27制作石蜡切片用于免疫组织化学。在对照组中,牙周膜成纤维细胞表达低的HSP27和p-HSP27。然而,在实验组中,在张力侧施加机械负荷后10分钟,牙周膜成纤维细胞表达了HSP27。在诱导机械负荷后9小时检测到最强的表达。 p-HSP27也以时间依赖性方式表达,尽管比HSP27弱。这些发现表明HSP27和p-HSP27被表达为通过张紧侧的牙周膜成纤维细胞的活化来维持牙周膜的稳态。还表明这些蛋白可作为成骨细胞活化和维持体内稳态的分子伴侣。关键词:热休克蛋白,HSP27,牙周膜细胞,机械应力,正畸牙齿运动

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