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大鼠牙牙槽骨矫治器诱导性骨质减少:骨应变降低对血清骨标志物及多功能激素瘦素的影响

Appliance-induced osteopenia of dentoalveolar bone in the rat: effect of reduced bone strains on serum bone markers and the multifunctional hormone leptin.

作者信息

Vinoth Jayaseelan K, Patel Kaval J, Lih Wei-Song, Seow Yian-San, Cao Tong, Meikle Murray C

机构信息

Faculty of Dentistry, National University of Singapore, Singapore; National Dental Centre, Singapore.

出版信息

Eur J Oral Sci. 2013 Dec;121(6):517-24. doi: 10.1111/eos.12091. Epub 2013 Sep 24.

DOI:10.1111/eos.12091
PMID:24112221
Abstract

To understand, in greater detail, the molecular mechanisms regulating the complex relationship between mechanical strain and alveolar bone metabolism during orthodontic treatment, passive cross-arch palatal springs were bonded to the maxillary molars of 6-wk-old rats, which were killed after 4 and 8 d. Outcome measures included serum assays for markers of bone formation and resorption and for the multifunctional hormone leptin, and histomorphometry of the inter-radicular bone. The concentration of the bone-formation marker alkaline phosphatase (ALP) was significantly reduced at both time points in the appliance group, accompanied by a 50% reduction in inter-radicular bone volume; however, osteocalcin (bone Gla protein) levels remained unaffected. Bone collagen deoxypyridinoline (DPD) crosslinks increased 2.3-fold at 4 d only, indicating a transient increase in bone resorption; in contrast, the level of the osteoclast-specific marker, tartrate-resistant acid phosphatase 5b (TRACP 5b), was unchanged. Leptin levels closely paralleled ALP reductions at both time points, suggesting an important role in the mechanostat negative-feedback loop required to normalize bone mass. These data suggest that an orthodontic appliance, in addition to remodeling the periodontal ligament (PDL)-bone interface, may exert unexpected side-effects on the tooth-supporting alveolar bone, and highlights the importance of recognizing that bone strains can have negative, as well as positive, effects on bone mass.

摘要

为了更详细地了解正畸治疗期间调节机械应变与牙槽骨代谢之间复杂关系的分子机制,将被动跨弓腭簧粘结到6周龄大鼠的上颌磨牙上,在4天和8天后处死大鼠。结果指标包括血清中骨形成、骨吸收标志物以及多功能激素瘦素的检测,以及根间骨的组织形态计量学分析。矫治器组在两个时间点骨形成标志物碱性磷酸酶(ALP)的浓度均显著降低,同时根间骨体积减少了50%;然而,骨钙素(骨γ-羧基谷氨酸蛋白)水平未受影响。骨胶原脱氧吡啶啉(DPD)交联仅在4天时增加了2.3倍,表明骨吸收短暂增加;相反,破骨细胞特异性标志物抗酒石酸酸性磷酸酶5b(TRACP 5b)的水平未改变。在两个时间点,瘦素水平与ALP降低密切平行,表明其在使骨量正常化所需的机械稳态负反馈回路中起重要作用。这些数据表明,正畸矫治器除了重塑牙周膜(PDL)-骨界面外,可能会对支持牙齿的牙槽骨产生意想不到的副作用,并强调了认识到骨应变对骨量可能产生负面以及正面影响的重要性。

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