Kishida Yuki, Hirao Makoto, Tamai Noriyuki, Nampei Akihide, Fujimoto Tetsuho, Nakase Takanobu, Shimizu Nobuyuki, Yoshikawa Hideki, Myoui Akira
Department of Orthopaedic Surgery, Osaka University Graduate School of Medicine, 2-2 Yamadaoka, Suita, Japan.
Bone. 2005 Nov;37(5):607-21. doi: 10.1016/j.bone.2005.05.009. Epub 2005 Jul 20.
Leptin has been suggested to mediate a variety of actions, including bone development, via its ubiquitously expressed receptor (Ob-Rb). In this study, we investigated the role of leptin in endochondral ossification at the growth plate. The growth plates of wild-type and ob/ob mice were analyzed. Effects of leptin on chondrocyte gene expression, cell cycle, apoptosis and matrix mineralization were assessed using primary chondrocyte culture and the ATDC5 cell differentiation culture system. Immunohistochemistry and in situ hybridization showed that leptin was localized in prehypertrophic chondrocytes in normal mice and that Ob-Rb was localized in hypertrophic chondrocytes in normal and ob/ob mice. Growth plates of ob/ob mice were more fragile than those of wild-type mice in a mechanical test and were broken easily at the chondro-osseous junction. The growth plates of ob/ob mice showed disturbed columnar structure, decreased type X collagen expression, less organized collagen fibril arrangement, increased apoptosis and premature mineralization. Leptin administration in ob/ob mice led to an increase in femoral and humeral lengths and decrease in the proportional length of the calcified hypertrophic zone to the whole hypertrophic zone. In primary chondrocyte culture, the matrix mineralization in ob/ob chondrocytes was stronger than that of wild-type mice; this mineralization in both types of mice was abolished by the addition of exogenous leptin (10 ng/ml). During ATDC5 cell differentiation culture, exogenous leptin at a concentration of 1-10 ng/ml (equivalent to the normal serum concentration of leptin) altered type X collagen mRNA expression and suppressed apoptosis, cell growth and matrix calcification. In conclusion, we demonstrated that leptin modulates several events associated with terminal differentiation of chondrocytes. Our finding that the growth plates of ob/ob mice were fragile implies a disturbance in the differentiation/maturation process of growth plates due to depletion of leptin signaling in ob/ob mice. These findings suggest that peripheral leptin signaling plays an essential role in endochondral ossification at the growth plate.
瘦素被认为可通过其广泛表达的受体(Ob-Rb)介导多种作用,包括骨骼发育。在本研究中,我们调查了瘦素在生长板软骨内成骨中的作用。分析了野生型和ob/ob小鼠的生长板。使用原代软骨细胞培养和ATDC5细胞分化培养系统评估了瘦素对软骨细胞基因表达、细胞周期、凋亡和基质矿化的影响。免疫组织化学和原位杂交显示,瘦素定位于正常小鼠的前肥大软骨细胞中,而Ob-Rb定位于正常和ob/ob小鼠的肥大软骨细胞中。在力学测试中,ob/ob小鼠的生长板比野生型小鼠的更脆弱,并且在软骨-骨交界处容易断裂。ob/ob小鼠的生长板显示柱状结构紊乱、X型胶原蛋白表达减少、胶原纤维排列紊乱、凋亡增加和矿化过早。给ob/ob小鼠注射瘦素导致股骨和肱骨长度增加,钙化肥大区与整个肥大区的比例长度减小。在原代软骨细胞培养中,ob/ob软骨细胞中的基质矿化比野生型小鼠更强;添加外源性瘦素(10 ng/ml)可消除两种小鼠中的这种矿化。在ATDC5细胞分化培养期间,浓度为1-10 ng/ml(相当于瘦素的正常血清浓度)的外源性瘦素改变了X型胶原蛋白mRNA表达并抑制了凋亡、细胞生长和基质钙化。总之,我们证明瘦素调节与软骨细胞终末分化相关的多个事件。我们发现ob/ob小鼠的生长板脆弱,这意味着由于ob/ob小鼠中瘦素信号的缺失,生长板的分化/成熟过程受到干扰。这些发现表明外周瘦素信号在生长板软骨内成骨中起重要作用。