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Impaired growth plate function in bmp-6 null mice.

机译:bmp-6 null小鼠的生长板功能受损。

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Bone morphogenetic protein 6 (BMP-6) is expressed by different skeletal cells including osteoblasts and growth plate chondrocytes, suggesting roles in bone formation and growth regulation. To address these possibilities, we examined whether cancellous and cortical bone parameters, or indices of growth plate function, are altered in bmp-6 null mice as assessed under basal conditions, and following stimulation of bone formation and suppression of growth by estrogen treatment. Ten-week-old female littermate bmp-6 null and wild-type (WT) mice were administered vehicle or E(2) 4, 40, 400 or 4,000 microg/kg/day by daily sc injection for 28 days (6-8 per group). Tibias were removed, and detailed histomorphometric analysis of the proximal metaphysis and growth plates, and tibial diaphysis were performed on longitudinal and transverse sections respectively. Long bone area as measured by DXA was reduced in vehicle-treated bmp-6 null mice compared with WT littermate controls. In addition, vehicle-treated bmp-6 null mice had a reduced cross-sectional area at the tibial mid-diaphysis as assessed by histomorphometry, whereas cancellous bone indices were unaffected. Histomorphometry of the proximal tibial metaphysis demonstrated a defect in bone formation immediately adjacent to the growth plate in bmp-6 null mice compared to WT mice following E(2) treatment. E(2) administration was also associated with a dose-responsive decrease in longitudinal growth rate, and proliferative and hypertrophic zone parameters of the growth plate (p<0.0001). Significantly greater reductions following E(2) treatment were observed in longitudinal growth rate (p<0.01), proliferating and hypertorphic zone widths (p<0.001), and proliferating (p<0.0002) and hypertrophic (p<0.002) cells per column of bmp-6 null mice compared to WT mice. Our observation that long bones are reduced in size compared to wild-type mice primarily through a decrease in cortical cross-sectional area, whilst cancellous bone mass is unaltered, suggests a non-redundant role for BMP-6 in periosteal but not trabecular bone formation. Moreover, growth plate function was reduced in bmp-6 null mice receiving estrogen, leading to an impaired cancellous bone response to estrogen at the highest dose, suggesting that BMP-6 also plays a physiological role in maintaining growth plate function.
机译:骨形态发生蛋白6(BMP-6)由不同的骨骼细胞表达,包括成骨细胞和生长板软骨细胞,提示其在骨形成和生长调节中的作用。为了解决这些可能性,我们检查了在基础条件下以及在刺激骨形成和通过雌激素治疗抑制生长后,在bmp-6无效小鼠中,松质和皮质骨参数或生长板功能指标是否发生了改变。十周大的雌性同窝出生的bmp-6无效和野生型(WT)小鼠通过每日皮下注射28天(每天6或8次)分别接受媒介物或E(2)4、40、400或4,000 microg / kg / day(6-8每组)。去除胫骨,并分别在纵切面和横切面进行近端干morph端和生长板的详细组织形态分析,以及胫骨干physi端。与野生型同窝仔对照相比,用赋形剂处理的bmp-6无效小鼠的DXA测量的长骨面积减少了。此外,经组织形态计量学评估,经媒介物处理的bmp-6无效小鼠的胫骨中骨干处的横截面积减小,而松质骨指数未受影响。与E(2)处理后的WT小鼠相比,近端胫骨干physi端的组织形态计量学显示bmp-6 null小鼠中紧邻生长板的骨骼形成缺陷。 E(2)管理还与纵向生长速率以及生长板的增生和肥大区参数的剂量响应性降低相关(p <0.0001)。 E(2)处理后每列柱的纵向生长速率(p <0.01),增生和肥大区宽度(p <0.001)以及增生(p <0.0002)和肥厚(p <0.002)细胞中观察到明显更大的减少。与WT小鼠相比,bmp-6无效小鼠。我们的观察表明,与野生型小鼠相比,长骨的尺寸减小主要是由于皮质截面积的减小,而松质骨质量没有改变,这表明BMP-6在骨膜中具有非冗余作用,但在小梁骨中没有作用。此外,在接受雌激素的bmp-6无效小鼠中,生长板功能降低,导致最高剂量的松质骨对雌激素的骨反应减弱,表明BMP-6在维持生长板功能方面也起着生理作用。

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