Jämsä T, Viluksela M, Tuomisto J T, Tuomisto J, Tuukkanen J
Department of Medical Technology, University of Oulu, Finland.
J Bone Miner Res. 2001 Oct;16(10):1812-20. doi: 10.1359/jbmr.2001.16.10.1812.
Polychlorinated dibenzo-p-dioxins (PCDDs) are highly toxic environmental contaminants, and 2,3,7,8-tetrachlorodibenzo-p-dioxin (TCDD) is the most potent dioxin. Here, we studied the effects of TCDD on bone. Two rat strains, Han/Wistar (H/W) and Long-Evans (L-E), were used because they exhibit a 1000-fold sensitivity difference in acute lethality of TCDD, which difference is related to the aryl hydrocarbon receptor (AHR). TCDD inhibited the tibial growth dose dependently, the effect being manifested at lower doses in the more sensitive L-E strain. In H/W rats the effect of TCDD was seen only at the high dose of 170 microg/kg (p < 0.05), whereas in the sensitive L-E rats a significant reduction of bone growth was already seen at 1.7 microg/kg (p < 0.01). This reduction was caused by the smaller tibial size because the diaphyseal bone mineral density (BMD) did not change. The three-point bending breaking force of the tibia was significantly reduced in H/W rats at 170 microg/kg (p < 0.05), but tibial stiffness was lower already at the dose of 17 microg/kg (p < 0.05). In the sensitive L-E strain, both breaking force and stiffness were reduced at the dose of 17 microg/kg (p < 0.001). These results indicate that TCDD dose-dependently interferes with bone growth, modeling, and mechanical strength. The altered transactivation domain of AHR is associated with a lower sensitivity of bone to TCDD in H/W rats, suggesting that AHR plays a role in modulating the effects of dioxins on bone.
多氯代二苯并 - 对 - 二噁英(PCDDs)是剧毒的环境污染物,而2,3,7,8 - 四氯二苯并 - 对 - 二噁英(TCDD)是毒性最强的二噁英。在此,我们研究了TCDD对骨骼的影响。使用了两种大鼠品系,Han/Wistar(H/W)和Long - Evans(L - E),因为它们在TCDD急性致死率上表现出1000倍的敏感性差异,这种差异与芳烃受体(AHR)有关。TCDD剂量依赖性地抑制胫骨生长,在更敏感的L - E品系中,较低剂量时就会出现这种效应。在H/W大鼠中,仅在170μg/kg的高剂量时才观察到TCDD的效应(p < 0.05),而在敏感的L - E大鼠中,在1.7μg/kg时就已出现骨生长的显著降低(p < 0.01)。这种降低是由于胫骨尺寸变小,因为骨干骨矿物质密度(BMD)没有变化。在H/W大鼠中,170μg/kg时胫骨的三点弯曲断裂力显著降低(p < 0.05),但在17μg/kg剂量时胫骨刚度就已降低(p < 0.05)。在敏感的L - E品系中,17μg/kg剂量时断裂力和刚度均降低(p < 0.001)。这些结果表明,TCDD剂量依赖性地干扰骨骼生长、塑形和机械强度。AHR转录激活结构域的改变与H/W大鼠骨骼对TCDD的较低敏感性相关,表明AHR在调节二噁英对骨骼的影响中起作用。