Fuse H, Fukumoto S, Sone H, Miyata Y, Saito T, Nakayama K, Takahashi H, Matsumoto T, Ogata E
Teikoku Hormone Manufacturing Co., Kanagawa, Japan.
J Bone Miner Res. 1997 Apr;12(4):590-7. doi: 10.1359/jbmr.1997.12.4.590.
A new synthetic steroid, 17 alpha-acetoxy-chloro-2-oxa-4,6-pregnadiene-3,20-dione (osaterone acetate, TZP-4238), has a potent antiandrogenic and gestagenic action with virtually no estrogenic and androgenic activity in their classical target organs. In the present study, the effects of TZP-4238 on the structure, strength, and turnover of the rat long bones were examined. Female Wistar rats at 12 weeks of age were ovariectomized (OVX) and treated with TZP-4238 or 17 beta-estradiol (E2) every day for 12 weeks. TZP-4238 significantly increased the diameters and maintained bone mineral density (BMD) of the femur of OVX rats. Although the BMD of the total femur was higher in E2-treated rats than that in TZP-treated rats, E2 did not increase the diameters of the femurs. To examine the effects of TZP-4238 and E2 on the BMD of different regions of the femur, the BMD was further analyzed by dividing it into 20 regions of equal longitudinal length. E2 increased the BMD of the distal and proximal metaphysis, regions rich in trabecular bone, but had no effect on the BMD of the femoral diaphysis compared with OVX control rats. In contrast, 2.5 and 12.5 mg/kg TZP-4238 increased the BMD of the femoral diaphysis, regions rich in cortical bone, but did not affect the BMD at the distal metaphysis. In agreement with the changes in the BMD of different regions of the femur, TZP-4238 but not E2 increased the physical strength of the femoral diaphysis assessed by a three-point bending test. Histomorphometric analyses of the cross-sections of the tibia revealed that TZP-4238 increased but E2 reduced the periosteal bone formation rate compared with OVX rats. In addition, TZP-4238 caused an increase in serum bone alkaline phosphatase with only a mild and transient decrease in urinary deoxypyridinoline excretion, while E2 reduced both of these parameters. These results demonstrate that TZP-4238 increases the dimension, BMD, and physical strength of the rat long bones by enhancing cortical bone formation, while estrogen maintains trabecular BMD by inhibiting bone resorption. Because the physical strength of long bones is affected by cortical bone mass and geometry, the effect of TZP-4238 on cortical bone may have a potential for the treatment of osteoporosis with reduced cortical bone formation.
一种新型合成类固醇,17α-乙酰氧基-氯-2-氧杂-4,6-孕二烯-3,20-二酮(醋酸奥生多龙,TZP-4238),具有强大的抗雄激素和孕激素作用,在其经典靶器官中几乎没有雌激素和雄激素活性。在本研究中,检测了TZP-4238对大鼠长骨结构、强度和更新的影响。12周龄的雌性Wistar大鼠接受卵巢切除术(OVX),并每天用TZP-4238或17β-雌二醇(E2)治疗12周。TZP-4238显著增加了OVX大鼠股骨的直径并维持了骨密度(BMD)。虽然E2治疗组大鼠全股骨的骨密度高于TZP治疗组,但E2并未增加股骨直径。为了检测TZP-4238和E2对股骨不同区域骨密度的影响,将骨密度进一步分为20个等长的纵向区域进行分析。与OVX对照大鼠相比,E2增加了富含小梁骨的远端和近端干骺端的骨密度,但对股骨干的骨密度没有影响。相反,2.5和12.5mg/kg的TZP-4238增加了富含皮质骨的股骨干的骨密度,但对远端干骺端的骨密度没有影响。与股骨不同区域骨密度的变化一致,TZP-4238增加了通过三点弯曲试验评估的股骨干的物理强度,而E2没有。胫骨横断面的组织形态计量学分析显示,与OVX大鼠相比,TZP-4238增加了骨膜骨形成率,而E2降低了骨膜骨形成率。此外,TZP-4238导致血清骨碱性磷酸酶升高,而尿脱氧吡啶啉排泄仅轻微且短暂下降,而E2降低了这两个参数。这些结果表明,TZP-4238通过增强皮质骨形成增加了大鼠长骨的尺寸、骨密度和物理强度,而雌激素通过抑制骨吸收维持小梁骨密度。由于长骨的物理强度受皮质骨质量和几何形状的影响,TZP-4238对皮质骨的作用可能具有治疗皮质骨形成减少的骨质疏松症的潜力。