Department of Trauma and Reconstructive Surgery, Georg-August-University of Goettingen, Goettingen, Germany.
Osteoporos Int. 2010 Feb;21(2):251-61. doi: 10.1007/s00198-009-0941-y. Epub 2009 May 13.
We have examined the changes induced in the trochanteric region of femur of ovariectomized rat after administration of estradiol and parathyroid hormone. We have developed a reproducible biomechanical test and produced trochanteric fractures to evaluate stiffness and strength of this region in addition to histomorphometry.
We investigated the short-term effects of parathyroid hormone (PTH) and estrogen (E) on the strength of the rat trochanteric region in a new mechanical test.
Forty-four 3-month-old female Sprague-Dawley rats were ovariectomized and 8 weeks later treated with soy-free diet (C), daily applications of orally supplied E (0.5 mg/kg food) or subcutaneously injected PTH (0.014 mg/kg), for 5 weeks, and an additional untreated group was added as sham-operated. The femurs were examined for biomechanical and histomorphometric changes.
Our new mechanical test was validated in a right-left comparison. The PTH treatment induced significantly superior biomechanical results (F (max) = 225.3 N, stiffness = 314.9 N/mm) compared to E (F (max) = 182.9 N, stiffness = 237.2 N/mm), C (F (max) = 166.03 N, stiffness = 235.56 N/mm), and sham (F (max) = 192.1 N, stiffness = 267.2 N/mm). Animals of the PTH group demonstrated a significantly improved trabecular bone structure and area (75.67%) in comparison to the E (61.04%) and C (57.18%) groups.
Our new biomechanical test is valid and produces trochanteric fracture. Our results show that the short-term antiosteoporotic effects of PTH are in the trochanteric region of ovariectomized rat superior to E.
我们研究了雌激素和甲状旁腺激素给药后去卵巢大鼠股骨转子区的变化。我们开发了一种可重现的生物力学测试方法,并制作了转子骨折,以评估该区域的刚度和强度,以及组织形态计量学。
我们在一项新的力学测试中研究了甲状旁腺激素(PTH)和雌激素(E)对大鼠转子区强度的短期影响。
44 只 3 月龄雌性 Sprague-Dawley 大鼠接受卵巢切除术,8 周后接受无大豆饮食(C)治疗,每天口服供应的 E(0.5mg/kg 食物)或皮下注射 PTH(0.014mg/kg),治疗 5 周,并增加未经处理的组作为假手术组。检查股骨的生物力学和组织形态计量学变化。
我们的新力学测试在左右比较中得到了验证。与 E(F(max)=182.9N,刚度=237.2N/mm)、C(F(max)=166.03N,刚度=235.56N/mm)和 sham(F(max)=192.1N,刚度=267.2N/mm)相比,PTH 治疗诱导了显著优越的生物力学结果(F(max)=225.3N,刚度=314.9N/mm)。与 E(75.67%)和 C(71.34%)组相比,PTH 组的小梁骨结构和面积显著改善(75.67%)。
我们的新生物力学测试有效,并产生转子骨折。我们的结果表明,PTH 的短期抗骨质疏松作用在去卵巢大鼠转子区优于 E。