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首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Suppressed bone turnover by bisphosphonates increases microdamage accumulation and reduces some biomechanical properties in dog rib (see comments)
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Suppressed bone turnover by bisphosphonates increases microdamage accumulation and reduces some biomechanical properties in dog rib (see comments)

机译:双膦酸盐抑制的骨转换增加了微损伤的积累并降低了狗肋骨的某些生物力学特性(见评论)

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摘要

It has been hypothesized that suppression of bone remodeling allows microdamage to accumulate, leading to increased bone fragility. This study evaluated the effects of reduced bone turnover produced by bisphosphonates on microdamage accumulation and biomechanical properties of cortical bone in the dog rib. Thirty-six female beagles, 1-2 years old, were divided into three groups. The control group (CNT) was treated daily for 12 months with saline vehicle. The remaining two groups were treated daily with risedronate (RIS) at a dose of 0.5 mg/kg per day or alendronate (ALN) at 1.0 mg/kg per day orally. After sacrifice, the right ninth rib was assigned to cortical histomorphometry or microdamage analysis. The left ninth rib was tested to failure in three-point bending. Total cross-sectional bone area was significantly increased in both RIS and ALN compared with CNT, whereas cortical area did not differ significantly among groups. One-year treatment with RIS or ALN significantly suppressed intracortical remodeling (RIS, 53%; ALN, 68%) without impairment of mineralization and significantly increased microdamage accumulation in both RIS (155%) and ALN (322%) compared with CNT. Although bone strength and stiffness were not significantly affected by the treatments, bone toughness declined significantly in ALN (20%). Regression analysis showed a significant nonlinear relationship between suppressed intracortical bone remodeling and microdamage accumulation as well as a significant linear relationship between microdamage accumulation and reduced toughness. This study showed that suppression of bone turnover by high doses of bisphosphonates is associated with microdamage accumulation and reduced some mechanical properties of bone.
机译:据推测,抑制骨重塑会导致微损伤的累积,从而导致骨脆性增加。这项研究评估了双膦酸盐产生的骨转换减少对狗肋骨皮质骨的微损伤积累和生物力学特性的影响。 1-2岁的36只雌性小猎犬被分为三组。对照组(CNT)每天用生理盐水治疗12个月。其余两组每日口服利塞膦酸盐(RIS)每天0.5 mg / kg或阿仑膦酸盐(ALN)每天1.0 mg / kg口服。处死后,将右第九根肋骨用于皮层组织形态测定或微损伤分析。测试左第九肋骨三点弯曲失败。与CNT相比,RIS和ALN的总横截面骨面积均显着增加,而各组之间的皮质面积无显着差异。与CNT相比,一年的RIS或ALN治疗可显着抑制皮质内重构(RIS,53%; ALN,68%),而不会矿化,并且显着增加RIS(155%)和ALN(322%)的微损伤积累。尽管治疗并未显着影响骨强度和刚度,但ALN的骨韧度显着下降(20%)。回归分析显示抑制的皮质内骨重塑与微损伤累积之间存在显着的非线性关系,以及微损伤累积与降低的韧性之间存在显着的线性关系。这项研究表明,高剂量的双膦酸盐抑制骨转换与微损伤积累有关,并降低了骨的某些机械性能。

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