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Effects of Spaceflight on Bone Microarchitecture in the Axial and Appendicular Skeleton in Growing Ovariectomized Rats

机译:太空飞行对去卵巢大鼠生长的轴和阑尾骨骼骨微结构的影响

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摘要

This study investigated the effects of a 14-day spaceflight on bone mass, density and microarchitecture in weight bearing (femur and humerus) and non-weight bearing (2nd lumbar vertebra and calvarium) bones in the context of ovarian hormone insufficiency. 12-week-old Fisher 344 rats were ovariectomized 2 weeks before flight and randomized into one of three groups: 1) baseline (n = 6), 2) ground control (n = 12) or 3) spaceflight (n = 12). Additional ground-based ovary-intact rats provided age-matched reference values at baseline (n = 8) and landing (n = 10). Ovariectomy resulted in bone- and bone compartment-specific deficits in cancellous bone volume fraction. Spaceflight resulted in lower cortical bone accrual in the femur but had no effect on cortical bone in the humerus or calvarium. Cancellous bone volume fraction was lower in flight animals compared to ground control animals in lumbar vertebra and distal femur metaphysis and epiphysis; significant differences were not detected in the distal humerus. Bone loss (compared to baseline controls) in the femur metaphysis was associated with lower trabecular number, whereas trabecular thickness and number were lower in the epiphysis. In summary, the effect of spaceflight on bone microarchitecture in ovariectomized rats was bone-and bone compartment-specific but not strictly related to weight bearing.
机译:这项研究调查了14天航天飞行对承重(股骨和肱骨)和非承重(2 sup 腰椎和颅骨)骨骼的骨质量,密度和微结构的影响卵巢激素不足。将12周大的Fisher 344大鼠在飞行前2周进行卵巢切除术,并随机分为三组之一:1)基线(n = 6),2)地面对照(n = 12)或3)航天(n = 12)。另外的陆基卵巢完整大鼠在基线(n = 8)和着陆(n = 10)时提供了年龄匹配的参考值。卵巢切除术导致松质骨体积分数的骨和骨腔特异性缺乏。太空飞行导致股骨的皮质骨减少,但对肱骨或颅骨的皮质骨没有影响。与腰椎和股骨远端干animals端和骨epi端的地面对照动物相比,飞行中的动物的松质骨体积分数要低。肱骨远端未发现明显差异。股骨干physi端的骨丢失(与基线对照相比)与小梁数量较低有关,而骨the的骨小梁厚度和数量较低。总而言之,航天飞行对去卵巢大鼠骨骼微结构的影响是特定于骨和骨腔的,但与负重并不严格相关。

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