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Simulated weightlessness and synbiotic diet effects on rat bone mechanical strength

机译:模拟失重和合生素饮食对大鼠骨骼机械强度的影响

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This paper reports results on exposure to simulated weightlessness that leads to a rapid decrease in bone mineral density known as spaceflight osteopenia by evaluating the effectiveness of dietary supplementation with synbiotics to counteract the effects of skeletal unloading. Forty adult male rats were studied under four different conditions in a 2 × 2 factorial design with main effects of diet (synbiotic and control) and weight condition (unloaded and control). Hindlimb unloading was performed at all times for 14 days followed by 14 days of recovery (reambulation). The synbiotic diet contained probiotic strains Lactobacillus acidophilus and Lactococcus lactis lactis and prebiotic fructooligosaccharide. This paper also reports on the development of a desktop three-point bending device to measure the mechanical strength of bones from rats subjected to simulated weightlessness. The importance of quantifying bone resistance to breakage is critical when examining the effectiveness of interventions against osteopenia resulting from skeletal unloading, such as astronauts experience, disuse or disease. Mechanical strength indices provide information beyond measures of bone density and microarchitecture that enhance the overall assessment of a treatment's potency. In this study we used a newly constructed three-point bending device to measure the mechanical strength of femur and tibia bones from hindlimb-unloaded rats fed an experimental synbiotic diet enriched with probiotics and fermentable fiber. Two calculated outputs for each sample were Young's modulus of elasticity and fracture stress. Bone major elements (calcium, magnesium, and phosphorous) were quantified using ICP-MS analysis. Hindlimb unloading was associated with a significant loss of strength in the femur, and with significant reductions in major bone elements. The synbiotic diet did not protect against these unloading effects. Tibia strength and major elements were not reduced by hindlimb unloading, as was the case for femur, but tibia bone strength was negatively affected by the synbiotic diet. Thus, unexpectedly, the synbiotic diet was associated with null or detrimental effects on bone strength.
机译:本文报告了模拟失重的暴露结果,该失重通过评估膳食中添加合生素的功效来抵消骨骼卸载的影响,从而导致骨骼矿物质密度迅速下降,这被称为太空骨量减少。 40只成年雄性大鼠在4种不同条件下以2×2析因设计进行研究,其主要作用是饮食(合生元和对照)和体重状况(空腹和对照)。后肢卸载始终进行14天,然后进行14天的恢复(重新植入)。该合生素饮食包含益生菌菌株嗜酸乳杆菌和乳酸乳球菌以及益生元低聚果糖。本文还报告了台式三点弯曲设备的开发情况,该设备可测量遭受模拟失重的大鼠骨骼的机械强度。在检查针对骨骼卸载造成的骨质疏松症的干预措施(例如宇航员的经历,报废或疾病)的有效性时,量化骨骼抗断裂能力的重要性至关重要。机械强度指数提供的信息超出了骨密度和微结构的度量范围,可增强对治疗效果的整体评估。在这项研究中,我们使用了一种新型构造的三点弯曲装置,以测量喂食富含益生菌和可发酵纤维的实验性合生素饮食的后肢未负荷大鼠的股骨和胫骨的机械强度。每个样品的两个计算输出是杨氏弹性模量和断裂应力。使用ICP-MS分析定量骨主要元素(钙,镁和磷)。后肢卸载与股骨强度显着降低以及主要骨元素显着减少有关。合生元饮食不能抵抗这些卸荷作用。胫骨强度和主要元素没有像股骨一样通过后肢卸载而降低,但是胫骨的强度受到合生素饮食的负面影响。因此,出乎意料的是,合生素饮食与对骨骼强度的无效或有害作用有关。

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