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首页> 外文期刊>Molecular Nutrition and Food Research >Combined high-fat-resveratrol diet and RIP140 knockout mice reveal a novel relationship between elevated bone mitochondrial content and compromised bone microarchitecture, bone mineral mass, and bone strength in the tibia
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Combined high-fat-resveratrol diet and RIP140 knockout mice reveal a novel relationship between elevated bone mitochondrial content and compromised bone microarchitecture, bone mineral mass, and bone strength in the tibia

机译:高脂白藜芦醇饮食和RIP140基因敲除小鼠的组合揭示了骨线粒体含量升高与受损的骨微结构,骨矿物质质量和胫骨强度之间的新颖关系

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摘要

While resveratrol (RSV) is associated with the prevention of high-fat (HF) diet-induced insulin resistance, the effects on bone health combined with an HF-diet is unknown. Therefore, we determined the effect of RSV on bone microarchitecture in the presence of an HF-diet, while also elucidating molecular adaptations within bone that could contribute to bone health status. Methods and results: Male C57BL6 mice were provided control (10% fat) or HF-diet (60% fat) in the presence or absence of RSV for 12 weeks. While RSV prevented HF diet-induced glucose intolerance, HF-RSV compromised tibial microarchitecture, mineral mass, and strength. The compromised outcomes following HF-RSV corresponded with higher markers of osteoclast-activation and bone-resorption (decreased OPG/RANKL ratio; increased cathepsin K), as well as higher markers of tibial mitochondrial content. A molecular model of elevated mitochondrial content (RIP140 knock out (KO) mice) was utilized to determine proof-of-principle that increasing mitochondrial content coincides with decrements in bone health. RIP140 KO mice displayed higher markers of mitochondrial content, and similar to HF-RSV, had compromised bone microarchitecture, lower BMD/strength, and higher markers of osteoclast-activation/bone-resorption. Conclusion: These data show that in the presence of an HF-diet, RSV negatively alters bone health, a process associated with increased mitochondrial content and markers of bone resorption.
机译:尽管白藜芦醇(RSV)与高脂饮食预防胰岛素抵抗有关,但结合HF饮食对骨骼健康的影响尚不清楚。因此,我们确定了在存在HF饮食的情况下RSV对骨骼微结构的影响,同时还阐明了骨骼内的分子适应性可能有助于骨骼健康状况。方法和结果:在有或没有RSV的情况下,为雄性C57BL6小鼠提供了对照(10%脂肪)或HF-饮食(60%脂肪),持续12周。虽然RSV可以防止HF饮食引起的葡萄糖耐受不良,但是HF-RSV会损害胫骨的微结构,矿物质质量和强度。 HF-RSV后受损的结局与破骨细胞活化和骨吸收的更高标志物(OPG / RANKL比降低;组织蛋白酶K升高)以及胫骨线粒体含量的更高标志物相对应。线粒体含量升高的分子模型(RIP140基因敲除(KO)小鼠)用于确定线粒体含量增加与骨骼健康下降同时发生的原理证明。 RIP140 KO小鼠显示出更高的线粒体含量标志物,并且与HF-RSV相似,损害了骨骼的微结构,降低了BMD /强度,并提高了破骨细胞活化/骨吸收的标志物。结论:这些数据表明,在存在HF饮食的情况下,RSV会负面影响骨骼健康,这一过程与线粒体含量增加和骨骼吸收标志物有关。

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