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High phosphorus diet induces vascular calcification, a related decrease in bone mass and changes in the aortic gene expression.

机译:高磷饮食会引起血管钙化,骨量减少和主动脉基因表达改变。

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In chronic kidney disease, hyperphosphatemia has been associated to vascular calcifications. Moreover, the rate and progression of vascular calcification have been related with the reduction of bone mass and osteoporotic fractures, hereby suggesting a strong link between vascular calcification and bone loss. Our aim was to prospectively study the effects of high phosphorus diet on bone mass, vascular calcification and gene expression profile of the arterial wall. A rat model of 7/8 nephrectomy fed with normal (0.6%) and moderately high (0.9%) phosphorus diet was used. Biochemical parameters, bone mineral density and vascular calcifications were assessed. A microarray analysis of the aortic tissue was also performed to investigate the gene expression profile. After 20 weeks, the rats fed with a high phosphorus diet showed a significant increase in serum phosphorus, PTH, and creatinine, together with aortic calcification and a decrease in bone mass. The histological analysis of the vascular calcifications showed areas with calcified tissue and the gene expression profile of this calcified tissue showed repression of muscle-related genes and overexpression of bone-related genes, among them, the secreted frizzled related proteins, well-known inhibitors of the Wnt pathway, involved in bone formation. The study demonstrated prospectively the inverse and direct relationship between vascular calcification and bone mass. In addition, the microarrays findings provide new information on the molecular mechanisms that may link this relationship.
机译:在慢性肾脏疾病中,高磷血症与血管钙化有关。此外,血管钙化的速率和进展与骨量的减少和骨质疏松性骨折有关,从而暗示了血管钙化与骨丢失之间的紧密联系。我们的目的是前瞻性研究高磷饮食对骨质量,血管钙化和动脉壁基因表达谱的影响。使用7/8肾切除的大鼠模型,饲喂正常(0.6%)和中度高(0.9%)的磷饮食。评估生化参数,骨矿物质密度和血管钙化。还对主动脉组织进行了微阵列分析,以研究基因表达谱。 20周后,高磷饮食喂养的大鼠血清磷,PTH和肌酐显着增加,主动脉钙化和骨量减少。血管钙化的组织学分析显示组织钙化的区域,该钙化组织的基因表达谱显示肌肉相关基因的抑制和骨相关基因的过表达,其中包括分泌的卷曲相关蛋白,众所周知的抑制血管生成的抑制剂。 Wnt途径,参与骨骼形成。该研究前瞻性地证明了血管钙化与骨量之间的反比和直接关系。此外,微阵列的发现提供了可能联系这种关系的分子机制的新信息。

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