| Literature DB >> 30303711 |
Rosario Martínez1, Garyfallia Kapravelou1, Carlos López-Chaves1, Elena Cáceres1, Irene Coll-Risco1, Cristina Sánchez-González1, Juan Llopis1, Francisco Arrebola2, Milagros Galisteo3, Pilar Aranda1, María López-Jurado1, Jesus M Porres1.
Abstract
Obesity, metabolic syndrome, and renal injury are considered risk factors for type 2 diabetes, as well as kidney disease. Functional and structural changes in the kidney as consequence of obesity and metabolic syndrome may lead to impaired mineral metabolism in what is known as chronic kidney disease-mineral and bone disorder. Lifestyle interventions such as physical activity are good strategies to manage these pathologies and therefore, prevent the loss of kidney functionality and related complications in mineral metabolism. In this study, we have used 40 male Zucker rats that were randomly allocated into four different experimental groups, two of them (an obese and a lean one) performed an aerobic interval training protocol, and the other two groups were sedentary. At the end of the experimental period (8 wk), urine, plasma, and femur were collected for biochemical and mineral composition analysis, whereas the kidney was processed for histological studies. The obese rats exhibited albuminuria, glomerulosclerosis, and hypertrophy in glomeruli and renal tubule in some areas, together with alterations in mineral content of plasma but not of femur. The training protocol prevented the generation of albuminuria and glomerulosclerosis, showing a significant action on plasma and bone mineral levels. Therefore, the specific training protocol used in this study was able to prevent the development of diabetic nephropathy and affected the metabolism of certain minerals.Entities:
Keywords: Zucker rat; aerobic interval training; diabetic nephropathy; glomerulosclerosis; mineral metabolism
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Year: 2018 PMID: 30303711 DOI: 10.1152/ajprenal.00356.2018
Source DB: PubMed Journal: Am J Physiol Renal Physiol ISSN: 1522-1466