ArticleBiometals : an international journal on the role of metal ions in biology, biochemistry, and medicine2021
Iron and zinc homeostases in female rats with physically active and sedentary lifestyles.
Article in Biometals : an international journal on the role of metal ions in biology, biochemistry, and medicine, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 3 papers.
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3 citing papers in PubMed, 8 citations in OpenAlex.
- Brain metabolism in Alzheimer's disease: biological mechanisms of exercise.Translational neurodegeneration · 2023Review
- Iron overload impairs renal function and is associated with vascular calcification in rat aorta.Biometals : an international journal on the role of metal ions in biology, biochemistry, and medicine · 2022Article
- Regular Physical Exercise Modulates Iron Homeostasis in the 5xFAD Mouse Model of Alzheimer's Disease.International journal of molecular sciences · 2021Article
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Authors and funding
8 authors at 2 institutions in 1 country.
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Abstract
To determine the effects of repeated physical activity on iron and zinc homeostases in a living system, we quantified blood and tissue levels of these two metals in sedentary and physically active Long-Evans rats. At post-natal day (PND) 22, female rats were assigned to either a sedentary or an active treatment group (n = 10/group). The physically active rats increased their use of a commercially-constructed stainless steel wire wheel so that, by the end of the study (PND 101), they were running an average of 512.8 ± 31.9 (mean ± standard error) min/night. After euthanization, plasma and aliquots of liver, lung, heart, and gastrocnemius muscle were obtained. Following digestion, non-heme iron and zinc concentrations in plasma and tissues were measured using inductively coupled plasma optical emission spectroscopy. Concentrations of both non-heme iron and zinc in plasma and liver were significantly decreased among the physically active rats relative to the sedentary animals. In the lung, both metals were increased in concentration among the physically active animals but the change in zinc did not reach significance. Similarly, tissue non-heme iron and zinc levels were both increased in heart and muscle from the physically active group. It is concluded that repeated physical activity in an animal model can be associated with a translocation of both iron and zinc from sites of storage (e.g. liver) to tissues with increased metabolism (e.g. the lung, heart, and skeletal muscle).
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