Key result
Acute physical exercise induced apoptosis in rat renal cells and increased expression of AT1 and AT2 angiotensin II receptors and p53 protein.
Why the study?
Does acute physical exercise induce apoptosis in rat kidney via angiotensin II receptors?
Does acute physical exercise induce apoptosis in rat kidney via angiotensin II receptors?
Acute physical exercise induces apoptosis in rat kidney cells, likely mediated by angiotensin II upregulating p53 expression via both AT1 and AT2 receptors.
Does not inform human exercise guidance; hypothesis-generating for AT1/AT2 receptor roles in renal apoptosis.
Excessive physical exercise may lead to disturbance of the entire homeostasis in the body, including damage not only in skeletal muscles but also in many distant organs. The mechanisms responsible for the exercise-induced changes could include oxidative stress or angiotensin II. We previously showed that acute exercise led to apoptosis in kidney but not as a result of oxidative stress. In this study, we examined the role of angiotensin II and its AT1 and AT2 receptors in mediation of exercise-induced apoptosis in kidney. We clearly demonstrated that acute physical exercise induced apoptosis in renal cells of distal convoluted tubuli and cortical and medullary collecting ducts. Moreover, the cells displayed an increased expression of both AT1 and AT2 angiotensin II receptors and of p53 protein. The results suggest that angiotensin II could upregulate p53 expression in renal distal convoluted tubular cells and in the cells collecting ducts via both AT1 and AT2 receptors, which might be the crucial apoptosis-mediating mechanism in kidneys after excessive exercise.
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Podhorska‐Okołów et al. (2006) studied Exercise-induced apoptosis in kidney. Acute physical exercise was evaluated on Apoptosis in renal cells and expression of AT1, AT2 receptors and p53 protein. Acute physical exercise induced apoptosis in rat renal cells and increased expression of AT1 and AT2 angiotensin II receptors and p53 protein.
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