Impaired Ca2+-handling in HIF-1α+/- mice as a consequence of pressure overload

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Abstract

The hypoxia-inducible factor (HIF)-1 is critically involved in the cellular adaptation to a decrease in oxygen availability. The influence of HIF-1 α for the development of cardiac hypertrophy and cardiac function that occurs in response to sustained pressure overload has been mainly attributed to a challenged cardiac angiogenesis and cardiac hypertrophy up to now. Hif-1α+/+ and Hif-1α+/- mice were studied regarding left ventricular hypertrophy and cardiac function after being subjected to transverse aortic constriction (TAC). After TAC, both Hif-1α+/+ and Hif-1α+/- mice developed left ventricular hypertrophy with increased posterior wall thickness, septum thickness and increased left ventricular weight to a similar extent. No significant difference in cardiac vessel density was observed between Hif-1α+/+ and Hif-1α+/- mice. However, only the Hif-1α+/- mice developed severe heart failure as revealed by a significantly reduced fractional shortening mostly due to increased end-systolic left ventricular diameter. On the single cell level this correlated with reduced myocyte shortenings, decreased intracellular Ca 2+-transients and SR-Ca2+ content in myocytes of Hif-1a+/- mice. Thus,HIF-1α can be critically involved in the preservation of cardiac function after chronic pressure overload without affecting cardiac hypertrophy. This effect is mediated via HIF-dependent modulation of cardiac calcium handling and contractility.

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Silter, M., Kögler, H., Zieseniss, A., Wilting, J., Schäfer, K., Toischer, K., … Katschinski, D. M. (2010). Impaired Ca2+-handling in HIF-1α+/- mice as a consequence of pressure overload. Pflugers Archiv European Journal of Physiology, 459(4), 569–577. https://doi.org/10.1007/s00424-009-0748-x

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