Literature DB >> 21441313

Enhancement of Na/K pump activity by chronic intermittent hypobaric hypoxia protected against reperfusion injury.

Hui-Cai Guo1, Fang Guo, Li-Nan Zhang, Rong Zhang, Qing Chen, Jun-Xia Li, Jian Yin, Yong-Li Wang.   

Abstract

Chronic intermittent hypobaric hypoxia (CIHH) has been shown to attenuate intracellular Na(+) accumulation and Ca(2+) overload during ischemia and reperfusion (I/R), both of which are closely related to the outcome of myocardial damage. Na/K pump plays an essential role in maintaining the equilibrium of intracellular Na(+) and Ca(2+) during I/R. It has been shown that enhancement of Na/K pump activity by ischemic preconditioning may be involved in the cardiac protection. Therefore, we tested whether Na/K pump was involved in the cardioprotection by CIHH. We found that Na/K pump current in cardiac myocytes of guinea pigs exposed to CIHH increased 1.45-fold. The K(1) and f(1), which reflect the portion of α(1)-isoform of Na/K pump, dramatically decreased or increased, respectively, in CIHH myocytes. Western blot analysis revealed that CIHH increased the protein expression of the α(1)-isoform by 76%, whereas the protein expression of the α(2)-isoform was not changed significantly. Na/K pump current was significantly suppressed in simulated I/R, and CIHH preserved the Na/K pump current. CIHH significantly improved the recovery of cell length and contraction during reperfusion. Furthermore, inhibition of Na/K pump by ouabain attenuated the protective effect afforded by CIHH. Collectively, these data suggest that the increase of Na/K pump activity following CIHH is due to the upregulating α(1)-isoform of Na/K pump, which may be one of the mechanisms of CIHH against I/R-induced injury.

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Year:  2011        PMID: 21441313     DOI: 10.1152/ajpheart.01164.2010

Source DB:  PubMed          Journal:  Am J Physiol Heart Circ Physiol        ISSN: 0363-6135            Impact factor:   4.733


  9 in total

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Review 2.  Cardiac response to chronic intermittent hypoxia with a transition from adaptation to maladaptation: the role of hydrogen peroxide.

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9.  Resolvin D1 mitigates energy metabolism disorder after ischemia-reperfusion of the rat lung.

Authors:  Qifeng Zhao; Ji Wu; Qingwang Hua; Zhiyong Lin; Leping Ye; Weixi Zhang; Guowei Wu; Jie Du; Jie Xia; Maoping Chu; Xingti Hu
Journal:  J Transl Med       Date:  2016-03-24       Impact factor: 5.531

  9 in total

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