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Articles in PresS, published online ahead of print January 4, 2002
J Appl Physiol, 10.1152/jap.00513.2001
Submitted on May 25, 2001
Accepted on December 21, 2001
1 Kinesiology and Applied Physiology, University of Colorado, Boulder, CO, USA
* To whom correspondence should be addressed. E-mail: kjew{at}spot.colorado.edu.
The effect of training on properties of a sarcolemmal ATP-sensitive K+ current (IKATP) was examined in left ventricular (LV) cardiocytes isolated from sedentary (Sed) and trained (Tr) female Sprague-Dawley rats. Whole cell patch clamp techniques were used to characterize IKATP, an anoxia-inducible, glibencamide-sensitive current. An anoxic condition was induced by superfusing cells with a buffer that was equilibrated with 100% N2, maintained under a layer of argon, and that contained 2 deoxy-D-glucose. Over a 1 h period of anoxia, 59% of Tr cells and 85% Sed cells expressed IKATP. In those cells that did express IKATP, the time-to-expression of the current during the anoxic period occurred significantly later in cells from the Tr group compared to the Sed. Peak IKATP density was significantly lower in the Tr cells compared to the Sed cells. These results indicate that the onset and magnitude of IKATP were altered by training. These alterations in IKATP may be reflective of processes that contribute to training-induced cardioprotection against ischemia/reperfusion damage.
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