Sprint training improves contractility in postinfarction rat myocytes: role of Na+/Ca2+ exchange.
نویسندگان
چکیده
Previous studies in adult myocytes isolated from rat hearts 3-9 wk after myocardial infarction (MI) demonstrated abnormal contractility and decreased Na(+)/Ca(2+) exchanger (NCX1) activity. In addition, a program of high-intensity sprint training (HIST) instituted shortly after MI restored both contractility and NCX1 activity toward normal. The present study examined the hypotheses that reduced NCX1 activity caused abnormal contractility in myocytes isolated from sedentary (Sed) rat hearts 9-11 wk after coronary artery ligation and that HIST ameliorated contractile dysfunction in post-MI myocytes by increasing NCX1 activity. The approach was to upregulate NCX1 in MI-sedentary (MISed) myocytes and downregulate NCX1 in MI-exercised (MIHIST) myocytes by adenovirus-mediated gene transfer. Overexpression of NCX1 in MISed myocytes did not affect sarco(endo)plasmic reticulum Ca(2+)-ATPase and calsequestrin levels but rescued contractile abnormalities observed in MISed myocytes. That is, at 5 mM extracellular Ca(2+) concentration, the subnormal contraction amplitude in MISed myocytes (compared with Sham myocytes) was increased toward normal by NCX1 overexpression, whereas at 0.6 mM extracellular Ca(2+) concentration the supernormal contraction amplitude in MISed myocytes was lowered. Conversely, NCX1 downregulation by antisense in MIHIST myocytes abolished the beneficial effects of HIST on contraction amplitudes in MI myocytes. We suggest that decreased NCX1 activity may play an important role in contractile abnormalities in post-MI myocytes and that HIST ameliorated contractile dysfunction in post-MI myocytes partly by enhancing NCX1 activity.
منابع مشابه
Sprint Training Improves Contractility in Postinfarction Rat Myocytes: Role of Na/Ca Exchange
Previous studies in adult myocytes isolated from rat hearts 3-9 weeks after myocardial infarction (MI) demonstrated abnormal contractility and decreased Na + /Ca 2+ exchange (NCX1) activity. In addition, a program of high intensity sprint training (HIST) instituted shortly after MI restored both contractility and NCX1 activity towards normal. The present study examined the hypotheses that reduc...
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Zhang, Xue-Qian, Jianliang Song, Lois L. Carl, Weixing Shi, Anwer Qureshi, Qiang Tian, and Joseph Y. Cheung. Effects of sprint training on contractility and [Ca2 ]i transients in adult rat myocytes. J Appl Physiol 93: 1310–1317, 2002. First published July 5, 2002; 10.1152/ japplphysiol.01071.2001.—The effects of 6–8 wk of highintensity sprint training (HIST) on rat myocyte contractility and int...
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The significance of altered Ca2+ influx and efflux pathways on contractile abnormalities of myocytes isolated from rat hearts 3 wk after myocardial infarction (MI) was investigated by varying extracellular Ca2+ concentration ([Ca2+]o, 0.6-5.0 mM) and pacing frequency (0.1-5.0 Hz). Myocytes isolated from 3-wk MI hearts were significantly longer than those from sham-treated (Sham) hearts (125 +/-...
متن کاملSprint training restores normal contractility in postinfarction rat myocytes.
The significance of 6-8 wk of high-intensity sprint training (HIST) on contractile abnormalities of myocytes isolated from rat hearts with prior myocardial infarction (MI) was investigated. Compared with the sedentary (Sed) condition, HIST attenuated myocyte hypertrophy observed post-MI primarily by reducing cell lengths but not cell widths. At high extracellular Ca(2+) concentration (5 mM) and...
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عنوان ژورنال:
- Journal of applied physiology
دوره 97 2 شماره
صفحات -
تاریخ انتشار 2004