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Am J Physiol Heart Circ Physiol 289: H2416-H2423, 2005. First published July 29, 2005; doi:10.1152/ajpheart.00654.2005
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Attenuated arterial baroreflex buffering of muscle metaboreflex in heart failure

Jong-Kyung Kim,1 Javier A. Sala-Mercado,1 Robert L. Hammond,1,2 Jaime Rodriguez,1 Tadeusz J. Scislo,1 and Donal S. O’Leary1

1Department of Physiology and 2Department of Surgery, Wayne State University School of Medicine, Detroit, Michigan

Submitted 17 June 2005 ; accepted in final form 25 July 2005

Previous studies have shown that heart failure (HF) or sinoaortic denervation (SAD) alters the strength and mechanisms of the muscle metaboreflex during dynamic exercise. However, it is still unknown to what extent SAD may modify the muscle metaboreflex in HF. Therefore, we quantified the contribution of cardiac output (CO) and peripheral vasoconstriction to metaboreflex-mediated increases in mean arterial blood pressure (MAP) in conscious, chronically instrumented dogs before and after induction of HF in both barointact and SAD conditions during mild and moderate exercise. The muscle metaboreflex was activated via partial reductions in hindlimb blood flow. After SAD, the metaboreflex pressor responses were significantly higher with respect to the barointact condition despite lower CO responses. The pressor response was significantly lower in HF after SAD but still higher than that of HF in the barointact condition. During control experiments in the barointact condition, total vascular conductance summed from all beds except the hindlimbs did not change with muscle metaboreflex activation, whereas in the SAD condition both before and after induction of HF significant vasoconstriction occurred. We conclude that SAD substantially increased the contribution of peripheral vasoconstriction to metaboreflex-induced increases in MAP, whereas in HF SAD did not markedly alter the patterns of the reflex responses, likely reflecting that in HF the ability of the arterial baroreflex to buffer metaboreflex responses is impaired.

sinoaortic denervation; exercise; cardiac output; arterial baroreflex; exercise pressor response



Address for reprint requests and other correspondence: D. S. O’Leary, Dept. of Physiology, Wayne State Univ. School of Medicine, 540 East Canfield Ave., Detroit, MI 48201 (e-mail: doleary{at}med.wayne.edu)




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