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Inhibition of Na(+)-K+ pump alleviates the shortening of action potential duration caused by metabolic inhibition via blockade of KATP channels in coronary perfused ventricular muscles of guinea-pigs.
J Mol Cell Cardiol. 1999 Mar; 31(3):533-42.JM

Abstract

The Na(+)-K+ pump is a consumer of intracellular ATP. We therefore examined whether blockade of the Na(+)-K+ pump by cardiac glycosides could inhibit ATP-sensitive K+ (KATP) channels and prolong the action potential duration (APD) of the guinea-pig ventricular muscles perfused with Tyrode's solution via the coronary artery and stimulated at 3 Hz. The metabolic inhibition (MI) achieved by application of 0.1 microM carbonyl cyanide p-(trifluoromethoxy) phenylhydrazone (a mitochondrial uncoupler) shortened the APD in a time-dependent manner. When dihydroouabain (DHO, 5 microM) was introduced 5 min but not 10 min after introduction of MI, the APD shortening was significantly attenuated. Application of glibenclamide (1 microM), a blocker of KATP channels, introduced both 5 and 10 min after MI also alleviated the APD shortening: DHO did not alleviate the APD shortening effect produced by cromakalim (5 microM), a KATP-channel opener. In separate experiments using whole-cell patch-clamp techniques, we found that this concentration of DHO (5 microM) depressed the Na(+)-K+ pump current of the guinea-pig ventricular myocytes from 210 to 100 pA (at 0 mV) or by 49.5%. We conclude that, during early phase (approximately 5 min) of MI, the APD shortening mostly results from the activation of KATP channels, and that even a approximately 50% inhibition of the Na(+)-K+ pump by DHO leads to the blockade of KATP channels and eventual lengthening of the APD.

Authors+Show Affiliations

Department of Physiology, Oita Medical University, Japan.No affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info availableNo affiliation info available

Pub Type(s)

Journal Article
Research Support, Non-U.S. Gov't

Language

eng

PubMed ID

10198185

Citation

Abe, T, et al. "Inhibition of Na(+)-K+ Pump Alleviates the Shortening of Action Potential Duration Caused By Metabolic Inhibition Via Blockade of KATP Channels in Coronary Perfused Ventricular Muscles of Guinea-pigs." Journal of Molecular and Cellular Cardiology, vol. 31, no. 3, 1999, pp. 533-42.
Abe T, Sato T, Kiyosue T, et al. Inhibition of Na(+)-K+ pump alleviates the shortening of action potential duration caused by metabolic inhibition via blockade of KATP channels in coronary perfused ventricular muscles of guinea-pigs. J Mol Cell Cardiol. 1999;31(3):533-42.
Abe, T., Sato, T., Kiyosue, T., Saikawa, T., Sakata, T., & Arita, M. (1999). Inhibition of Na(+)-K+ pump alleviates the shortening of action potential duration caused by metabolic inhibition via blockade of KATP channels in coronary perfused ventricular muscles of guinea-pigs. Journal of Molecular and Cellular Cardiology, 31(3), 533-42.
Abe T, et al. Inhibition of Na(+)-K+ Pump Alleviates the Shortening of Action Potential Duration Caused By Metabolic Inhibition Via Blockade of KATP Channels in Coronary Perfused Ventricular Muscles of Guinea-pigs. J Mol Cell Cardiol. 1999;31(3):533-42. PubMed PMID: 10198185.
* Article titles in AMA citation format should be in sentence-case
TY - JOUR T1 - Inhibition of Na(+)-K+ pump alleviates the shortening of action potential duration caused by metabolic inhibition via blockade of KATP channels in coronary perfused ventricular muscles of guinea-pigs. AU - Abe,T, AU - Sato,T, AU - Kiyosue,T, AU - Saikawa,T, AU - Sakata,T, AU - Arita,M, PY - 1999/4/13/pubmed PY - 1999/4/13/medline PY - 1999/4/13/entrez SP - 533 EP - 42 JF - Journal of molecular and cellular cardiology JO - J Mol Cell Cardiol VL - 31 IS - 3 N2 - The Na(+)-K+ pump is a consumer of intracellular ATP. We therefore examined whether blockade of the Na(+)-K+ pump by cardiac glycosides could inhibit ATP-sensitive K+ (KATP) channels and prolong the action potential duration (APD) of the guinea-pig ventricular muscles perfused with Tyrode's solution via the coronary artery and stimulated at 3 Hz. The metabolic inhibition (MI) achieved by application of 0.1 microM carbonyl cyanide p-(trifluoromethoxy) phenylhydrazone (a mitochondrial uncoupler) shortened the APD in a time-dependent manner. When dihydroouabain (DHO, 5 microM) was introduced 5 min but not 10 min after introduction of MI, the APD shortening was significantly attenuated. Application of glibenclamide (1 microM), a blocker of KATP channels, introduced both 5 and 10 min after MI also alleviated the APD shortening: DHO did not alleviate the APD shortening effect produced by cromakalim (5 microM), a KATP-channel opener. In separate experiments using whole-cell patch-clamp techniques, we found that this concentration of DHO (5 microM) depressed the Na(+)-K+ pump current of the guinea-pig ventricular myocytes from 210 to 100 pA (at 0 mV) or by 49.5%. We conclude that, during early phase (approximately 5 min) of MI, the APD shortening mostly results from the activation of KATP channels, and that even a approximately 50% inhibition of the Na(+)-K+ pump by DHO leads to the blockade of KATP channels and eventual lengthening of the APD. SN - 0022-2828 UR - https://www.unboundmedicine.com/medline/citation/10198185/Inhibition_of_Na_+__K+_pump_alleviates_the_shortening_of_action_potential_duration_caused_by_metabolic_inhibition_via_blockade_of_KATP_channels_in_coronary_perfused_ventricular_muscles_of_guinea_pigs_ L2 - https://linkinghub.elsevier.com/retrieve/pii/S0022-2828(98)90889-6 DB - PRIME DP - Unbound Medicine ER -