» Articles » PMID: 3612086

Effects of Changes of Intracellular PH on Contraction in Sheep Cardiac Purkinje Fibers

Overview
Journal J Gen Physiol
Specialty Physiology
Date 1987 Jun 1
PMID 3612086
Citations 25
Authors
Affiliations
Soon will be listed here.
Abstract

Intracellular pH (pHi) was measured with a pH-sensitive microelectrode in voltage-clamped sheep cardiac Purkinje fibers while tension was simultaneously measured. All solutions were nominally CO2/HCO3 free and were buffered with Tris. The addition of NH4Cl (5-20 mM) produced an initial intracellular alkalosis that was associated with an increase of twitch tension. At the same time, a component of voltage-dependent tonic tension developed. Prolonged exposure (greater than 5 min) to NH4Cl resulted in a slow recovery of pHi accompanied by a decrease of tension. Removal of NH4Cl produced a transient acidosis that was accompanied by a fall of force. In some experiments, there was then a transient recovery of force. If extracellular pH (pHo) was decreased, then pHi decreased slowly. Tension also fell slowly. An increase of pHo produced a corresponding increase of both force and pHi. The application of strophanthidin (10 microM) increased force and produced an intracellular acidosis. The addition of NH4Cl, to remove this acidosis partially, produced a significant increase of force. The above results show that contraction is sensitive to changes of intracellular but not extracellular pH. This pH dependence will therefore modify the contractile response to inotropic maneuvers that also affect pHi.

Citing Articles

Ketone body 3-hydroxybutyrate elevates cardiac output through peripheral vasorelaxation and enhanced cardiac contractility.

Homilius C, Seefeldt J, Axelsen J, Pedersen T, Sorensen T, Nielsen R Basic Res Cardiol. 2023; 118(1):37.

PMID: 37688627 PMC: 10492777. DOI: 10.1007/s00395-023-01008-y.


Physiological and Pathological Functions of SLC26A6.

Wang J, Wang W, Wang H, Tuo B Front Med (Lausanne). 2021; 7:618256.

PMID: 33553213 PMC: 7859274. DOI: 10.3389/fmed.2020.618256.


Electrochemical Na+ and Ca2+ gradients drive coupled-clock regulation of automaticity of isolated rabbit sinoatrial nodal pacemaker cells.

Sirenko S, Maltsev V, Yaniv Y, Bychkov R, Yaeger D, Vinogradova T Am J Physiol Heart Circ Physiol. 2016; 311(1):H251-67.

PMID: 27208164 PMC: 4967203. DOI: 10.1152/ajpheart.00667.2015.


Factors affecting the rate of phosphocreatine resynthesis following intense exercise.

McMahon S, Jenkins D Sports Med. 2002; 32(12):761-84.

PMID: 12238940 DOI: 10.2165/00007256-200232120-00002.


Intrinsic H(+) ion mobility in the rabbit ventricular myocyte.

Vaughan-Jones R, Peercy B, Keener J, Spitzer K J Physiol. 2002; 541(Pt 1):139-58.

PMID: 12015426 PMC: 2290307. DOI: 10.1113/jphysiol.2001.013267.


References
1.
Eisner D, Valdeolmillos M . Measurement of intracellular calcium during the development and relaxation of tonic tension in sheep Purkinje fibres. J Physiol. 1986; 375:269-81. PMC: 1182758. DOI: 10.1113/jphysiol.1986.sp016116. View

2.
Deitmer J, Ellis D . Interactions between the regulation of the intracellular pH and sodium activity of sheep cardiac Purkinje fibres. J Physiol. 1980; 304:471-88. PMC: 1282943. DOI: 10.1113/jphysiol.1980.sp013337. View

3.
Eisner D, Lederer W, Vaughan-Jones R . The dependence of sodium pumping and tension on intracellular sodium activity in voltage-clamped sheep Purkinje fibres. J Physiol. 1981; 317:163-87. PMC: 1246783. DOI: 10.1113/jphysiol.1981.sp013819. View

4.
Allen D, Eisner D, Orchard C . Characterization of oscillations of intracellular calcium concentration in ferret ventricular muscle. J Physiol. 1984; 352:113-28. PMC: 1193201. DOI: 10.1113/jphysiol.1984.sp015281. View

5.
Boron W, De Weer P . Intracellular pH transients in squid giant axons caused by CO2, NH3, and metabolic inhibitors. J Gen Physiol. 1976; 67(1):91-112. PMC: 2214912. DOI: 10.1085/jgp.67.1.91. View