Literature DB >> 3800847

Electrophysiological analysis of the sensitivity to calcium in ventricular muscle from alloxan diabetic rats.

M P Sauviat, D Feuvray.   

Abstract

The effects of acute and chronic alloxan diabetes on the transmembrane electrical activity of rat heart papillary muscle were investigated. The action potential duration (APD) appeared markedly prolonged in all diabetic papillary muscles, as compared to normal. This prolongation of ADP, with no difference in the resting potential (RP), resulted from both a lengthening of the complex time course plateau and a slower rate of repolarisation. APD0 (at 0 mV) and APD10 (+10 mV from RP) increased, respectively, an average of 50% and 24% in the acute, and 72% and 98% in the chronic diabetics as compared to control, whereas Vmax and overshoot (OS) were unchanged. Varying [Ca]o between 0.5 and 3.5 mM did not induce any change in the RP of either control or diabetic papillary muscles. Conversely, there were differences, within and between groups, in the amplitude of the OS and in Vmax, depending on the [Ca]o concentration. In particular, OS and Vmax of acute diabetics were markedly reduced at 1.5 mM. This reduction was maintained at concentrations of [Ca]o lower than 1.5, attesting to the greater sensitivity of both acutely and chronically diabetic muscles to a decrease in external calcium. Cd, a Ca-channel blocker, reduced in diabetics the duration of both the complex plateau and the repolarisation phase, suggesting that a Ca inward current was maintained throughout these two phases. Direct evidence for elucidating the mechanism(s) of the observed APD change in diabetics will be obtained only by transmembrane current analysis.

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Year:  1986        PMID: 3800847     DOI: 10.1007/bf01907755

Source DB:  PubMed          Journal:  Basic Res Cardiol        ISSN: 0300-8428            Impact factor:   17.165


  32 in total

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Authors:  S WEIDMANN
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2.  [Effects of substitution of lithium and strontium to sodium and calcium on cardiac electric activity].

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5.  Altered myocardial mechanics in diabetic rats.

Authors:  F S Fein; L B Kornstein; J E Strobeck; J M Capasso; E H Sonnenblick
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6.  Existence of two transient outward currents in sheep cardiac Purkinje fibers.

Authors:  E Coraboeuf; E Carmeliet
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7.  Calcium current-dependent and voltage-dependent inactivation of calcium channels in Helix aspersa.

Authors:  A M Brown; K Morimoto; Y Tsuda; D L wilson
Journal:  J Physiol       Date:  1981-11       Impact factor: 5.182

8.  A comparison of calcium currents in rat and guinea pig single ventricular cells.

Authors:  I R Josephson; J Sanchez-Chapula; A M Brown
Journal:  Circ Res       Date:  1984-02       Impact factor: 17.367

9.  Effect of experimental diabetes on rat cardiac cAMP, phosphorylase, and inotropy.

Authors:  R V Vadlamudi; J H McNeill
Journal:  Am J Physiol       Date:  1983-06

10.  Mechanism of calcium channel blockade by verapamil, D600, diltiazem and nitrendipine in single dialysed heart cells.

Authors:  K S Lee; R W Tsien
Journal:  Nature       Date:  1983-04-28       Impact factor: 49.962

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  6 in total

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2.  Contractile properties of cardiac papillary muscle in streptozotocin-diabetic rats and the effects of aldose reductase inhibition.

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4.  Calcium and potassium currents in ventricular myocytes isolated from diabetic rats.

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5.  ATP-sensitive potassium channels are altered in ventricular myocytes from diabetic rats.

Authors:  J M Smith; G M Wahler
Journal:  Mol Cell Biochem       Date:  1996-05-10       Impact factor: 3.396

6.  Rutin administration attenuates myocardial dysfunction in diabetic rats.

Authors:  Julliano F C Guimaraes; Bruno P Muzio; Camila M Rosa; Andre F Nascimento; Mario M Sugizaki; Ana A H Fernandes; Antonio C Cicogna; Carlos R Padovani; Marina P Okoshi; Katashi Okoshi
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  6 in total

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