Literature DB >> 1282930

Dependence of electrical slow waves of canine colonic smooth muscle on calcium gradient.

S M Ward1, K M Sanders.   

Abstract

1. The ionic dependence of the upstroke and plateau components of slow waves of canine colonic circular muscles was studied. 2. Reduced extracellular Ca2+ caused a decrease in the amplitude of the upstroke and plateau components, a decrease in the depolarization velocity, and a decrease in frequency. The reduction in the upstroke phase per 10-fold reduction in external Ca2+ was close to the value predicted by the Nernst relationship, suggesting that the membrane permeability to Ca2+ increases steeply during this phase. 3. Nifedipine (10(-9)-10(-6)) reduced the plateau component, but concentrations of 10(-6) M did not abolish the upstroke component. The data suggest that a nifedipine-resistant component of Ca2+ current may be involved in the upstroke. 4. Inorganic Ca2+ channel blockers (Mn2+ and Ni2+) blocked spontaneous slow waves at concentrations of 1.0 mM or less. 5. The upstroke component was more sensitive to Ni2+ than to Mn2+; a concentration of 0.040 mM-Ni2+ caused more than a 50% reduction in upstroke velocity. Ni2+ also reduced the plateau phase of slow waves. 6. The results suggest that the upstroke and plateau components of slow waves are dependent upon activation of voltage-dependent Ca2+ currents. The current responsible for the upstroke is partially resistant to dihydropyridines (at least at 10(-6) M). The current responsible for the plateau component is nifedipine-sensitive.

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Year:  1992        PMID: 1282930      PMCID: PMC1175646          DOI: 10.1113/jphysiol.1992.sp019303

Source DB:  PubMed          Journal:  J Physiol        ISSN: 0022-3751            Impact factor:   5.182


  26 in total

1.  The slow wave in the circular muscle of the guinea-pig stomach.

Authors:  M Ohba; Y Sakamoto; T Tomita
Journal:  J Physiol       Date:  1975-12       Impact factor: 5.182

2.  Effects of ouabain on background and voltage-dependent currents in canine colonic myocytes.

Authors:  E P Burke; K M Sanders
Journal:  Am J Physiol       Date:  1990-09

3.  Inward rectification in freshly isolated single smooth muscle cells of the rabbit jejunum.

Authors:  C D Benham; T B Bolton; J S Denbigh; R J Lang
Journal:  J Physiol       Date:  1987-02       Impact factor: 5.182

4.  Regulation of calcium concentration in voltage-clamped smooth muscle cells.

Authors:  P L Becker; J J Singer; J V Walsh; F S Fay
Journal:  Science       Date:  1989-04-14       Impact factor: 47.728

5.  Participation of Ca2(+)-activated K+ channels in electrical activity of canine gastric smooth muscle.

Authors:  A Carl; N G McHale; N G Publicover; K M Sanders
Journal:  J Physiol       Date:  1990-10       Impact factor: 5.182

6.  Effects of methylene blue on rhythmic activity and membrane potential in the canine proximal colon.

Authors:  K M Sanders; E P Burke; R J Stevens
Journal:  Am J Physiol       Date:  1989-04

7.  Enteric neural regulation of slow waves in circular muscle of the canine proximal colon.

Authors:  K M Sanders; T K Smith
Journal:  J Physiol       Date:  1986-08       Impact factor: 5.182

8.  Motoneurones of the submucous plexus regulate electrical activity of the circular muscle of canine proximal colon.

Authors:  K M Sanders; T K Smith
Journal:  J Physiol       Date:  1986-11       Impact factor: 5.182

9.  Different mechanisms of contraction generation in circular muscle of canine colon.

Authors:  C Barajas-López; J D Huizinga
Journal:  Am J Physiol       Date:  1989-03

10.  Dihydropyridine inhibition of single calcium channels and contraction in rabbit mesenteric artery depends on voltage.

Authors:  M T Nelson; J F Worley
Journal:  J Physiol       Date:  1989-05       Impact factor: 5.182

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  16 in total

1.  Analysis of pacemaker activity in the human stomach.

Authors:  Poong-Lyul Rhee; Ji Yeon Lee; Hee Jung Son; Jae J Kim; Jong Chul Rhee; Sung Kim; Sang Don Koh; Sung Jin Hwang; Kenton M Sanders; Sean M Ward
Journal:  J Physiol       Date:  2011-10-17       Impact factor: 5.182

2.  Voltage-dependent calcium entry underlies propagation of slow waves in canine gastric antrum.

Authors:  Sean M Ward; Rose Ellen Dixon; Andrew de Faoite; Kenton M Sanders
Journal:  J Physiol       Date:  2004-10-21       Impact factor: 5.182

3.  Electrical slow waves in the mouse oviduct are dependent on extracellular and intracellular calcium sources.

Authors:  Rose Ellen Dixon; Fiona C Britton; Salah A Baker; Grant W Hennig; Christina M Rollings; Kenton M Sanders; Sean M Ward
Journal:  Am J Physiol Cell Physiol       Date:  2011-08-31       Impact factor: 4.249

4.  Spontaneous electrical rhythmicity in cultured interstitial cells of cajal from the murine small intestine.

Authors:  S D Koh; K M Sanders; S M Ward
Journal:  J Physiol       Date:  1998-11-15       Impact factor: 5.182

5.  Effect of stretch on calcium channel currents recorded from the antral circular myocytes of guinea-pig stomach.

Authors:  W X Xu; S J Kim; S J Kim; I So; T M Kang; J C Rhee; K W Kim
Journal:  Pflugers Arch       Date:  1996-06       Impact factor: 3.657

Review 6.  Interstitial cells: regulators of smooth muscle function.

Authors:  Kenton M Sanders; Sean M Ward; Sang Don Koh
Journal:  Physiol Rev       Date:  2014-07       Impact factor: 37.312

7.  Caffeine inhibits nonselective cationic currents in interstitial cells of Cajal from the murine jejunum.

Authors:  Nan Ge Jin; Sang Don Koh; Kenton M Sanders
Journal:  Am J Physiol Cell Physiol       Date:  2009-07-22       Impact factor: 4.249

8.  Properties of pacemaker potentials recorded from myenteric interstitial cells of Cajal distributed in the mouse small intestine.

Authors:  Yoshihiko Kito; Hikaru Suzuki
Journal:  J Physiol       Date:  2003-10-17       Impact factor: 5.182

9.  Upstroke component of electrical slow waves in canine colonic smooth muscle due to nifedipine-resistant calcium current.

Authors:  S M Ward; K M Sanders
Journal:  J Physiol       Date:  1992-09       Impact factor: 5.182

10.  Characteristics of the NANC post-stimulus ('rebound') contraction of the urinary bladder neck muscle in sheep.

Authors:  K D Thornbury; K M Donaghy; J Peake
Journal:  Br J Pharmacol       Date:  1995-11       Impact factor: 8.739

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