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PMID: 894613 Published · ppublish English Journal Article

Pancreatic acinar cells: the acetylcholine equilibrium potential and its ionic dependency.

The Journal of physiology ·Vol. 269 ·No. 3 ·1977-08-00 ·Pages 735-51

Iwatsuki N, Petersen OH

Abstract

1. Two glass micro-electrodes were inserted into neighbouring cells from rat or mouse pancreatic segments, superfused in vitro. The tip of a third glass micro-electrode, filled with 2 M-AChCl, was placed just outside the acinus under investigation. Membrane potential and resistance, and changes in these parameters in response to short pulses of ACh stimulation, were recorded.2. The resting current-voltage relationship, obtained by injecting 100 msec depolarizing or hyperpolarizing current pulses through one of the intracellular micro-electrodes and recording the membrane potential with the other intracellular electrode, was linear within the range -5 to -60 mV.3. Injecting depolarizing or hyperpolarizing current (d.c.) through one of the intracellular micro-electrodes, the membrane potential (as measured with the other intracellular micro-electrode) could be set at various levels. The effect of ACh at different membrane potentials was investigated. When the acinar cell membrane was hyperpolarized, the amplitude of ACh-evoked depolarization was increased, while ACh-evoked depolarization was reduced when the membrane potential was reduced by depolarizing current, and finally changed into a hyperpolarization at very low membrane potentials. In each acinus investigated (rat and mouse), there was a linear relationship between amplitude of ACh-evoked potential change (DeltaV) (+ value or - value according to polarity) and resting membrane potential. During superfusion with control solution, the value of the membrane potential at which ACh did not evoke a potential change (E(ACh)) was about -15 mV in the mouse and about -20 mV in the rat. During superfusion with a chloride-free sulphate-containing solution (steady state), a linear relationship between DeltaV and resting membrane potential was again found but E(ACh) (mouse) was about +10 mV.4. A continuous rough estimate of E(ACh) was obtained by injecting repetitively depolarizing current pulses (100 msec) through one intracellular micro-electrode; in this way, the effect of ACh measured by the other intracellular electrode could be assessed simultaneously at the spontaneous resting level, and at a depolarized level. The direction of change in E(ACh) following acute changes in the superfusion fluid ion composition was assessed. Replacing extracellular chloride by sulphate caused an immediate change in E(ACh) in the positive direction. Re-admission of chloride, after a long period of chloride ion deprivation, caused an immediate sharp change in E(ACh) in the negative direction. Replacing extracellular sodium by Tris caused an immediate transient negative change in E(ACh). In contrast, taking away extracellular calcium changed E(ACh) in a positive direction. Augmenting extracellular potassium concentration to 40 mM caused a change in E(ACh) in the positive direction.5. At a membrane potential (V) equal to E(ACh) the sum of ionic currents evoked by the action of ACh is zero. Using the Goldman treatment, it appears that ACh increases membrane Na, K and Cl permeability. The approximate relative ion permeabilities of the pathways opened up by ACh are: P(Na)/P(K) = 2.5 and P(Cl)/P(K) = 5. At V = E(ACh), the approximate relative sizes of the ACh-evoked currents are: I(Na)/I(K) = 2.6 and I(Cl)/I(K) = 1.6 ACh, therefore, causes influx of Na and Cl and a small efflux of K.

MeSH Terms
Acetylcholine/pharmacology Animals Calcium/pharmacology Cell Membrane Permeability Chlorides/pharmacology Electric Conductivity In Vitro Techniques Kinetics Membrane Potentials/drug effects Mice Pancreas/cytology,physiology Rats Sodium/pharmacology
Chemicals
Chlorides Sodium Acetylcholine Calcium
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Iwatsuki N
Petersen O H
References (15)
15 references, click to expand
  1. Pancreatic acinar cells: the role of calcium in stimulus-secretion coupling.
    J Physiol. 1976 Jan;254(3):583-606 PMID: 815543
  2. Determination of acetylcholine null potential in mouse pancreatic acinar cells.
    Nature. 1976 Oct 28;263(5580):784-6 PMID: 995193
  3. Pancreatic acinar cells: ionic dependence of acetylcholine-induced membrane potential and resistance change.
    J Physiol. 1975 Jan;244(2):431-65 PMID: 1142124
  4. Secretion of electrolytes by the pancreas of the anaestetized rat.
    J Physiol. 1975 Nov;252(2):379-96 PMID: 1206529
  5. Electrical changes in the membrane in junctional transmission.
    Biochim Biophys Acta. 1973 Nov 28;300(3):289-317 PMID: 4357957
  6. The action of scretin, cholecystokinin-pancreozymin and caerulein on pancreatic secretion in the rat.
    J Physiol. 1972 Sep;225(3):679-92 PMID: 5076393
  7. Electrolyte and inulin spaces of rat salivary glands and pancreas.
    Am J Physiol. 1960 Oct;199:649-52 PMID: 13748311
  8. Effects of calcium on the conductance change of the end-plate membrane during the action of transmitter.
    J Physiol. 1963 Jun;167:141-55 PMID: 13984697
  9. Secretion of fluid and amylase in the perfused rat pancreas.
    J Physiol. 1977 Jan;264(3):819-35 PMID: 191595
  10. Pancreatic acinar cells: localization of acetylcholine receptors and the importance of chloride and calcium for acetylcholine-evoked depolarization.
    J Physiol. 1977 Aug;269(3):723-33 PMID: 894612
  11. Na+ dependence of in vitro pancreatic amylase release.
    Am J Physiol. 1975 Oct;229(4):1023-6 PMID: 1103635
  12. Transport and metabolism of calcium ions in nerve.
    Prog Biophys Mol Biol. 1972;24:177-223 PMID: 4118937
  13. Pancreatic acinar cells: membrane potential and resistance change evoked by acetylcholine.
    J Physiol. 1974 Apr;238(1):145-58 PMID: 4838802
  14. Stimulation of amylase secretion from the perfused cat pancreas by potassium and other alkali metal ions.
    J Physiol. 1971 Aug;216(3):611-24 PMID: 5565641
  15. The effect of sodium ions on the electrical activity of giant axon of the squid.
    J Physiol. 1949 Mar 1;108(1):37-77 PMID: 18128147
Article Info
Journal
The Journal of physiology
Abbr.
J Physiol
ISSN
0022-3751
Published
1977-08-00
Pages
735-51
Language
English
Region
England
NLM ID
0266262
PMCID
PMC1283737
Subset
IM
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