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R Casteels

Publications and source records attributed to R Casteels.

221 records · Page 13Linked to original sources

Membrane potential and ion content in the smooth muscle of the guinea-pig's taenia coli at different external potassium concentrations.

1. The relation between the membrane potential and the intracellular ion concentration of the taenia coli was studied in solutions with different external potassium concentrations.2. Isotonic solution in which the sum of NaCl+KCl was constant did not produce swelling of the smooth muscle of taenia coli, even at high [K](o), and did not change the intracellular chloride concentration.3. Addition of an equivalent amount (118 mM) of NaCl or KCl to Krebs solution produced the same loss of water.4. Solutions in which the product [K][Cl] was kept constant decreased the internal chloride concentration so that the chloride equilibrium potential became temporarily positive and returned only after 2 hr to a negative value.5. From these results and the finding that even in normal Krebs solution E(Cl) was about 35 mV more positive than the membrane potential, it is concluded that the chloride ions are not passively distributed. The potassium equilibrium potential is the main factor in the generation of the membrane potential. The large discrepancy between the two can be explained by the non-passive chloride distribution and by the sodium permeability of the membrane. The maintenance of the normal cell volume in solutions with constant sum of NaCl+KCl is explained by the constant intracellular chloride concentration.

Animals↗

The action of ouabain on the smooth muscle cells of the guinea-pig's taenia coli.

1. The action of 10(-6) g/ml. of ouabain on the membrane potential, membrane activity, tension development and the ion content of the smooth muscle of the guinea-pig's taenia coli has been investigated.2. This ouabain concentration produced a depolarization of the membrane, accompanied by an initial increase of the spike frequency and later a depolarization block. Removal of the ouabain produced a sudden and pronounced hyperpolarization leading to a block of spike discharge.3. Reduction of the external sodium concentration, or an increase of the external calcium concentration, or exposure to 10(-7) g/ml. adrenaline repolarized the cell membrane in the presence of ouabain.4. Ouabain decreased the tension development of the taenia coli.5. Ouabain decreased the intracellular potassium and chloride and increased the intracellular sodium concentration. However, the corresponding changes of the equilibrium potentials were not sufficient to explain the changes of the membrane potential.6. A possible explanation for the action of ouabain is presented suggesting that the drug may decrease the calcium binding properties of the cell membrane.

Animals↗

Effects of doxorubicin and ruthenium red on intracellular Ca2+ stores in skinned rabbit mesenteric smooth-muscle fibres.

Several agents are known to influence the contraction of skeletal and cardiac muscle via a modification of the Ca2+ release mechanism of the sarcoplasmic reticulum, e.g. caffeine, ryanodine, ruthenium red and doxorubicin. Of these substances, only the effects of caffeine and ryanodine have been described in smooth muscle. In this paper we describe the action of ruthenium red and doxorubicin on saponin-skinned mesenteric arteries of the rabbit. A high concentration (20 microM) of ruthenium red inhibited the Ca2+ release induced by low concentrations of caffeine, but had little effect on Ca2+ release induced by high concentrations (20 mM) of caffeine. This result indicates that the Ca2+ release channel of the internal Ca2+ store of smooth muscle cells is less sensitive to inhibition by ruthenium red than that of striated muscle. Doxorubicin in the micromolar range elicited a Ca2+ release and a concomitant contraction, essentially similar to its effect on skinned skeletal muscle cells. This work reveals further similarities between the Ca2+ release mechanisms of smooth and striated muscle, but the results also indicate that important differences between both systems may exist.

Animals↗

Ca2+ homeostasis in vascular smooth muscle.

The free intracellular calcium concentration is an important link in the excitation-contraction coupling mechanism of vascular smooth muscle. In this review, some current topics about vascular smooth muscle as regards Ca2+ storage, Ca2+ release, Ca2+ extrusion and Ca2+ regulation are discussed. Particular attention is paid to Ca2+ mobilized from the sarcoplasmic reticulum, the physiologically important Ca2+ reservoir in vascular smooth muscle. This occurs through two Ca2+ release channels: the inositol 1,4,5-trisphosphate receptor and the ryanodine receptor; the characteristics, function and control of these two receptors are summarized. Emphasis is also placed on a role of the nucleus as a potential Ca2+ storage site.

Animals↗