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[Effect of potassium ions on electrogenesis and contraction of ureter smooth muscle].

Shuba Mf, Taranenko Vm, Kochemasova Ng

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Abstract

In the ureter smooth muscle cells, high--K solution produced a depolarization at the onset of which the action potentials (AP) and contraction occur; the latter consists of an initial phasic (Ph) and subsequent tonic (T) components. Ph component is initiated by the AP, T component--by a stable potassium depolarization. In Ca--free solution the AP, Ph and T components are blocked, although a sustained potassium depolarization is preserved. Basing on these results it is suggested that: 1) phasic contraction is initiated by calcium ions influxed via fast potential--dependent calcium channels participating in the AP generation; 2) tonic contraction is also initiated mainly by extracellular calcium influx through slow potential--dependent calcium channels of plasmatic membrane that appear to be similar to calcium channels of sarcoplasmic reticulum membrane in skeletal muscles and of the membrane of presinaptic nerve terminals.

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What this paper is about

In the ureter smooth muscle cells, high--K solution produced a depolarization at the onset of which the action potentials (AP) and contraction occur; the latter consists of an initial phasic (Ph) and subsequent tonic (T) components. Ph component is initiated by the AP, T component--by a stable potassium depolarization. In Ca--free solution the AP, Ph and T components are blocked, although a sustained potassium depolarization is preserved. Basing on these results it is suggested that: 1) phasic contraction is initiated by calcium ions influxed via fast potential--dependent calcium channels participating in the AP generation; 2) tonic contraction is also initiated mainly by extracellular calcium influx through slow potential--dependent calcium channels of plasmatic membrane that appear to be similar to calcium channels of sarcoplasmic reticulum membrane in skeletal muscles and of the membrane of presinaptic nerve terminals.

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Available abstract

In the ureter smooth muscle cells, high--K solution produced a depolarization at the onset of which the action potentials (AP) and contraction occur; the latter consists of an initial phasic (Ph) and subsequent tonic (T) components. Ph component is initiated by the AP, T component--by a stable potassium depolarization. In Ca--free solution the AP, Ph and T components are blocked, although a sustained potassium depolarization is preserved. Basing on these results it is suggested that: 1) phasic contraction is initiated by calcium ions influxed via fast potential--dependent calcium channels participating in the AP generation; 2) tonic contraction is also initiated mainly by extracellular calcium influx through slow potential--dependent calcium channels of plasmatic membrane that appear to be similar to calcium channels of sarcoplasmic reticulum membrane in skeletal muscles and of the membrane of presinaptic nerve terminals.

Key concepts: Depolarization, Chemistry, Tonic (physiology), Calcium, Contraction (grammar), Biophysics, Potassium, Membrane potential

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[Effect of potassium ions on electrogenesis and contraction of ureter smooth muscle]. — Research Paper | ScholarLens