Origin of motion in the human ureter: mechanics, energetics and kinetics of the myosin molecular motors
Ureteral peristalsis is the result of coordinated mechanical motor performance of longitudinal and circular smooth muscle layer of the ureter wall. The main aim of this study was to characterize in smooth muscle of proximal segments of human ureter, the mechanical properties at level of muscle tissu...
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Veröffentlicht in: | Urologia 2012-04, Vol.79 (2), p.123-129 |
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Hauptverfasser: | , , , , , |
Format: | Artikel |
Sprache: | ita |
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Zusammenfassung: | Ureteral peristalsis is the result of coordinated mechanical motor performance of longitudinal and circular smooth muscle layer of the ureter wall. The main aim of this study was to characterize in smooth muscle of proximal segments of human ureter, the mechanical properties at level of muscle tissue and at level of myosin molecular motors.
Ureteral samples were collected from 15 patients, who underwent nephrectomy for renal cancer. Smooth muscle strips longitudinally and circularly oriented from proximal segments of human ureter were used for the in vitro experiments. Mechanical indices including the maximum unloaded shortening velocity (Vmax), and the maximum isometric tension (P0) normalized per cross-sectional area, were determined in vitro determined in electrically evoked contractions of longitudinal and circular smooth muscle strips. Myosin cross-bridge (CB) number per mm2 (Ψ) the elementary force per single CB (Ψ) and kinetic parameters were calculated in muscle strips, using Huxley's equations adapted to nonsarcomeric muscles.
Longitudinal smooth muscle strips exhibited a significantly (p |
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ISSN: | 0391-5603 1724-6075 |
DOI: | 10.5301/RU.2012.9110 |