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J Hatae

Publications and source records attributed to J Hatae.

21 records · Page 2Linked to original sources

Effects of hypertonic perfusion on the ultrastructure of frog cardiac muscle.

The ultrastructural changes induced by hypertonic perfusion were investigated using the ventricular muscle of the bullfrog. It was demonstrated that the fixative tonicity critically affects the ultrastructure. Effects of sucrose-, NaCl- and urea-hypertonicities were investigated and compared. In both sucrose- and NaCl-hypertonic media, although the cardiac muscle strongly shrank and the extracellular spaces markedly increased according to increasing tonicity the width of the intercalated disc cleft remained unchanged and the cleft was never separated even in 3 times hypertonicity. The sucrose-hypertonicity made the feature of the fine structure extremely obscure and the electron densities in both the Z-line and the intercalated disc region markedly decreased. When both the perfusate and fixative were made hypertonic by urea, which is known to easily penetrate the cell membrane, a shrinkage of the myocardial cells was observed but to a lesser extent as compared with sucrose or NaCl. The striation pattern was disordered in this condition though the intercalated discs were never affected.

Animals↗

Effects of hypertonic urea solution on the contractility of the bullfrog ventricle.

UNLABELLED: The effects of hypertonic urea solution on the excitation-contraction coupling of the bullfrog's heart muscle were investigated. MATERIALS AND METHODS: Small strips obtained from the ventricular wall of Rana catesbiana were used. Contractile tension as well as transmembrane action potential were recorded in the single sucrose-gapped arrangement. The muscle weight was measured in order to check the changes in the dimension of muscle fiber both during isotonic and hypertonic perfusions. Light microscopic study was also performed to compare the effect of hyperosmolar urea with that of sucrose. RESULTS AND CONCLUSIONS: 3.0 T-urea solution exerted a triphasic change in twitch tension during hypertonic perfusion and a biphasic change during the recovery perfusion. An initial rapid decline was restored to the original level within 10 min and after an overshoot a secondary gradual decrease was observed during hypertonic perfusion. In spite of parallel change in the action potential duration with the time to peak tension there was an increase in dp/dt during the restoration phenomenon. The calcium sensitivity was altered in the 3.0 T-urea solution and thus in Ca-free solution the rate constant of the slow component of twitch decline was decreased. The muscle weight remained decreased during the whole period of hypertonic perfusion. Histological study revealed that the fiber bundles soaked in hypertonic urea solution show normal appearance whereas those in sucrose exhibit a marked shrinkage. These results show that urea can penetrate the heart muscle membrane easily and that urea has some augmenting action on the E-C coupling process.

Action Potentials↗