PubMed HealthSearch

Biomedical subjects

Z Kaygisiz

Publications and source records attributed to Z Kaygisiz.

3 recordsLinked to original sources

The effect of lanthanum on the mechanical function of the isolated perfused rat heart at different extracellular calcium concentrations.

The effects of 50 microM lanthanum (La3+) on the contractile force, rate and coronary flow of rat hearts perfused with solutions containing 2.5, 5, 7.5 mM calcium (Ca2+) have been investigated. La3+ produced a rapid and marked decrease in contractile force within 1-3 min ("early La(3+)-effect"). The inhibition of contractility by La3+ was reduced progressively when the Ca2+ ion concentration in the perfusion fluid was raised from 2.5 to 7.5 mM. However, after 10-80 min of La3+ perfusion the contractile force was increased significantly ("late La(3+)-effect"). Elevation of Ca2+ during exposure to La3+ increased its effect. During the late La(3+)-effect, a marked decrease in heart rate and a significant increase in time to reach peak tension, time for half relaxation and twitch duration was observed. High concentrations of perfusate Ca2+ decreased the chronotropic response to La3+, in contrast, elevated Ca2+ potentiated La(3+)-induced increase in time to reach peak tension, time for half relaxation and twitch duration. La3+ produced a significant decrease in coronary flow. High Ca2+ augmented the decrease coronary flow. The findings indicate that La3+ may produce marked effects on myocardial function. High extracellular Ca2+ reduces the La(3+)-induced initial decrease in force of contraction, but potentiates the late increase in contractile force by La3+. Elevated external Ca2+ also increases the effects of La3+ on twitch parameters, heart rate and coronary flow.

Animals

Prostaglandin-independent decrease of sheep ureter contractility induced by bradykinin.

The mechanisms that mediate the actions of bradykinin on ureteral motility are poorly defined and mediation via prostaglandins has not been examined. Therefore, the effects of bradykinin on contractility and the possible mediator role of prostaglandins have been investigated in sheep ureter. At the concentrations of 10(-8), 10(-7) and 10(-6) M, bradykinin elicited marked reductions in contractile force. When ureteral strips were treated separately with 10(-6) M indomethacin, 2 x 10(-6) M sodium salicylate and 10(-5) M aspirin, each drug produced a significant decrease in contractile force. In strips in which prostaglandin synthesis was inhibited by the above concentrations of indomethacin, sodium salicylate and aspirin, 10(-7) M bradykinin significantly decreased the contractility. From these data, we concluded that in ureter bradykinin decreases contractility via a mechanism not involving prostaglandin generation.

Animals

The role of nitric oxide in the regulation of coronary flow and mechanical function of isolated, perfused rat hearts.

The role of nitric oxide (NO) in the regulation of coronary flow and mechanical function under basal conditions and when exposed to nifedipine was studied in perfused rat hearts. Inhibition of basal release of NO by bolus injections of NG-nitro-L-arginine (L-NNA) (90 mM) and NG-nitro-L-arginine methyl ester (L-NAME) (185, 370 and 740 mM) induced significant decrease in coronary flow, contractile force and heart rate. L-NAME in the doses of 185, 370 and 740 mM also decreased significantly contractile force and heart rate during treatment with 170 microM nifedipine. However, the same doses of L-NAME caused an insignificant reduction in coronary flow in the presence of nifedipine. These findings suggest that NO has an important role in the regulation of coronary flow and mechanical performance under basal conditions and during the hearts exposed to nifedipine. Nifedipine may attenuate the myocardial ischaemia induced by the loss of NO production.

Animals