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A Hof

Publications and source records attributed to A Hof.

38 records · Page 3Linked to original sources

Stereoselectivity at the calcium channel: different profiles of hemodynamic activity of the enantiomers of the dihydropyridine derivative PN 200-110.

The enantiomers of PN 200-110 (PN), a highly potent calcium antagonist, were synthesized by a stereoselective synthesis. Cross-contamination was less than 0.2% for the (S)-enantiomer and 0.5% for the (R)-enantiomer. Both isomers inhibited depolarization-induced contraction of rabbit aorta, the (S)-enantiomer being much more active: The pD'2 values were 9.1 and 6.9 for the (S)- and the (R)-enantiomer, respectively. This activity of (R)-PN on potential-operated channels can be attributed to the contamination with 0.5% of (S)-PN. In anesthetized cats, the (S)-enantiomer lowered blood pressure and heart rate dose-dependently (0.3-10 micrograms/kg i.v.). The (R)-enantiomer had almost no effect on heart rate (HR) and blood pressure (BP) at doses up to 300 micrograms/kg. However, both enantiomers increased cardiac output and blood flow to the heart and the brain. The effects on regional blood flow were tissue-dependent, the (R)-enantiomer being surprisingly potent in the subendocardium of the left ventricle. The qualitative and quantitative differences between the activities of the two enantiomers suggest that the results obtained cannot merely be explained by traces of the more active enantiomer contaminating the less active enantiomer. These results, together with those found with the enantiomers of a nitro-substituted dihydropyridine, suggest that calcium channels appear to be able not only to discriminate between enantiomers but also to respond differently to them.

Animals↗

Effects of bromocriptine on the heart and the peripheral circulation of anesthetized cats.

Dopaminergic stimulants such as bromocriptine have multiple effects on the circulation. Based on dose-response curves obtained in preliminary experiments, we compared the effects of 30 micrograms/kg bromocriptine and 0.4 mg/kg dihydralazine infused intravenously over a period of 10 min into seven chloralose-urethane-anesthetized cats each. A third group of cats received placebo solution. The effect of both drugs on blood pressure was comparable, but other systemic hemodynamic variables and regional blood flows, measured with tracer microspheres, were altered differently. Bromocriptine lowered heart rate, did not change cardiac output, and increased total peripheral conductance modestly, whereas dihydralazine produced marked increases in cardiac output and total peripheral conductance. Bromocriptine dilated the vascular beds of the brain, kidneys, adrenal glands, and skeletal muscle without increasing flow through most of them. Dihydralazine caused striking vasodilation in the heart, brain, small intestine, and colon and a modest increase in conductance in the kidneys, adrenal glands, and skeletal muscle. Flow through the heart, brain, small intestine, and colon was increased. Vasoconstriction was observed in the pancreas with bromocriptine and in the liver, spleen, and, to a small extent, pancreas with dihydralazine. The distribution of effects was somewhat similar to the effects of dihydropyridine-derived calcium antagonists. With dihydralazine the fall in blood pressure was caused by peripheral vasodilation only, whereas with bromocriptine both peripheral vasodilation and effects on the heart contributed to the fall in blood pressure.

Anesthesia, General↗