Spontaneously hypertensive rats with diabetes: effects of some vasoconstrictors on isolated small arteries.
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Publications and source records attributed to M Pfaffendorf.
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Importance of L-channels for calcium: Calcium L-channels, the specific target of calcium antagonists, appear to be the receptors for these therapeutic agents. Therefore, the accessibility of these channels/receptors to calcium antagonists is a major determinant of the response to these drugs in cardiovascular disorders, including essential hypertension. As with numerous other drugs, the concentration at the receptor level and its time-course largely determine not only the intensity but also the rate of onset and the duration of the drug's effect. Disadvantages of nifedipine: Within the series of dihydropyridine calcium antagonists, the first compound introduced was nifedipine, a relatively hydrophilic drug. Owing to its hydrophilic character the drug rapidly reaches the receptor, thus explaining the rapid onset of its vasodilator action. Accordingly, reflex tachycardia develops, which is not only triggered by the degree of vasodilation but also by the rapidity of its onset. In addition, nifedipine has a short duration of action, requiring the use of special galenic formulations to allow one dose a day. New dihydropyridine calcium antagonists: In view of the disadvantages of the hydrophilic calcium antagonists, attempts have been made to develop dihydropyridines with a slower onset and a longer duration of action. This may be achieved by drugs which are largely in the ionized state at a physiological pH (e.g. amlodipine) and therefore combine slowly with the receptor and bind firmly to various tissue compartments. Another logical approach is the use of highly lipophilic drugs such as lacidipine. Because of its physicochemical properties, the effect in equilibrium is reached very slowly, after up to 5 h in isolated tissues and after more than 2 h after intravenous administration. Lacidipine appears to slowly enter a lipid compartment surrounding the dihydropyridine binding site, which has to be saturated before an equilibrium effect is reached. In addition, the persistence of the drug in this lipid compartment contributes to its long-lasting vasodilator effect.
OBJECTIVES: Hypertension in humans and experimental animals is known to be associated with an increase in left ventricular myocardial mass. The development of cardiac hypertrophy is not caused by increased blood pressure alone; the autonomic nervous system may also play an important role. DESIGN: The functional responses to the beta-adrenoceptor agonists isoprenaline, dobutamine, salbutamol and terbutaline, and the alpha 1-adrenoceptor agonists methoxamine, cirazoline and phenylephrine were studied in isolated (Langendorff) hearts from spontaneously hypertensive rats (SHR) and age-matched Wistar-Kyoto (WKY) controls. The results were compared with data from radioligand binding experiments. RESULTS: There was no significant difference in the increase of left ventricular pressure induced by all beta-adrenoceptor agonists studied in SHR and WKY rat hearts. Although there was no significant difference in the response to phenylephrine, the inotropic responses to cirazoline and methoxamine proved to be significantly weaker in hearts from SHR than in those from WKY rats. Binding experiments with 3H-prazosin revealed no differences in density or affinity for cardiac tissues from SHR and WKY rats. CONCLUSIONS: Long-standing hypertension leads to an impaired response of the isolated heart to alpha 1-adrenoceptor stimulation, without changes in alpha 1-receptor density or affinity. It seems likely that changes in postreceptor events are responsible for the impaired inotropic response to alpha 1-adrenoceptor agonists in hearts from SHR.
OBJECTIVE: To study the inotropic response to beta-adrenoceptor stimulation in isolated hypertrophied hearts from hypertensive rats. DESIGN AND METHODS: Cardiac hypertrophy was induced in Wistar rats by stenosing the abdominal aorta. Functional responses to isoprenaline, dobutamine, terbutaline and salbutamol were measured in paced (5 Hz), aortically stenosed hearts (18-20 and 32-34 weeks of age) and compared with those of sham-operated spontaneously hypertensive (SHR) and Wistar-Kyoto (WKY) rats. RESULTS: Following aortic stenosis, which was accompanied by less hypertension than that sustained by SHR, the Wistar rat hearts showed more pronounced cardiac hypertrophy. An initially equal inotropic response to the beta-adrenoceptor agonists (18-20 weeks) was reduced to 45% at 32-34 weeks in SHR but not in WKY rat hearts. The response to beta-adrenoceptor stimulation in the hypertrophied Wistar rat hearts was reduced at 18-20 weeks to 30% and at 32-34 weeks to 10% of controls, respectively. The response by all hypertrophied hearts to forskolin and N,2'-O-dibutyryladenosine 3':5' monophosphate was also diminished. CONCLUSIONS: The impaired contractile response to beta-adrenoceptor agonism is more clearly related to cardiac hypertrophy than to hypertension.
The pressor responses to selective alpha 1-adrenoceptor agonists (cirazoline and methoxamine) and to alpha 2-adrenoceptor agonists (UK-14,304 and B-HT 933) were investigated in pithed, streptozotocin-induced diabetic rats and age-matched control animals. Three months after induction of diabetes, the basal values of diastolic blood pressure (DBP) were the same in pithed diabetic and control rats (34.3 +/- 4.4 vs. 32.8 +/- 4.4 mm Hg, p greater than 0.05, n = 30). In pithed diabetic rats, dose-response curves for the vasoconstrictor effects of cirazoline and methoxamine were shifted to the right with a slight decrease in the maximum response as compared with those in control animals. In contrast, no shift in dose-response curves for the alpha 2-adrenoceptor-mediated vasoconstrictor effects was observed, as reflected by similar pD2 values. A pronounced decrease in the maximum pressor response to the alpha 2-adrenoceptor agonists could be demonstrated. This reduction was significantly greater than that of the alpha 1-adrenoceptor agonists. In conclusion, the functional role of alpha 1- and alpha 2-adrenoceptors in the peripheral resistance vessels appears to be differentially influenced by the diabetic state.
1. In the present study, we tested the hypothesis that in the pithed rat preparation two subtypes of the alpha 1-adrenoceptor are linked to two different signal transduction mechanisms, both of which contribute to vasoconstriction, one facilitating Ca(2+)-entry from the extracellular fluid (alpha 1A) and one promoting the release of Ca2+ from intracellular sources (alpha 1B). 2. The selective alpha 1A-adrenoceptor antagonist, 5-methyl-urapidil, and the selective alpha 1B-adrenoceptor antagonist, chloroethylclonidine, were unable to discriminate between alpha 1-adrenoceptor-mediated pressor responses, which relied on an entry of extracellular Ca2+ sensitive to nifedipine and an intracellular release of Ca2+ insensitive to nifedipine, respectively. 3. Chloroethylclonidine, 12.5 and 25 mg kg-1 i.v., were equieffective, and had only minor effects on alpha 1-adrenoceptor-mediated increases in diastolic blood pressure. This could be associated with a small decrease in the receptor-reserve of the pithed rat preparation due to irreversible receptor blockade by this antagonist. These data indicate that chloroethylclonidine-sensitive alpha 1-adrenoceptors constitute only a minor fraction of the total alpha 1-adrenoceptor population on rat arterial resistance vessels. 4. Chloroethylclonidine behaved as a partial agonist eliciting a small increase in baseline diastolic blood pressure which could be inhibited by Ca(2+)-entry blockade with nifedipine. 5. Chloroethylclonidine potentiated the pressor responses elicited by the alpha 2-adrenoceptor agonists UK-14,304 and azepexole (B-HT 933). 6. No evidence was found in the pithed rat that alpha 1-adrenoceptor-mediated Ca(2+)-entry from the extracellular fluid and Ca(2+)-release from intracellular stores are mediated by alpha 1A and alpha 1B-adrenoceptors, respectively.
1. The nature of the muscarinic receptor subtype mediating endothelium-dependent vascular relaxation was investigated in the perfused mesenteric vascular bed preparation which is a model for resistance vessels. 2. After methoxamine-induced vasoconstriction the vessels were dilated with acetyl-beta-metacholine (MCh). 3. The potency of the M1-selective antagonist pirenzepine, the M2-selective antagonists AF-DX 116 and AQ-RA 741, the M3-selective antagonists 4-DAMP and p-FHHSiD to block the MCh-induced vasodilation was quantified by means of pA2-values. Atropine was used for comparison. 4. The rank order of potency for the various muscarinic receptor antagonists appears to be: atropine > 4-DAMP > p-FHHSiD > pirenzepine > AQ-RA 741 > AF-DX 116 which is similar to findings in conduit arteries. 5. The high potency of the M3-selective antagonists 4-DAMP and p-FHHSiD and the low potency of the M1- and M2-selective antagonists suggest a major role of M3-receptors in the cholinergic vasodilatation in the perfused mesenteric vascular bed.
OBJECTIVE: In connection with hypertension, research concerning 5-hydroxytryptamine (5-HT) receptors and subtypes in the cardiovascular system has so far been predominantly focused on various vascular tissues. In this study, the effects of 5-HT were investigated in isolated hearts with experimental cardiac hypertrophy. DESIGN AND METHODS: Cardiac hypertrophy was induced by stenosing the abdominal aorta (ASR) of 5-week-old Wistar rats. The functional response to serotonin was measured in unpaced, ASR hearts (18-20 weeks) and compared with those of "sham" operated SHR and WKY rats. RESULTS: The ASR, less hypertensive than SHR, showed more pronounced cardiac hypertrophy. The positive chronotropic and coronary vasodilator response to 5-HT was reduced in hypertrophied hearts from SHR and ASR when compared to "sham" operated and normotensive controls. The positive chronotropic effect of 5-HT could be antagonised with ketanserin, without affecting the coronary vasodilation. 5-HT did not induce any change in contractile force. CONCLUSIONS: Cardiac hypertrophy is associated with impaired coronary vasodilator and chronotropic responsiveness to serotonin. The chronotropic response to 5-HT is mediated by the 5-HT2-receptor subtype.
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Guinea-pig common bile duct preparations were used to quantify the spasmolytic potency of N-butylscopolamine (NBS), papaverine, gallopamil and nifedipine. A method was developed which allowed the measurement of intraluminal pressure changes in vitro. Barium chloride, carbachol and a solution with elevated potassium concentrations were used to stimulate smooth muscles. Concentration-response relationships for the spasmogens as well as for the spasmolytic drugs were evaluated in a cumulative manner. Furthermore, non-cumulative concentration-response curves were constructed for carbachol in the absence and presence of NBS. The -log EC50-values of the spasmogens were found to be 3.28 +/- 0.08 (BaCl2), 6.46 +/- 0.07 (carbachol) and 1.31 +/- 0.08 (KCl), respectively. The Emax values of carbachol and potassium were comparable, and were twice as high as the Emax of BaCl2. Papaverine was less potent than the calcium antagonists gallopamil and nifedipine, but proved capable of completely suppressing elevated muscular tone of the common bile duct preparation, independent of the stimulus used. NBS showed a high potency in suppressing only a carbachol-induced pressure increase, while it was rather ineffective when BaCl2 or a high potassium solution was used as the spasmogen. The concentration-response-curve for carbachol was shifted to the right in a parallel manner by NBS. Only a slight depression of Emax was observed. From the results it is concluded that NBS acts mainly as a muscarinic receptor antagonist. The high potency found for the calcium antagonists, gallopamil and nifedipine, in this model may indicate a possible role for these compounds in the treatment of biliary colic.
The influence of global ischemia on cardiac beta-adrenoceptors was studied in rat and guinea pig Langendorff hearts (LH), both by functional and binding experiments using the specific beta-adrenoceptor ligand (-)-[125I]-iodocyanopindolol. Neither ischemia (30 or 60 min) nor postischemic reperfusion caused any change in beta-adrenoceptor density, affinity or in the beta 1/beta 2 ratio in LH of normal rats or in LH of rats pretreated with reserpine or 6-hydroxydopamine (6-OHDA), or in guinea pig LH, whereas perfusion of rat LH with 10(-5) M isoprenaline (15 min) caused the expected decrease in beta-adrenoceptor density. After ischemia, isoprenaline was no longer able to influence beta-adrenoceptor density, suggesting that the internalization mechanism is impaired. In functional studies, perfusion of the rat LH with 10(-5) M isoprenaline (15 min) shifted the concentration-response curve for isoprenaline to the right. Thirty-minute global ischemia virtually abolished the inotropic but not the chronotropic response to isoprenaline. Ischemia did not impair the inotropic response to ouabain or to calcium, indicating that the contractile apparatus itself was still largely intact. Our results suggest that the contractile failure after ischemia is not caused by a decrease in beta-adrenoceptor density or by a defect in the contractile apparatus but by an impaired second-messenger system.
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1. It was tested using isolated guinea-pig atria whether negative inotropic drugs could be differentiated by measuring force under both equilibrium conditions and after a rest period leading to potentiated beats. 2. A drug believed to interfere with sarcoplasmic reticular function, ryanodine, preferentially suppressed potentiated beats, whereas the calcium antagonists gallopamil and felodipine selectively depressed force under continuous stimulation. 3. Gentamicin and doxorubicin also exerted characteristic effects on the two force parameters, the former resembling calcium antagonists, the latter ryanodine. 4. The method used is suitable for a descriptive classification of negative inotropic drugs, possibly according to their cellular mode of action.
INTRODUCTION: The quantification of [(3)H]noradrenaline spillover from electrically stimulated, sympathetic nerves is a widely used method to study presynaptic effects of hormones, transmitters and drugs. Although a straightforward approach, the execution of the experiments is not trivial. This holds true mainly for a reliable control of the experimental conditions, a major pitfall of the commonly used superfusion setup, and problems concerning the sampling of the tritium containing probes. METHODS: These difficulties prompted us to develop a variant of this method, which is based on a classical organ bath setup. Rabbit thoracic aortic rings were incubated with [(3)H]-labeled noradrenaline. Instead of being constantly washed away by superfusion, the [(3)H]noradrenaline is allowed to accumulate in the medium. RESULTS: Electrical field stimulation (EFS) (2 Hz, 3 ms, 150 mA) caused a significant increase of [(3)H]noradrenaline outflow by approximately a factor 4.2 (P<.05). The fractional release of noradrenaline during consecutive periods of stimulation remained unaltered (FR(2)/FR(1) 0.99+/-0.03). The EFS-evoked release could be nearly abolished by the selective sodium channel blocker tetrodotoxin (1 microM) (FR(2)/FR(1) 0.06+/-0.03, P<.05). The N-type calcium antagonist omega-conotoxin GVIA (0.3 microM) abolished the stimulation-evoked outflow (FR(2)/FR(1) 0.01+/-0.06, P<.05), whereas the antisympathotonic agent guanethidine (10 microM) attenuated the EFS-evoked noradrenaline outflow by approximately a factor 2 (FR(2)/FR(1) 0.46+/-0.07, P<.05). Angiotensin II (0.1 and 1 nM) enhanced the EFS-evoked [(3)H]noradrenaline outflow by nearly a factor 1.5 and 2, respectively (FR(2)/FR(1) of 1.43+/-0.11 (0.1 nM) and 2.03+/-0.11 (1 nM); n=6-8, P<.05). All agents failed to influence basal outflow. DISCUSSION: Our modified experimental approach appears to be suitable to study presynaptic influences on sympathetic transmission in the rabbit thoracic aorta. In addition to optimal control of the experimental conditions, the method offers the advantage of a safe and reliable sampling.
BACKGROUND: Potential new radioligands for the noninvasive imaging of cardiac beta-adrenoceptors with single-photon emission computed tomography were investigated. METHODS AND RESULTS: Two iodinated derivatives of CGP12177 para (S-CYBL2B) and ortho (CYBL2A) substituted CGP12177 and an iodinated form of nadolol (CYBL1) were synthesized. Their affinity was tested in vitro (left ventricular homogenates). The biodistribution of [123I]S-CYBL2B was evaluated in rabbits. Specific binding was assessed by pretreatment of the animals with 0.1 mumol propranolol. The inhibition constant values (in nanomolars, means +/- SEM; n = 3 to 5) were determined at 1.17 +/- 0.42, 28800 +/- 9260, 11.1 +/- 2.1, 53.0 +/- 19.9, and 1790 +/- 700 for CGP12177, CYBL2A, S-CYBL2B, nadolol, and CYBL1. Myocardial uptake of [123I]S-CYBL2B was not inhibited by pretreatment of the animals with propranolol, but uptake by lung tissue could be blocked by propranolol (0.63% +/- 0.09% vs 0.33% +/- 0.02% % injected dose/g x kg; p < 0.05). In isolated right atria, preincubation with S-CYBL2B induced a parallel rightward shift of the concentration-response curve with isoprenaline. CONCLUSIONS: S-CYBL2B shows high affinity for cardiac beta-adrenoceptors, but binding proved nonspecific in vivo, whereas binding in lung tissue was specific. These results suggest that S-CYBL2B is probably not a suitable radioligand for receptor imaging.