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Biomedical subjects

M J Rand

Publications and source records attributed to M J Rand.

At least 145 records · Page 8Linked to original sources

Hypertensive responses induced by phenylpropanolamine in anorectic and decongestant preparations.

The acute effects of a single capsule of each of two phenylpropanolamine-containing preparations were determined in a group of healthy young adults, by means of a double-blind comparison with matching placebo preparations. Supine diastolic blood-pressure rose to 100 mm Hg or more in 12 out of 37 subjects taking an anorectic preparation ('Trimolets'; 85 mg phenylpropanolamine per capsule) and in 4 out of 34 subjects taking a decongestant preparation ('Contac 500'; 50 mg phenylpropanolamine per capsule). 20 of the subjects taking trimolets reported adverse side effects. The frequency and extent of the hypertensive response to high-dose phenylpropranolamine-containing preparations suggest that clinical use of such preparations should be reviewed and that their availability without prescription may not be appropriate.

Adult↗

Structure-activity relationship of imidazolidine derivatives related to clonidine at histamine H2-receptors in guinea-pig isolated atria.

1 Cumulative concentration-response relationships for the chronotropic effects of histamine, oxymetazoline, clonidine and thirteen clonidine-like imidazolidine derivatives were examined in isolated spontaneously beating guinea-pig atria.2 The following compounds induced positive chronotropic effects: histamine, clonidine (2,6-dichloro-phenyliminoimidazolidine) and the 2,6-dibromo, 2,6-dimethyl, 2,6-diethyl, 2,6-dihydroxy, 2,4,6-trimethyl, 3,4-dihydroxy and 2-methyl-5-fluoro analogues of clonidine. These compounds appeared to act as partial agonists on histamine H(2)-receptors, with potencies ranging from one tenth to one hundredth and intrinsic activities from approximately 20% to 75% of those of histamine.3 The following compounds did not induce positive chronotropic effects but rather decreased the atrial rate, usually at high concentrations: oxymetazoline and the 2,3-dichloro, 4-dichloro, 5-dichloro, 2-chloro-4-methyl, 2-methyl-5-chloro, 2,4,6-trichloro analogues of clonidine.4 The effects of histamine were antagonized by cimetidine, the pA(2) value being 6.68 (s.e. mean = 0.16, n = 3), and also in a concentration-dependent manner by clonidine. Cimetidine antagonized the response to clonidine in a concentration-dependent manner; however, high concentrations of cimetidine depressed the maximal response to clonidine and the slope of the concentration-response curve was no longer parallel to the control curve.5 The effects of the other compounds which induced positive chronotropic effects were also antagonized by cimetidine (1 mumol/l); however, the effect of the 3,4-dihydroxy derivative was unaffected by cimetidine (1 mumol/l) but was abolished by propranolol (0.3 mumol/l).6 In general, phenyliminoimidazolidine derivatives with 2,6-substitution on the phenyl ring are active on histamine H(2)-receptors, whereas derivatives with 2,3-, 2,4- or 2,5-substitutions are weakly active or inactive. Thus the restriction imposed on the free rotation of the phenyl ring about the carbon-imino nitrogen bond by the introduction of two ortho substituents appears to result in increased agonist activity on the histamine H(2)-receptor. The introduction of substituents in the 3, 4 or 5 positions in the phenyl ring may lead to compounds sterically hindered from combining with the histamine H(2)-receptor.7 There is no apparent relationship between the activities of clonidine-like imidazolidine derivatives as agonists on histamine H(2)-receptors and their hypotensive activities (as reported in the literature).

Animals↗

Adrenaline activation of prejunctional beta-adrenoceptors in guinea-pig atria.

1. Adrenaline in a concentration of 1.0 microM depressed the stimulation-induced efflux of tritium from the guinea-pig atria incubated with [3H]-noradrenaline, whereas adrenaline in a concentration of 0.5 nM significantly enhanced the stimulation-induced efflux of tritium. This enhancement was blocked by metoprolol (0.1 microM) and thus appears to be mediated by beta-adrenoceptors. 2. In guinea-pig atria incubated with unlabelled adrenaline and then with [3H]-noradrenaline, both catecholamines were released by field stimulation. In such atria metoprolol, practolol, oxprenolol or propranolol decreased the stimulation-induced efflux of tritium. These effects did not occur if the atria were incubated with unlabelled noradrenaline and then with [3H]-noradrenaline, suggesting that neuronally released adrenaline activates prejunctional beta-adrenoceptors. 3. The effect of oxprenolol in decreasing the release of tritium from guinea-pig atria, incubated with unlabelled adrenaline and then with [3H]-noradrenaline was greater in the presence of phentolamine. This may reflect the alpha-adrenoceptor blocking activity of oxprenolol.

Animals↗

Facilitatory effect of nicotine on adrenergic neuroeffector transmission in the isolated ear artery of the rabbit.

The effects of nicotine were studied on perfusion pressure and vasoconstrictor responses to sympathetic nerve stimulation in the isolated ear artery of the rabbit. Infusions of nicotine (50 micro M) produced a transient increase in perfusion pressure and potentiated responses to nerve stimulation; these effects of nicotine were unaffected by atropine (0.3 micro M) and abolished or significantly reduced respectively by hexamethonium (300 micro M) or mecamylamine (1 micro M). In experiments with ear arteries previously labelled with [3H] noradrenaline an infusion of nicotine (50 micro M) produced a transient increase in tritium efflux and the potentiation of responses to nerve stimulation in the presence of nicotine was accompanied by a statistically significant increase in stimulation-induced tritium efflux; these effects of nicotine were abolished by hexamethonium (300 micro M) or mecamylamine (1 micro M).

Animals↗

Mechanism of noradrenaline release from rabbit atria induced by nicotinic agonists.

The release of noradrenaline and its metabolic products by the nicotinic agonists nicotine, 1,1-dimethyl-4-phenylpiperazinium (DMPP) and acetylcholine (in the presence of atropine) was investigated in rabbit atria in which the transmitter stores were labelled with (3H)-noradrenaline. The proportions of noradrenaline and its metabolic products released by nicotine (50 microM), DMPP (100 microM) and acetylcholine (1.6 mM, in the presence of atropine (6 microM)) were similar to those released by sympathetic nerve stimulation: (3H)-noradrenaline itself comprised more than 90% of the tritiated compounds released by these agents. None of the nicotinic agonists affected the activity of monoamine oxidase extracted from rabbit atria. The results suggest that nicotinic agonists and sympathetic nerve stimulation release noradrenaline from the same sites and by similar mechanisms, presumably by exocytosis of the contents of transmitter storage vesicles.

Acetylcholine↗

Modulation of sympathetic transmission by neuronally-released dopamine.

1 When rabbits were pretreated with Fla-63, there was a marked inhibition of dopamine-beta-hydroxylase such that, after incubation of the ear arteries with [3H]-dopamine 47.2% of the tritium in the tissue was retained as unchanged dopamine. 2 [3H]-dopamine was released by stimulation of the sympathetic nerves in ear arteries taken from rabbits pretreated with Fla-63 and incubated with [3H]-dopamine. 3 The dopamine antagonists metoclopramide (1.0 microM) and ergometrine (1.0 microM) enhanced the stimulation-induced efflux of tritium in ear arteries taken from rabbits pretreated with Fla-63 and incubated with [3H]-dopamine, but not when the arteries were incubated with [3H]-noradrenaline. 4. These results suggest that if dopamine is present in the transmitter stores, it can be released by stimulation of the sympathetic nerves, and if the amount is adequate, it can activate an inhibitory feedback loop where prejunctional dopamine receptors are present.

Animals↗

Effects of the histamine H2-receptor blocking drugs burimamide and cimetidine on noradrenergic transmission in the isolated aorta of the rabbit and atria of the guinea-pig.

1 In rabbit aortic strips, concentration-response curves to noradrenaline (NA) were shifted to the right in a parallel and concentration-dependent manner by the alpha-adrenoceptor blocking drug, phentolamine and also by the histamine H(2)-receptor blocking drugs, burimamide and cimetidine. Responses to 5-hydroxytryptamine were not affected by these drugs.2 Burimamide had the properties of a competitive antagonist of noradrenaline, possessing about one-hundredth the potency of phentolamine. Cimetidine was weaker than burimamide and did not fulfil the requirements for competitive antagonism of noradrenaline.3 In guinea-pig isolated atria, in which noradrenergic transmitter stores were labelled with [(3)H]-noradrenaline, phentolamine (3 muM), burimamide (30 muM) and cimetidine (30 muM), in decreasing order of effectiveness, each enhanced stimulation-induced efflux of [(3)H]-noradrenaline, indicating that their blocking effects on prejunctional alpha-adrenoceptors in this tissue are in the same order of relative potency as on postjunctional alpha-adrenoceptors in rabbit aortic strips.4 In the concentrations used (30 muM), neither burimamide nor cimetidine interfered with the neuronal uptake of noradrenaline. Burimamide, and to a much lesser extent, cimetidine, increased the resting efflux of [(3)H]-noradrenaline from guinea-pig atria.5 The effect of clonidine, a partial agonist on prejunctional alpha-adrenoceptors in guinea-pig atria, in increasing stimulation-induced efflux of [(3)H]-noradrenaline when stimulated with 150 pulses at 5 Hz was blocked by cimetidine (30 muM) and reversed by phentolamine (3 muM) and burimamide (30 muM).

Animals↗

The dominant lethal effects of some ergot alkaloids.

The dominant lethal test was carried out in the mouse using the ergot derivatives dihydroergotoxine, ergotamine and methysergide. A significant increase in early fetal deaths was induced by 100 mg/kg of dihydroergotoxine and methysergide. Doses of 25 mg/kg and 50 mg/kg did not induce positive effects. Ergotamine was not effective in doses up to 100 mg/kg. Reduced numbers of implantations were not consistently observed following treatment with the ergot preparations, but some anti-fertility effects were noted. Cyclophosphamide, used as a positive control compound, produced significant effects in doses as low as 25 mg/kg.

Animals↗

Modulation of noradrenergic transmission in the rabbit ear artery by dopamine.

1. The effects of dopamine on vasoconstrictor responses to field stimulation of sympathetic nerves and to exogenous noradrenaline were studied in the isolated ear artery of the rabbit. Responses to noradrenaline were unchanged at the start of the dopamine infusions but were enhanced as the infusions continued and also after cessation of the infustion. 2 Dopamine (0.5 muM) reduced the stimulation-induced efflux of tritium from segments of ear artery labelled with [3H]-noradrenaline. The reduction persisted during 65 min of dopamine infusion, after which time the vasoconstrictor responses had generally recovered to 93% of control level. On ceasing the infusion, the stimulation-induced efflux and the vasoconstrictor responses were enhanced. 3 Metoclopramide, haloperidol and ergometrine, each in a concentration of 0.2 muM, prevented the inhibitory effect of 0.5 muM dopamine on the stimulation-induced tritium release, but not the inhibitory effect of 0.5 muM noradrenaline. Phenoxybenzamine (0.2 and 1 muM) and phentolamine (1 muM) prevented the inhibitory effects of both noradrenaline and dopamine on the stimulation-induced efflux, and phentolamine (0.2 muM) prevented the inhibition of the stimulation-induced release by noradrenaline but only partially prevented the inhibitory effect of dopamine on the stimulation-induced efflux. 4 A possible role for dopamine in the modulation of noradrenergic transmission is suggested.

Animals↗

Effects of pimozide on noradrenergic transmission in rabbit isolated ear arteries.

In the rabbit ear artery both dopamine and noradrenaline inhibit stimulation-induced (S-I) transmitter noradrenaline efflux. Pimozide, which is reported to be a specific dopamine receptor antagonist, was used to further study the effects of dopamine on transmitter efflux. In a concentration of 0.2 micrometer pimozide blocked the inhibition of S-I efflux produced by 0.5 micrometer dopamine but not that produced by 0.5 micrometer noradrenaline. In a concentration of 10 nM, pimozide enhances transmitter release and vasoconstrictor responses to sympathetic nerve stimulation; this may be due to blockade of feedback inhibition of transmitter release by endogenous dopamine. In a concentration of 1 micrometer, pimozide reduced transmitter release and vasoconstrictor responses to sympathetic nerve stimulation. Vasoconstrictor responses to noradrenaline and histamine are antagonized by pimozide in a noncompetitive manner.

Animals↗

Chromosomal damage induced by some ergot derivatives in vitro.

Three ergot derivatives, dihydroergotoxine, ergotamine and methysergide, were tested for their ability to induce chromosomal damage in human lymphocytes in culture. The aberration frequency was significantly increased after treatment of the cells with 0.1 microng/ml, 0.25 microng/ml and 0.5 microng/ml of each drug. However the degree of damage was considerably less than that produced by 0.1 mg/ml to 0.5 mg/ml of caffeine, which was used as a positive control and is a known mutagen in this test-system.

Caffeine↗

Effects of some ergot derivatives in bone marrow of mice.

The in vivo chromosomal damaging properties of some ergot derivatives were investigated following their administration to male mice. Dihydroergotoxine, ergotamine and methysergide were injected in doses of 25, 50 and 100 mg/kg. Significant numbers of aberrations were observed in bone marrow preparations after treatment with the higher doses. Almost all the damage was in the form of chromatid aberrations. No exchange figures were observed, neither were other anamalies, such as nondisjunction or anti-mitotic activity. This frequency of damage was about 7- to 10-fold less than that produced by the powerful alkylating agent, cyclophosphamide. Thus the ergot derivatives were concluded to have weak chromosomal damaging effects in vivo only in very high doses.

Animals↗

Modulation by acetylcholine of adrenergic transmission in the rabbit ear artery.

1. Low concentrations of acetylcholine (4 times 10(-11) and 1 times 10(-10) M) increase the vasoconstrictor response of the isolated ear artery of the rabbit to stimulation of the periarterial sympathetic nerves. Higher concentrations (4 times 10(-8) M and greater) decrease the response. 2. Low concentrations of acetylcholine (1 times 10(-11) and 1 times 10(-10) M) increase the stimulation-induced efflux of radioactivity from artery segments previously incubated with [3H]-noradrenaline. Higher ocncentrations (3 times 10(-8) M and greater) decrease the efflux. 3. Neither atropine nor hexamethonium affects the facilitatory action of low concentrations of acetylcholine on adrenergic transmission in the rabbit ear artery. 4. Atropine antagonizes the inhibitory effect of higher concentrations of acetylcholine on adrenergic transmission.

Acetylcholine↗