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Biomedical subjects

J Lorrain

Publications and source records attributed to J Lorrain.

At least 19 recordsLinked to original sources

Inhibition of insulin release induced by galanin in the dog is not exclusively mediated by activation of ATP-sensitive K+ channels.

Exogenous galanin (9 pmol/min during 20 min i.a.) decreased insulin levels in the plasma sampled from the pancreatic vein of the blood-perfused pancreas of dogs in which ganglionic transmission and beta-adrenoceptors had been blocked. This effect was not modified by idazoxan (1 mg/kg followed by 0.02 mg/kg/min i.v.) but was partially reduced (50%) by glibenclamide (1 mg/kg followed by 0.02 mg/kg/min i.v.). This dose of glibenclamide blocked entirely the hypoinsulinemic activity of diazoxide, an activator of pancreatic ATP-modulated K+ channels, whereas the dose of idazoxan prevented the effect of the alpha 2-adrenoceptor agonist UK-14,304. Therefore, in dogs, the decrease in insulin secretion produced by exogenous galanin is only partially mediated by activation of glibenclamide-sensitive ATP-gated K+ channels and is independent of alpha 2-adrenoceptor stimulation.

Adenosine Triphosphate

5-HT4 receptors, present in piglet atria and sensitive to SDZ 205-557, are absent in papillary muscle.

Putative 5-HT4 receptors were investigated in isolated piglet left atria and papillary muscles. In atrial tissues, 5-hydroxytryptamine (5-HT) was a potent positive inotropic agent with a pD2 of 6.7. Its effects were antagonised in a selective and competitive manner by the 5-HT4 receptor antagonist, SDZ 205-557, with a pA2 of 7.3. In contrast to atrial tissues, piglet papillary muscles were virtually unresponsive to 5-HT 10(-8)-10(-3) M, suggesting that functional cardiac 5-HT4 receptors are not present in ventricular tissue.

4-Aminobenzoic Acid

Adrenergic and nonadrenergic cotransmitters inhibit insulin secretion during sympathetic stimulation in dogs.

Vascular and biochemical responses to pancreatic sympathetic nerve stimulation were investigated in the blood-perfused pancreas of anesthetized dogs. During sympathetic nerve stimulation, pancreatic perfusion pressure and norepinephrine release increased, whereas insulin secretion decreased. The latter effect did not occur after pretreatment with the alpha 2-adrenoceptor antagonist idazoxan. However, after beta-adrenoceptor blockade with propranolol, neither single administration of idazoxan nor the alpha 1-adrenoceptor antagonist prazosin or glibenclamide, a blocker of ATP-modulated K+ channels, affected the decrease in insulin secretion induced by sympathetic nerve stimulation. In contrast, the combination of glibenclamide with idazoxan markedly antagonised the decrease in insulin release evoked by the latter procedure. After depletion of catecholamines with syrosingopine, the stimulation-induced inhibition of insulin secretion remained unchanged even though no increases in pancreas perfusion pressure or norepinephrine release were observed. In this preparation, glibenclamide inhibited the decrease in insulin release by 50%. In animals pretreated with the neuronal blocking agent bretylium, all of the responses to sympathetic nerve stimulation were abolished. These results indicate that the inhibitory effects exerted by the sympathetic nervous system on insulin secretion are mediated not only by the classical neurotransmitter norepinephrine acting on alpha 2-adrenoceptors but also by a nonadrenergic cotransmitter that can maintain transmission under conditions of catecholamine deficiency. The postulated nonadrenergic cotransmitter(s) acts, at least partly, via the opening of ATP-modulated K+ channels blockable by glibenclamide, and its release can be prevented by the neuronal blocking agent bretylium.

Animals

Studies on the mechanisms of the development of tolerance to the hypotensive effects of fenoldopam in rats.

In pentobarbital-anesthetized rats prepared for hemodynamic measurements with Doppler flow probes, intravenous (i.v.) infusions of fenoldopam (2.5 - 160.0 micrograms/kg/min during 15 min) decreased mean carotid artery blood pressure, total peripheral, hindquarter, renal, and mesenteric vascular resistances and increased renal blood flow strongly. The hypotensive effects attained a maximum within the first 3 min of infusion but waned by greater than 30% at the end of fenoldopam administration. This tolerance was observed for calculated total peripheral and hindquarter vascular resistances and to a lesser extent for mesenteric resistance. However, it was absent on the renal vascular bed. Pretreatment with either enalapril, pepstatine, or bilateral nephrectomy significantly increased the hypotensive response to fenoldopam and attenuated the development of tolerance. In conscious spontaneously hypertensive rats (SHR), enalapril potentiated strongly the small blood pressure-lowering activity of fenoldopam. The fall in blood pressure produced by fenoldopam was specifically blocked by SCH 23390, an antagonist of DA-1 dopamine receptors. In normotensive vasopressin-supported pithed rats given phenoxybenzamine plus propranolol, fenoldopam, like SCH 23390, blocked the vasodepressor effects of i.v. bolus injection of dopamine and fenoldopam. In pithed rats, fenoldopam evoked a pressor response that was significantly reduced by enalapril, SCH 23390, or bilateral nephrectomy. In conclusion, fenoldopam exerts DA-1 agonist and antagonist effects. The latter property, together with the activation of the renin-angiotensin system, appears to be responsible for the development of tolerance to the fenoldopam evoked-hypotension. The lack of a tolerance at the level of the renal vascular bed is possibly due to the existence of a large population of DA-1 receptors in this region.

Albuterol

Cardiovascular characterization of the DA2 dopamine receptor agonist quinpirole in rats.

In normotensive anesthetized rats, 15-min IV infusions of quinpirole (2.5-40.0 micrograms/kg/min) produced dose-related, rapidly appearing, and long-lasting decreases in mean carotid artery BP and HR. Hemodynamically, the hypotensive effects of quinpirole (10.0 micrograms/kg/min) were due to a fall in total peripheral vascular resistance inasmuch as CO did not undergo significant changes. Mesenteric, hindquarter, and renal blood flows were, respectively, reduced, unchanged, and increased by quinpirole; thus, the renal vascular resistance fell more than either the total peripheral or hindquarter vascular resistance. Biochemically, the hypotensive effects of quinpirole were accompanied by a decrease in the plasma level of norepinephrine and plasma renin activity. The peak fall in blood pressure produced by quinpirole was not significantly modified by atenolol, idazoxan, ranitidine, SCH 23390 (DA1 dopamine receptor antagonist), enalapril, or SK&F 100273 (V1 vasopressin receptor antagonist), but was entirely blocked by S-sulpiride or removal of autonomic nerve drive to the cardiovascular system with chlorisondamine. The effect of quinpirole on systemic and regional vascular resistances was antagonized by S-sulpiride. Furthermore, SK&F 100273 prevented the fall in mesenteric flow produced by quinpirole. Intracerebroventricular injection of quinpirole (10.0 micrograms/kg over 2 min) in saline- or SK&F 100273-pretreated rats produced the same hypotensive effects as an identical IV dose of the compound. In pithed rats, quinpirole (10 micrograms/kg/min IV over 15 min) decreased pressor responses to electrical stimulation of spinal cord outflow without affecting those to exogenously injected angiotensin II, B-HT 920, cirazoline, norepinephrine, or 5-hydroxytryptamine. This inhibitory effect was antagonized by S-sulpiride. The bradycardia produced by quinpirole in intact rats was mediated by the autonomic nervous system inasmuch as it was slightly modified by bilateral vagotomy, partly reduced by atenolol, and entirely prevented by pithing even when the low HR of the last preparation had been raised by IV infusion of isoprenaline. Furthermore, S-sulpiride, but not SCH 23390 or idazoxan, antagonized this effect. In pithed rats, quinpirole similarly inhibited the tachycardic responses elicited by electrical stimulation of either the spinal cord outflow (preganglionic) or postganglionic cardioaccelerator nerve fibers. This effect of quinpirole was susceptible to S-sulpiride but not idazoxan blockade. Finally, in conscious spontaneously hypertensive rats (SHR) but not in normotensive rats, quinpirole (10 micrograms/kg/min IA over 15 min) lowered blood pressure.(ABSTRACT TRUNCATED AT 400 WORDS)

Animals

Effects of pergolide on the cardiovascular responses to sinoaortic deafferentation in dogs with intact or surgically decentralized adrenal glands.

In pentobarbital-anesthetized dogs with decentralized adrenal glands, sinoaortic baroreceptor deafferentation produced an increase in mean aortic blood pressure which reached a maximum (42 +/- 5 mm Hg, n = 6) within 5 min and then waned entirely within the subsequent 25 min. In contrast, in sham-operated dogs, the maximal pressor response due to deafferentation was of greater magnitude (63 +/- 6 mm Hg, n = 8) and of much longer duration (44 +/- 4 mm Hg, 60 min after deafferentation). Heart rate was only augmented slightly in both preparations. A marked elevation of epinephrine plasma concentration occurred 5 min after deafferentation and the magnitude of this effect was 8 times greater in dogs with innervated than denervated adrenal glands. Norepinephrine plasma concentration increased moderately and similarly in the two preparations. Administration of pergolide (30.0 micrograms/kg i.v.) 15 min before undertaking the deafferentation procedure induced a small, short-lasting increase in blood pressure and a small fall in heart rate in dogs in which the innervation to the adrenal glands was left either intact (sham-operated) or removed surgically. In dogs with adrenal gland denervated, pergolide blocked entirely the pressor response and the small elevation in plasma concentration of catecholamines evoked by sinoaortic deafferentation in the matched, saline-pretreated group. However, in sham-operated dogs (intact adrenal innervation), pergolide reduced partially (by 41%) the increase in blood pressure and plasma epinephrine concentration caused by deafferentation. The decrease in heart rate, produced by pergolide, was abolished by deafferentation in sham-operated and adrenal decentralized dogs.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Glands

Pharmacological, hemodynamic and biochemical mechanisms involved in the blood pressure lowering effects of pergolide, in normotensive and hypertensive dogs.

In pentobarbital-anesthetized normotensive dogs, clonidine (20.0 micrograms/kg i.v.), in contrast to pergolide (30.0 micrograms/kg i.v.), reduced significantly both aortic blood pressure and plasma concentration of norepinephrine. However, in dogs that had been made hypertensive by sectioning the vagi and carotid sinus nerves, pergolide, like clonidine, lowered the blood pressure and plasma concentrations of epinephrine and norepinephrine that were enhanced markedly by deafferentation. Furthermore, in this preparation pergolide decreased the calculated resistance in vascular regions supplied by the upper abdominal aorta and the innervated femoral and renal arteries, but it increased vascular resistance in the denervated hind leg. Pergolide (1.0 microgram/kg) injected intracisternally (i.c.m.) induced a fall in blood pressure of comparable magnitude to that produced by a 30 times higher i.v. dose. Intravenously and i.c.m. administered pergolide lowered blood pressure by acting at distinct anatomical sites inasmuch as i.v. sulpiride blocked the effects of i.v. but not i.c.m. pergolide. The combination of sulpiride plus yohimbine injected i.c.m. was necessary to abolish the decrease in blood pressure evoked by i.c.m. pergolide. In atropinized spinal dogs, i.v. pergolide inhibited the vasoconstriction elicited by electrical stimulation of the lumbar sympathetic chain, an effect which was antagonized by sulpiride. Similarly, pergolide (30.0 micrograms/kg i.v.) like clonidine, reduced the heart rate and coronary venous plasma norepinephrine concentration raised by sustained electrical stimulation of the cardioaccelerator nerve. Sulpiride, but not phentolamine, antagonized this pergolide-induced inhibition of sympathetic nerve function. In chlorisondamine-pretreated dogs, pergolide produced a transient pressor response due to stimulation of postsynaptic vascular alpha-2 adrenoceptors. In conclusion, the failure of i.v. pergolide to decrease aortic blood pressure in pentobarbital-anesthetized normotensive dogs is presumably due to the inability of pergolide to produce a significant inhibition of the vascular sympathetic tone in this preparation. However, in neurogenic hypertensive dogs which are characterized by an elevated level of sympathetic drive, i.v. pergolide reduced blood pressure and aortic plasma norepinephrine concentration. These effects of pergolide are compatible with a DA-2 dopamine receptor stimulation on peripheral sympathetic nerve fibers. In contrast, the antihypertensive effects of i.c.m. pergolide would appear to be mediated by both alpha-2 adrenoceptors and DA-2 dopamine receptors located within the central nervous system.

Anesthesia

Comparison of natural and synthetic prostaglandin E2 tablets in labour induction.

A multicentre, randomized, double-blind trial compared the efficacy and safety of and tolerance to natural and synthetically produced prostaglandin E2 tablets in the induction of labour in 202 women. The compounds were similarly effective, inducing labour in approximately 66% of patients. The total dose required and the interval between induction and delivery were similar in the two groups, as were the Apgar scores at 1 and 5 minutes and the incidence of maternal and fetal side effects.

Abortifacient Agents

Preconceptional selection of fetal sex.

Background information is given on postconceptional and preconceptional methods of selecting fetal sex. Among the preconceptional methods presented are treatment of the sperm to isolate either the X or the Y chromosome, timing of insemination and the effect of ionic concentrations in the woman's body as controlled by the dietary intake of minerals. The authors studied 281 couples, 21 of whom were later excluded, who adhered to a diet specific in its amounts of calcium, magnesium, sodium and potassium. This dietary method of preconceptional selection of fetal sex resulted in the anticipated outcome in about 80% of the cases.

Calcium, Dietary