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Electron probe X-ray microanalysis of cellular ions in the eccrine secretory coil cells during methacholine stimulation.

Intracellular concentrations of Na, K, Cl ([Na], [K] and [Cl], respectively) and other elements were determined in isolated monkey eccrine sweat secretory coil cells using quantitative electron probe X-ray microanalysis of freeze dried cryosections. The validity of the methodology was partially supported by qualitative agreement of the X-ray microanalysis data with those obtained by micro-titration with a helium glow spectrophotometer. [Na], [K] and [Cl] of the cytoplasm were the same as those in the nucleus in both clear and dark cells. [Na], [K], and [Cl] of the clear cells were also the same as those of the dark cells at rest and after stimulation with methacholine (MCh), suggesting that these two cell types behave like a functional syncytium. MCh stimulation induced a pharmacologically specific, dose-dependent decrease in [K] and [Cl] (as much as 65%), and a 3.7-fold increase in [Na]. In myoepithelial cells, a similar change in [Na] and [K] was noted after MCh stimulation although the decrease in [Cl] was only 20%. The MCh-induced change in [Na], [K] and [Cl] was almost completely inhibited by removal of Ca2+ from the medium. 10(-4) M bumetanide inhibited the MCh-induced increase in [Na], reduced the decrease in [K] by about 50%, but slightly augmented the MCh-induced decrease in [Cl]. 10(-4) M ouabain increased [Na] and decreased [K] as did MCh; however, unlike MCh, ouabain increased [Cl] by 56% after 30 min of incubation. Thus the data may be best interpreted to indicate that Ca-dependent K efflux and (perhaps also Ca-dependent) Cl efflux are the predominant initial ionic movement in muscarinic cholinergic stimulation of the eccrine sweat secretory coils and that the ouabain-sensitive Na pump plays an important role in maintenance of intracellular ions and sweat secretion.

Animals↗

The influence of cardiac cholinergic activation on the induction and maintenance of ventricular fibrillation.

The influence of cardiac cholinergic activation was studied in rats and cats on the induction and maintenance of ventricular fibrillation (VF). Acetylcholine (ACH 2-25 micrograms/kg), in doses which did not cause bradycardia or hypotension, induced appearance of spontaneous VF (duration 2-60 sec.) in 9/20 rats which have a high sympathetic autoregulation and in 3/6 cats only, 20-40 secs after the latter had been given adrenaline. ACh (10-45 micrograms/kg) and methacholine (10-40 micrograms/kg) also significantly prolonged the fibrillatory period induced electrically in cats and rats with and without atrial or ventricular pacing. The induction or prolongation of VF did not occur when higher doses of ACh (50-100 micrograms/kg) were given to rats. The influence of moderate amounts of cholinergic agents on the heart may be due to localised effects resulting in asynchronous activity. Alternatively, they may produce a discharge of multiple ectopic pacemakers or a disturbance in impulse conduction. Higher doses of ACh depress the S-A and ventricular ectopic activity node thereby decreasing the probability of inducing VF. It is concluded that under conditions of raised cardiac adrenergic activity, a moderate increase in cholinergic influence can both induce and prolong VF. The relevance of these findings to the "sudden infant death" syndrome is discussed.

Acetylcholine↗

Do beta adrenergic agents directly stimulate gastrin secretion?

Isoproterenol if given during methacholine stimulation in dogs neither depresses gastric secretion nor elevates serum gastrin. Therefore, we conclude that beta adrenergics (isoproterenol) are unlikely to be direct liberators of gastrin, but raise serum gastrin indirectly only if they inhibit gastric secretion.

Animals↗

Modification of the action of pentagastrin on acid secretion by botulinum toxin.

I.v botulinum toxin after 60-90 min abolished the dose-response relationship between pentagastrin and gastric acid secretion in anesthetized rats and guinea-pigs. The toxin reduced but did not abolish the acid stimulatory effect of histamine. As expected, the acid response to vagal stimulation was abolished and that to methacholine in rats was unaltered by the toxin.

Acetylcholine↗

Action of a novel drug (Zy 16039) on mucus secretion in the ferret isolated trachea in vitro.

1. The effect of 4-H-2-carboxamido-4-phenyl-thieno-[3,2c]-[1]-benzopyran (Zy 16039) was examined on the smooth muscle contraction, mucus secretion and albumin transudation in the ferret whole trachea in vitro. 2. Zy 16039 (0.1-20 microM) produced a concentration-dependent relaxation of the ferret trachea contracted by methacholine (1 microM) and phenylephrine (10 microM). The relaxations were about 20% of the full contractions. 3. Zy 16039 has no effect on the resting (zero) output of mucus in the ferret trachea. Methacholine-induced mucus secretion was significantly inhibited by Zy 16039, whereas phenylephrine-induced secretion was significantly increased. 4. Methacholine-induced secretion of lysozyme, a marker of serous cell secretion, was inhibited by Zy 16039 both with regard to output and concentration of lysozyme. In contrast, Zy 16039 significantly increased the output of lysozyme due to phenylephrine, with no effect on concentration. 5. Zy 16039 had no significant effect on the rate of output of fluorescent albumin through the tracheal wall. However the concentration of albumin in the mucus samples was changed because of the effect of Zy 16039 on mucus secretion induced by methacholine and phenylephrine. 6. We conclude that Zy 16039 relaxes airway smooth muscle, and either promotes or inhibits mucus secretion depending on its source. It has qualitatively similar actions to vasoactive intestinal peptide.

Albumins↗

The actions of methacholine, phenylephrine, salbutamol and histamine on mucus secretion from the ferret in-vitro trachea.

Methacholine, phenylephrine and histamine produced highly significant and salbutamol significant increases in the rate of mucus secretion from the ferret trachea. Methacholine, phenylephrine and histamine all produced highly significant increases in the rate of output of lysozyme, but the concentration of lysozyme in the mucus was significantly increased only by phenylephrine. Salbutamol produced no significant change in the output of lysozyme, and the concentration of lysozyme in the mucus was significantly decreased. It is concluded that methacholine, phenylephrine and histamine are potent stimulators of serous cell secretion whereas salbutamol has only a weak secretory action on these cells. Methacholine, histamine and salbutamol probably stimulate secretion from mucous cells as well as from serous cells. The increase in the concentration of lysozyme produced by phenylephrine may be due to stimulation of a fluid reabsorption mechanism.

Albuterol↗

Dose-response relationship of the H1-histamine antagonist, ebastine, against histamine and methacholine-induced bronchoconstriction in patients with asthma.

In a double blind, randomised, placebo controlled trial in a group of extrinsic asthmatics, we have evaluated the potency and selectivity of ebastine, a new piperidine-type H1-receptor antagonist, against histamine and methacholine-induced bronchoconstriction. The median histamine PC20FEV1 value following placebo was 3.15 mg/ml (0.24-58.84). When compared with placebo, ebastine produced significant protection at 10 mg (median PC20 = 31.36 mg/ml, p = 0.008) and 30 mg (median PC20 = 42.14 mg/ml, p = 0.001) but there appeared to be no significant dose effect. Ebastine also produced a small shift in the methacholine concentration-response curves to the right. We conclude that ebastine is an effective antagonist of histamine-induced bronchoconstriction in the asthmatic airway with evidence of minor blockade of methacholine-induced bronchoconstriction.

Adult↗

Effect of somatostatin, secretin, and glucagon on secretagogue stimulated aminopyrine uptake in isolated canine parietal cells.

Somatostatin, secretin, and glucagon have been shown to inhibit gastric acid secretion in vivo and thus have been postulated to act directly on the parietal cell. To test the hypothesis that these peptides directly influence the acid secretory cells, we studied the effect of the three gastrointestinal hormones using aminopyrine uptake as an index of acid production. The parietal cells were stimulated to increase aminopyrine uptake by submaximal concentrations of histamine (10(-6) mol/l), methacholine (10(-6) mol/l), and pentagastrin (10(-6) mol/l), but in no concentrations did these gastrointestinal hormones affect any of the secretagogues' response. Our data suggest that gastrointestinal peptides do not modulate acid secretion at the parietal cell level.

Aminopyrine↗

On the mechanism of histamine-induced bronchodilation in conscious guinea-pigs.

The bronchodilatory effect of histamine was evaluated in a conscious guinea-pig model of cholinergically mediated bronchoconstriction. The H1, bronchoconstrictor, property of histamine was masked using high doses of the H1-antagonist chlorpheniramine (30 mg/kg), and the bronchodilatory activity evaluated by observing the increase in latency to collapse induced by aerosol methacholine. Under these conditions, histamine (1.0, 3.0 or 10.0 mg/kg, i.p.) delayed methacholine-induced collapse in a dose-dependent manner. Cimetidine, an H2-receptor antagonist (10 to 100 mg/kg), did not delay collapse either in the presence or absence of an H1-antagonist. However, when cimetidine was administered prior to histamine, the bronchodilatory activity of histamine was abolished. A similar abolition of histamine bronchodilation was observed if propranolol, a beta-adrenoceptor antagonist, was administered prior to histamine. Propranolol alone had no effect on methacholine-induced bronchospasm. These data suggest that the major bronchodilatory property of histamine may be mediated indirectly via catecholamine release through an H2-receptor mechanism.

Aerosols↗