PRESENCE OF BLOOD IN TEARS DURING THE MECHOLYL TEST.
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Salivary secretion evoked by sympathetic stimulation or by injection of guanethidine, adrenaline or synephrine is slightly reduced by parasympathetic antagonists in doses which abolish the secretory responses to stimulation of the parasympathetic nerve. Similarly, an adrenaline antagonist caused a small diminution of the salivary flow elicited by parasympathetic stimulation or by injection of methacholine chloride. Secretion caused by pilocarpine could be accelerated by physostigmine. We conclude that transmitter leaks in subliminal concentrations, as far as secretion is concerned, from the sympathetic and parasympathetic postganglionic nerve endings.
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A circular and a longitudinal muscle strip were prepared from adjacent parts of a guinea-pig ileum and a direct pharmacological comparison made under identical conditions. The longitudinal preparation was sensitive to acetylcholine, methacholine, carbachol, 5-hydroxytryptamine, histamine and nicotine, while the circular preparation was insensitive to 5-hydroxytryptamine, histamine and nicotine, and responded to the choline esters only in high concentrations. Incubation of the preparations with the anticholinesterase, mipafox (NN-diisopropylphosphodiamidic fluoride), sensitized both preparations to the action of acetylcholine; potentiation of the contraction of the longitudinal muscle was 16-times; that of the circular one 4,000-times. The longitudinal muscle was more sensitive than the circular muscle to acetylcholine whether both were treated with mipafox or not. Bradykinin and substance P both stimulated the longitudinal but not the circular muscle, an effect not modified after mipafox. Hyoscine antagonized the responses of the circular muscle strip, treated with mipafox, to acetylcholine and to histamine, but on the longitudinal muscle strip the response to histamine was not affected, the response to acetylcholine being competitively antagonized. Morphine, in the same concentrations on both circular and longitudinal muscle strips, antagonized the stimulant actions of nicotine and to a lesser extent of 5-hydroxytryptamine, but the responses to histamine on the longitudinal muscle strip were not antagonized by morphine which was in contrast to its action on the circular muscle strip. These observations showed that the main differences in the responses of the circular and longitudinal muscle of the guinea-pig ileum to drugs were in the intrinsic properties of the smooth muscle cells. In addition cholinesterase may protect the circular muscle cells. Finally the circular muscle strip preparation proved to be a useful tool to study the action of drugs on the nervous plexuses of the ileum of the guinea-pig.
The nasal salt-secreting gland of the domestic duck can produce a fluid with a sodium chloride concentration about three times that in blood plasma. To study the cellular mechanism responsible for the formation of the highly concentrated fluid, the gland was poisoned by retrograde injection of mercuric chloride into the lumen, decreasing the salt concentration to that in plasma while the volume of secretion was unchanged. Carbonic anhydrase inhibitor (acetazoleamide) caused a moderate decrease in salt concentrations, again with maintenance of volume of secretion. The results suggest that concentration and volume of the secreted fluid depend on two different cellular mechanisms.
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