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G Lanciault

Publications and source records attributed to G Lanciault.

13 recordsLinked to original sources

The effect of cholecystokinin-pancreozymin on circulating gastrin levels in man and dog.

Perfusion of the jejunum with a mixture of amino acids (MAA) stimulates cholecystokinin-pancreozymin (CCK) release in man. Since gastrin is normally found in the small intestine, studies were conducted to determine if MAA perfusion had an effect on circulating serum gastrin levels in man. In man, endogenous stimulation of CCK had no effect on gastrin release; however, when CCK was given exogenously (10% pure form), serum gastrin levels were significantly increased. In dogs, the 10% pure CCK given exogenously also significantly increased gastrin concentrations, while the pure CCK octapeptide did not. Cross-reactivity between CCK and the gastrin antibody was minimal and could not be shown to be responsible for the serum gastrin elevations. Neither the physiological release of CCK in humans nor exogenous administration of CCK octapeptide in dogs at a dose equivalent to maximal stimulation of pancreatic secretion in humans significantly altered peripheral venous serum levels of immunoreactive gastrin. Therefore, we conclude that the gastrinemic response of exogenous CCK (10% pure) in man and dog is probably due to an impurity in the CCK preparation; when studying the effects of CCK on the gastrointestinal tract, only the pure CCK or the octapeptide should be used.

Amino Acids↗

Response of the isolated perfused stomach of the dog to electrical vagal stimulation.

The left vagal trunk of blood-perfused, isolated, canine stomach was continously stimulated electrically for periods of 30 min at 7 v and 5-msec duration; the frequency of stimulation was varied without interruption from 0.5 to 10 Hz. Plasma immunoreactive gastrin (IRG), total gastric blood flow (GBF), and gastric acid output (GAO) were monitored continuously. When the vagus was stimulated, gastrin concentrations and GBF increased rapidly, while GAO rose at a slower rate. Two Hertz appeared to be the optimal stimulus frequency for increasing plasma IGR levels, while 10 Hz was most effective for increasing GBF. Increasing the frequency from 0 to 0.5 Hz produced the maximum observed change in GAO; additional increments to 2 or 10 Hz produced no consistent additional increase in GAO. The results indicate that plasma IRG concentration and GBF increase in response to various frequencies of vagal stimulation. Vagal stimulation increases the output of immunoreactive gastrin, as well as acid, from the isolated canine stomach.

Animals↗