The objective of this project is to enhance the understanding of the role of the neuron-associated gastrointestinal peptides in the control of colonic smooth muscle activity. Myoelectrical activity will be measured in isolated smooth muscle from the transverse colon of the cat. Myoelectrical activity will be measured from colonic tissue with an intact myenteric plexus by glass pore electrodes. Myoelectrical dnd contractile activity will be measured from pure circular or longitudinal smooth muscle using a sucrose gap and a force displacement transducer. The effect of the gastrointestinal peptides, vasoactive intestinal peptide, substance P, or the enkephalins will be determined on innervated and denervated colonic smooth muscle. Antagonists of the autonomic nervous system will be used to determine if the gastrointestinal peptides act directly on smooth muscle or through neural receptors. The CCK receptor antagonist, dibutyryl cGMP will clarify the action of the octapeptide of cholecystokinin on colonic smooth muscle. A double sucrose gap will be used to estimate the membrane conductance and ionic current flows during the administration of the gastrointestinal peptides. The release of the peptides from the myenteric plexus or the smooth muscle after electrical field stimulation will be measured by radioimmunoassay. Changes in the tissue levels of these peptides or an alteration in the pattern of their presence will be performed by immunohistopathology. Surgical specimens of human colonic smooth muscle from patients with diverticular disease, ulcerative colitis, or granulomatous colitis will be studied with the double sucrose gap. Changes in membrane conductance, or electromechanical coupling will be measured in these tissues from diseased patients.

Project Start
1982-04-01
Project End
1987-03-31
Budget Start
1985-04-01
Budget End
1986-03-31
Support Year
4
Fiscal Year
1985
Total Cost
Indirect Cost
Name
Los Angeles County Harbor-UCLA Medical Center
Department
Type
DUNS #
City
Torrance
State
CA
Country
United States
Zip Code
90509
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Kao, H W; Hyman, P E; Finn, S E et al. (1988) Effect of prostaglandin E2 on rabbit colonic smooth muscle cell contraction. Am J Physiol 255:G807-12
Sevy, N; Snape Jr, W J (1988) Sources of calcium for contraction of distal circular muscle or taenia coli in the rabbit. Am J Physiol 254:G808-13
Snape Jr, W J; Hyman, P E; Mayer, E A et al. (1987) Calcium dependence of neurotensin stimulation of circular colonic muscle of the rabbit. Gastroenterology 93:823-8
Ringer, M J; Hyman, P E; Kao, H W et al. (1987) [3H]QNB binding and contraction of rabbit colonic smooth muscle cells. Am J Physiol 253:G656-61
Snape Jr, W J; Tan, S T; Kao, H W (1987) Effects of bethanechol and the octapeptide of cholecystokinin on colonic smooth muscle in the cat. Am J Physiol 252:G654-61
Snape Jr, W J; Tan, S T (1987) Effect of tetraethylammonium on an evoked spike potential in feline colonic muscle. Am J Physiol 252:G791-6
Suchowiecky, M; Clarke, D D; Bhasker, M et al. (1987) Effect of secoverine on colonic myoelectric activity in diverticular disease of the colon. Dig Dis Sci 32:833-40
Snape Jr, W J; Tan, S T; Kao, H W et al. (1987) Mechanism of neurotensin depolarization of rabbit colonic smooth muscle. Regul Pept 18:287-97
Cohen, J D; Kao, H W; Tan, S T et al. (1986) Effect of acute experimental colitis on rabbit colonic smooth muscle. Am J Physiol 251:G538-45

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