This is a proposal to continue investigation of intrinsic neural mechanisms that influence intestinal mucosal secretory function in the guinea pig ileum. Studies that utilize Ussing chambers to determine the ionic responses of tissues to putative neurotransmitters will be done in parallel with micorlelectrode studies that will identify direct actions of putative transmitters at the level of identified VIP-ergic neurons. The first specific aim is to clarify the role of VIP-ergic motor neurons in altered ion transport evoked by electrical field stimulation or reflex activation in mucosal preparations in Ussing chambers.
The second aim will identify the neurotransmitters that excite VIP-ergic neurons by examining short-circuit current in mucosal preparations in Ussing chambers.
The third aim i s to establish the neurophysiological mechanisms of action of putative neurotransmitters that alter transport by examining their effects on single VIP-ergic motor neurons. Agonists or antagonists will be added to the superfusion solutions of mucosal sheets containing intact submucosal ganglia to characterize changes in short-circuit current responses. The ionic basis for changes in short-circuit current will be evaluated by determination of radioisotopic measurement of sodium and chloride fluxes. Electrical and synaptic behavior of single VIP-ergic neurons will be determined by placing recording microelectrodes directly into cell bodies of submucosal neurons. Impaled neurons will bc identified unequivocally as VIP-ergic by the presence of Lucifer Yellow fluorescence and avidin-biotin-peroxidase staining in the same cell body. Integration of the Ussing chamber studies with investigations of electrophysiological re- sponses of submucosal ganglion cells to the putative messengers is designed to provide more comprehensive insights into the neurophysiological mechanisms of control of mucosal transport. The proposed study will expand the very limited knowledge of ion transport processes in the guinea pig and of the neurophysiological mechanisms that control small intestinal transport function. It will provide new information on neural reflex pathways that govern the fluidity of the intestinal contents during normal functioning of the bowel, or during pathophysiological states such as secretory diarrhea.

Agency
National Institute of Health (NIH)
Institute
National Institute of Diabetes and Digestive and Kidney Diseases (NIDDK)
Type
Research Project (R01)
Project #
5R01DK037237-07
Application #
3236032
Study Section
General Medicine A Subcommittee 2 (GMA)
Project Start
1985-08-01
Project End
1995-06-30
Budget Start
1993-07-20
Budget End
1994-06-30
Support Year
7
Fiscal Year
1993
Total Cost
Indirect Cost
Name
Ohio State University
Department
Type
Schools of Medicine
DUNS #
098987217
City
Columbus
State
OH
Country
United States
Zip Code
43210
Boghossian, Stephane; Dube, Michael G; Torto, Rita et al. (2006) Hypothalamic clamp on insulin release by leptin-transgene expression. Peptides 27:3245-54
Cooke, H J (1994) Neuroimmune signaling in regulation of intestinal ion transport. Am J Physiol 266:G167-78
Zafirov, D H; Cooke, H J; Wood, J D (1993) Elevation of cAMP facilitates noradrenergic transmission in submucous neurons of guinea pig ileum. Am J Physiol 264:G442-6
Cooke, H J (1992) Neuro-modulation of ion secretion by inflammatory mediators. Ann N Y Acad Sci 664:346-52
Zafirov, D H; Cooke, H J; Wood, J D (1991) Thyrotropin-releasing hormone excites submucous neurons in guinea-pig ileum. Eur J Pharmacol 204:109-12
Cooke, H J (1989) Role of the ""little brain"" in the gut in water and electrolyte homeostasis. FASEB J 3:127-38
Carey, H V; Cooke, H J (1989) Tonic activity of submucosal neurons influences basal ion transport. Life Sci 44:1083-8
Carey, H V; Cooke, H J (1989) Neuromodulation of intestinal transport in the suckling mouse. Am J Physiol 256:R481-6
Carey, H V; Cooke, H J (1989) Thyrotropin-releasing hormone (TRH) evokes chloride secretion via cholinergic pathways in the guinea-pig ileum. Eur J Pharmacol 160:183-6
Carey, H V; Tien, X Y; Wallace, L J et al. (1987) Muscarinic receptor subtypes mediating the mucosal response to neural stimulation of guinea pig ileum. Am J Physiol 253:G323-9