Vasoactive Intestinal PeptideSāmī Saʻīd Raven Press, 1982 - 512 pagine |
Dall'interno del libro
Risultati 1-3 di 75
Pagina 98
... role for the peptide in cortical function . Indeed , its distribution suggests a possible role in motor control , olfac- tion , and cognition . Other evidence points to a role for the peptide in cortical function . Arousal of ...
... role for the peptide in cortical function . Indeed , its distribution suggests a possible role in motor control , olfac- tion , and cognition . Other evidence points to a role for the peptide in cortical function . Arousal of ...
Pagina 100
... role at the pituitary level in the control of PRL secretion . The amygdala and the hippocampus contain high levels of VIP and have been implicated in the control of growth hormone ( GH ) secretion , suggesting a role for VIP in this ...
... role at the pituitary level in the control of PRL secretion . The amygdala and the hippocampus contain high levels of VIP and have been implicated in the control of growth hormone ( GH ) secretion , suggesting a role for VIP in this ...
Pagina 417
... role ( 40 ) . At the present time , we are up against a methodological barrier . One solution might be the development of specific VIP antagonists . These would play a crucial role in establishing the physiological role of VIP . Indeed ...
... role ( 40 ) . At the present time , we are up against a methodological barrier . One solution might be the development of specific VIP antagonists . These would play a crucial role in establishing the physiological role of VIP . Indeed ...
Sommario
Isolation and Structure of Vasoactive Intestinal Polypeptide from Various | 1 |
StructureActivity Relationships | 11 |
Molecular Forms of VIP in Normal Tissue | 23 |
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Parole e frasi comuni
Acta ACTH action of VIP adenylate cyclase Alumets amino acid antisera antiserum arterial binding Biochem biological blood flow blood vessels Bloom Bodanszky cell bodies cerebral chloride cholinergic colon concentrations of VIP cyclic AMP diarrhea distribution dogs Effect of vasoactive effect of VIP epithelial cells exocrine extracts Fahrenkrug ganglion gastric gastrin Gastroenterology gastrointestinal tract gland glucagon guinea pig Håkanson Hökfelt hormone hypothalamus immunoreactive VIP increase inhibition innervation insulin intestinal peptide VIP intestinal polypeptide VIP isolated Laburthe Larsson levels liver Lond membranes mucosa Mutt nerve fibers neurons neurotransmitter pancreatic perfused peripheral Physiol physiological pituitary plasma VIP Polak porcine VIP protein radioimmunoassay relaxation renin response Rosselin Schaffalitzky de Muckadell secretin receptors secretion secretory smooth muscle somatostatin specific sphincter stimulation studies Sundler syndrome tissue tumors vasoactive intestinal peptide vasoactive intestinal polypeptide vasodilation VIP concentrations VIP fibers VIP infusion VIP nerve VIP receptors VIP-containing VIP-LI VIPomas vitro µg/kg