All Relations between VIP and cerebral cortex

Publication Sentence Publish Date Extraction Date Species
N M Griffiths, N L Simmon. Localisation and characterisation of functional vasoactive intestinal peptide receptors in feline kidney. Pflugers Archiv : European journal of physiology. vol 416. issue 1-2. 1990-07-17. PMID:2162036. structurally related peptides, glucagon and secretin, were ineffective (up to 1 mumol l-1) in displacing vip from specific sites in both cortex and medulla. 1990-07-17 2023-08-11 Not clear
N M Griffiths, N L Simmon. Localisation and characterisation of functional vasoactive intestinal peptide receptors in feline kidney. Pflugers Archiv : European journal of physiology. vol 416. issue 1-2. 1990-07-17. PMID:2162036. porcine phi 1-27 (a peptide having n-terminal histidine and c-terminal isoleucine) and a vip antagonist [4-cl-d-phe6leu17]vip both displaced 125i-vip from cortical and medullary membrane binding sites with ic50 values of 43.0 nmol l-1 and 1.3 mumol l-1 (cortex) and 132.0 nmol l-1 and 1.5 mumol l-1 (medulla) respectively. 1990-07-17 2023-08-11 Not clear
Z G Li, G Queen, F S LaBell. Adrenocorticotropin, vasoactive intestinal polypeptide, growth hormone-releasing factor, and dynorphin compete for common receptors in brain and adrenal. Endocrinology. vol 126. issue 3. 1990-04-05. PMID:1968378. we now show that these peptides compete for [125i]vip binding in brain and for [125i]acth-(1-24) binding in adrenal cortex and promote steroidogenesis. 1990-04-05 2023-08-11 rat
P G Kuang, W P Wu, F Y Zhang, J X Liu, C Q P. The effect of radix Salviae miltiorrhizae on vasoactive intestinal peptide in cerebral ischemia: an animal experiment. Journal of traditional Chinese medicine = Chung i tsa chih ying wen pan. vol 9. issue 3. 1990-02-27. PMID:2615458. vip levels were assayed in cerebral cortex, hippocampus and caudate nucleus. 1990-02-27 2023-08-11 rat
P G Kuang, W P Wu, F Y Zhang, J X Liu, C Q P. The effect of radix Salviae miltiorrhizae on vasoactive intestinal peptide in cerebral ischemia: an animal experiment. Journal of traditional Chinese medicine = Chung i tsa chih ying wen pan. vol 9. issue 3. 1990-02-27. PMID:2615458. in salin-treated animals, vip levels of cerebral cortex and caudate nucleus at 3 hour group were significantly decreased compared with the sham-operated group. 1990-02-27 2023-08-11 rat
M E Cavanagh, J G Parnavela. Development of vasoactive-intestinal-polypeptide-immunoreactive neurons in the rat occipital cortex: a combined immunohistochemical-autoradiographic study. The Journal of comparative neurology. vol 284. issue 4. 1989-09-22. PMID:2768555. most vip neurons are generated between e17 and e21 and are found in layers ii-iv of the cortex, but their position within these layers is not dictated by their date of birth. 1989-09-22 2023-08-11 rat
J L Martin, P J Magistrett. Release of vasoactive intestinal peptide in mouse cerebral cortex: evidence for a role of arachidonic acid metabolites. The Journal of neuroscience : the official journal of the Society for Neuroscience. vol 9. issue 7. 1989-08-25. PMID:2545840. release of vasoactive intestinal peptide in mouse cerebral cortex: evidence for a role of arachidonic acid metabolites. 1989-08-25 2023-08-11 mouse
J L Martin, P J Magistrett. Release of vasoactive intestinal peptide in mouse cerebral cortex: evidence for a role of arachidonic acid metabolites. The Journal of neuroscience : the official journal of the Society for Neuroscience. vol 9. issue 7. 1989-08-25. PMID:2545840. in rodent cerebral cortex, vasoactive intestinal peptide (vip) is contained in a homogeneous population of radially oriented bipolar interneurons. 1989-08-25 2023-08-11 mouse
J L Martin, P J Magistrett. Release of vasoactive intestinal peptide in mouse cerebral cortex: evidence for a role of arachidonic acid metabolites. The Journal of neuroscience : the official journal of the Society for Neuroscience. vol 9. issue 7. 1989-08-25. PMID:2545840. furthermore, these observations together with the previously reported potentiation by prostaglandins of the increase in cyclic amp elicited by vip in mouse cerebral cortex (schaad et al., 1987) indicate that aa metabolites may act at both the presynaptic (lipoxygenase metabolites) and the postsynaptic (cyclooxygenase metabolites) levels to increase the "throughput" or "strength" of vip-containing circuits in the rodent neocortex. 1989-08-25 2023-08-11 mouse
N M Griffiths, E L Rugg, N L Simmon. Vasoactive intestinal peptide control of renal adenylate cyclase: in vitro studies of canine renal membranes and cultured canine renal epithelial (MDCK) cells. Quarterly journal of experimental physiology (Cambridge, England). vol 74. issue 3. 1989-08-11. PMID:2546173. vasoactive intestinal peptide (vip) has been shown to stimulate adenylate cyclase activity in plasma membranes isolated from canine renal cortex, outer and inner medulla in vitro. 1989-08-11 2023-08-11 dog
J Marksteiner, G Sperk, D Maa. Differential increases in brain levels of neuropeptide Y and vasoactive intestinal polypeptide after kainic acid-induced seizures in the rat. Naunyn-Schmiedeberg's archives of pharmacology. vol 339. issue 1-2. 1989-07-07. PMID:2566924. the early, reversible rise of vip in the cortex points to a short-lasting activation of this peptide system contained in local cholinergic neurons. 1989-07-07 2023-08-11 rat
H Hara, I Jansen, R Ekman, E Hamel, E T MacKenzie, R Uddman, L Edvinsso. Acetylcholine and vasoactive intestinal peptide in cerebral blood vessels: effect of extirpation of the sphenopalatine ganglion. Journal of cerebral blood flow and metabolism : official journal of the International Society of Cerebral Blood Flow and Metabolism. vol 9. issue 2. 1989-04-20. PMID:2921295. quantitative measurements of cholineacetyltransferase activity and vip revealed similar reductions in the levels of collected large cerebral arteries at the base of the brain and in small pial vessels overlying the cerebral cortex at the various postoperative times following uni- or bilateral removal of the spg. 1989-04-20 2023-08-11 rat
S Jégou, F Javoy-Agid, C Delbende, D Tranchand-Bunel, D H Coy, Y Agid, H Vaudr. Regional distribution of vasoactive intestinal peptide in brains from normal and parkinsonian subjects. Peptides. vol 9. issue 4. 1989-04-04. PMID:3226955. the highest concentrations of vip were found in the cerebral cortex, amygdala, hypothalamus and hippocampus. 1989-04-04 2023-08-11 human
S Jégou, F Javoy-Agid, C Delbende, D Tranchand-Bunel, D H Coy, Y Agid, H Vaudr. Regional distribution of vasoactive intestinal peptide in brains from normal and parkinsonian subjects. Peptides. vol 9. issue 4. 1989-04-04. PMID:3226955. detailed mapping of vip in the human cerebral cortex showed the existence of a rostro-caudal gradient of vip-li concentrations: the frontal cortex exhibited the highest vip levels, the parietal and temporal cortex contained medium values and the occipital cortex contained the lowest vip levels. 1989-04-04 2023-08-11 human
W A Bauman, S Meryn, G L Floran. Cholecystokinin (CCK) and vasoactive intestinal peptide (VIP) in the cerebral cortex of the non-hibernating and hibernating golden mantled ground squirrel. Comparative biochemistry and physiology. A, Comparative physiology. vol 91. issue 1. 1989-01-26. PMID:2904329. cholecystokinin (cck) and vasoactive intestinal peptide (vip) in the cerebral cortex of the non-hibernating and hibernating golden mantled ground squirrel. 1989-01-26 2023-08-11 Not clear
A J Cholewinski, G P Wilki. Astrocytes from forebrain, cerebellum, and spinal cord differ in their responses to vasoactive intestinal peptide. Journal of neurochemistry. vol 51. issue 5. 1988-11-22. PMID:2902198. astrocytes from cortex, cerebellum, and spinal cord responded to isoproterenol and vasoactive intestinal peptide (vip) with increases in intracellular cyclic amp levels. 1988-11-22 2023-08-11 rat
A J Cholewinski, G P Wilki. Astrocytes from forebrain, cerebellum, and spinal cord differ in their responses to vasoactive intestinal peptide. Journal of neurochemistry. vol 51. issue 5. 1988-11-22. PMID:2902198. spinal cord astrocytes also responded to vip and isoproterenol with equal potency (seven- to ninefold and eight- to 13-fold, respectively), but the level of response was much smaller than in cortex. 1988-11-22 2023-08-11 rat
P J Magistrett. Regulation of glycogenolysis by neurotransmitters in the central nervous system. Diabete & metabolisme. vol 14. issue 3. 1988-10-12. PMID:2900788. in particular we have observed that vasoactive intestinal peptide stimulates glycogenolysis in the cerebral cortex. 1988-10-12 2023-08-11 Not clear
P J Magistretti, M M Dietl, P R Hof, J L Martin, J M Palacios, N Schaad, M Schordere. Vasoactive intestinal peptide as a mediator of intercellular communication in the cerebral cortex. Release, receptors, actions, and interactions with norepinephrine. Annals of the New York Academy of Sciences. vol 527. 1988-08-03. PMID:2839076. vasoactive intestinal peptide as a mediator of intercellular communication in the cerebral cortex. 1988-08-03 2023-08-11 Not clear
B Jarrott, S J Lewis, W J Louis, C Maccarrone, A Shulke. Regional brain concentrations of several putative peptide neurotransmitters in normotensive and spontaneously hypertensive rats: effects of continuous (10-day) clonidine infusion. Journal of cardiovascular pharmacology. vol 10 Suppl 12. 1988-07-29. PMID:2455167. in separate groups of similarly treated rats, the concentrations of neurotensin (nt), vasoactive intestinal polypeptide (vip), cholecystokinin octapeptide (cck-8), calcitonin gene-related peptide (cgrp), and neuropeptide y (npy) were measured in the cortex (cor), hypothalamus (hyp), medulla oblongata/pons (mo/p), and cervical (csc) and thoracic (tsc) spinal cord. 1988-07-29 2023-08-11 rat