0000000000662000

AUTHOR

Vicente Martínez

0000-0001-5193-715x

showing 2 related works from this author

Synergistic interaction between CCK and leptin to regulate food intake.

2000

Abstract Leptin administered (either intracerebroventricularly, icv, or intraperitoneally, ip) acts in synergy with CCK to suppress food intake and body weight in lean mice or rats. The potentiating effect induced by the co-injection of ip CCK and leptin to inhibit food consumption in mice is mediated by the CCK-A receptor and capsaicin sensitive afferents. In vitro, studies in rats showed that a subset of gastric vagal afferent fibers responded to leptin injected directly into the gastric artery only after a prior intra-arterial CCK injection. Moreover, the tonic activity of gastric-related neurons in the nucleus tractus solitarius (NTS) increased when leptin was delivered into the gastric…

Leptinmedicine.medical_specialtyPhysiologyClinical BiochemistryNeuropeptideBiochemistryCellular and Molecular Neurosciencechemistry.chemical_compoundEatingMiceEndocrinologyInternal medicinemedicineAnimalsHumansReceptorCholecystokininGastric emptyingLeptindigestive oral and skin physiologyArea postremaBody WeightDrug SynergismRatsEndocrinologynervous systemchemistryHypothalamusCapsaicinCholecystokininhormones hormone substitutes and hormone antagonistsRegulatory peptides
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Control of Gastric Acid Secretion in Somatostatin Receptor 2 Deficient Mice: Shift from Endocrine/Paracrine to Neurocrine Pathways

2007

The gastrin-enterochromaffin-like (ECL) cell-parietal cell axis is known to play an important role in the regulation of gastric acid secretion. Somatostatin, acting on somatostatin receptor type 2 (SSTR2), interferes with this axis by suppressing the activity of the gastrin cells, ECL cells, and parietal cells. Surprisingly, however, freely fed SSTR2 knockout mice seem to display normal circulating gastrin concentration and unchanged acid output. In the present study, we compared the control of acid secretion in these mutant mice with that in wild-type mice. In SSTR2 knockout mice, the number of gastrin cells was unchanged; whereas the numbers of somatostatin cells were reduced in the antru…

medicine.medical_specialtyendocrine systemCell CountGalaninBiologyHistidine DecarboxylaseArticleGastric AcidMiceEndocrinologyParietal Cells GastricInternal medicineParacrine CommunicationmedicineEnterochromaffin CellsSomatostatin receptor 2AnimalsReceptors SomatostatinEnterochromaffin-like cellGastrinMice KnockoutDelta cellSomatostatin receptorGastrin-Secreting Cellsdigestive oral and skin physiologyNeurosecretory SystemsMicroscopy ElectronEndocrinologySomatostatinGastric MucosaVesicular Monoamine Transport ProteinsG cellReceptors Galaninhormones hormone substitutes and hormone antagonists
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