Please use this identifier to cite or link to this item: https://ahro.austin.org.au/austinjspui/handle/1/10923
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dc.contributor.authorSartor, Daniela Men
dc.contributor.authorVerberne, Anthony J Men
dc.date.accessioned2015-05-16T00:30:02Z
dc.date.available2015-05-16T00:30:02Z
dc.date.issued2009-11-25en
dc.identifier.citationAmerican Journal of Physiology. Heart and Circulatory Physiology 2009; 298(2): H406-14en
dc.identifier.govdoc19940076en
dc.identifier.otherPUBMEDen
dc.identifier.urihttps://ahro.austin.org.au/austinjspui/handle/1/10923en
dc.description.abstractGastric-derived leptin affects satiety and gastrointestinal function via vagal mechanisms and has been shown to interact with the gut hormone cholecystokinin (CCK). CCK selectively inhibits splanchnic sympathetic nerve discharge (SND) and the activity of a subset of presympathetic vasomotor neurons in the rostroventrolateral medulla (RVLM). The present study sought to examine the effects of gastric leptin on arterial pressure (AP), heart rate (HR), SND, and RVLM neuronal activity to determine whether its effects on cardiovascular regulation are dependent on CCK(1) receptors and vagal afferent transmission. To mimic gastric leptin, leptin (15-30 microg/kg) was administered close to the coeliac artery in anesthetized, artificially ventilated Sprague-Dawley rats. Within 5 min, leptin selectively decreased the activity of RVLM neurons also inhibited by CCK (-27 +/- 4%; P < 0.001; n = 15); these inhibitory effects were abolished following administration of the CCK(1) receptor antagonist lorglumide. Leptin significantly decreased AP and HR (-10 +/- 2 mmHg, P < 0.001; and -8 +/- 2 beats/min, P < 0.01; n = 35) compared with saline (-1 +/- 2 mmHg, 3 +/- 2 beats/min; n = 30). In separate experiments, leptin inhibited splanchnic SND compared with saline (-9 +/- 2% vs. 2 +/- 3%, P < 0.01; n = 8). Bilateral cervical vagotomy abolished the sympathoinhibitory, hypotensive, and bradycardic effects of leptin (P < 0.05; n = 6). Our results suggest that gastric leptin may exert acute sympathoinhibitory and cardiovascular effects via vagal transmission and CCK(1) receptor activation and may play a separate role to adipose leptin in short-term cardiovascular regulation.en
dc.language.isoenen
dc.subject.otherAdipose Tissue.metabolismen
dc.subject.otherAnimalsen
dc.subject.otherBlood Pressure.drug effects.physiologyen
dc.subject.otherCardiovascular Physiological Phenomenaen
dc.subject.otherCholecystokinin.metabolismen
dc.subject.otherHeart Rate.drug effects.physiologyen
dc.subject.otherHormone Antagonists.pharmacologyen
dc.subject.otherInfusions, Intra-Arterialen
dc.subject.otherInfusions, Intravenousen
dc.subject.otherLeptin.administration & dosage.metabolism.pharmacologyen
dc.subject.otherMaleen
dc.subject.otherMedulla Oblongata.drug effects.physiologyen
dc.subject.otherModels, Animalen
dc.subject.otherProglumide.analogs & derivatives.pharmacologyen
dc.subject.otherRatsen
dc.subject.otherRats, Sprague-Dawleyen
dc.subject.otherReceptors, Cholecystokinin.antagonists & inhibitors.drug effects.metabolismen
dc.subject.otherStomach.metabolismen
dc.subject.otherSympathetic Nervous System.drug effects.physiologyen
dc.titleGastric leptin: a novel role in cardiovascular regulation.en
dc.typeJournal Articleen
dc.identifier.journaltitleAmerican journal of physiology. Heart and circulatory physiologyen
dc.identifier.affiliationDepartment of Medicine, Austin Health, The University of Melbourne, Heidelberg, Victoria, Australiaen
dc.identifier.doi10.1152/ajpheart.00997.2009en
dc.description.pagesH406-14en
dc.relation.urlhttps://pubmed.ncbi.nlm.nih.gov/19940076en
dc.type.austinJournal Articleen
local.name.researcherVerberne, Anthony J M
item.grantfulltextnone-
item.openairetypeJournal Article-
item.languageiso639-1en-
item.fulltextNo Fulltext-
item.openairecristypehttp://purl.org/coar/resource_type/c_18cf-
item.cerifentitytypePublications-
crisitem.author.deptClinical Pharmacology and Therapeutics-
crisitem.author.deptMedicine (University of Melbourne)-
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