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dc.contributor.authorIzumisawa, Yu-
dc.contributor.authorTanaka-Yamamoto, Keiko-
dc.contributor.authorCiriello, John-
dc.contributor.authorKitamura, Naoki-
dc.contributor.authorShibuya, Izumi-
dc.date.accessioned2024-01-19T19:04:53Z-
dc.date.available2024-01-19T19:04:53Z-
dc.date.created2021-09-05-
dc.date.issued2019-09-01-
dc.identifier.issn0006-8993-
dc.identifier.urihttps://pubs.kist.re.kr/handle/201004/119598-
dc.description.abstractIt is known that angiotensin II (AII) is sensed by subfornical organ (SFO) to induce drinking behaviors and autonomic changes. All at picomolar concentrations have been shown to induce Ca2+ oscillations and increase in the amplitude and frequency of spontaneous Ca2+ oscillations in SFO neurons. The present study was conducted to examine effects of nanomolar concentrations of All using the Fura-2 Ca2+-imaging technique in acutely dissociated SFO neurons. All at nanomolar concentrations induced an initial [Ca2+](i) peak followed by a persistent [Ca2+](i) increase lasting for longer than 1 hour. By contrast, [Ca2+](i) responses to 50 mM K+, maximally effective concentrations of glutamate, carbachol, and vasopressin, and All given at picomolar concentrations returned to the basal level within 20 min. The All-induced [Ca2+](i) increase was blocked by the AT1 antagonist losartan. However, losartan had no effect when added during the persistent phase. The persistent phase was suppressed by extracellular Ca2 + removal, significantly inhibited by blockers of L and P/Q type Ca2+ channels, but unaffected by inhibition of Ca2+ store Ca2+ ATPase. The persistent phase was reversibly suppressed by GABA and inhibited by CaMK and PKC inhibitors. These results suggest that the persistent [Ca2+](i) increase evoked by nanomolar concentrations of All is initiated by All receptor activation and maintained by Ca2+ entry mechanisms in part through L and P/Q type Ca2+ channels, and that CaMK and PKC are involved in this process. The persistent [Ca2+](i) increase induced by All at high pathophysiological levels may have a significant role in altering SFO neuronal functions.-
dc.languageEnglish-
dc.publisherELSEVIER-
dc.subjectRECEPTOR SIGNALING PATHWAYS-
dc.subjectCIRCUMVENTRICULAR ORGANS-
dc.subjectINTRINSIC EXCITABILITY-
dc.subjectSENSITIVE NEURONS-
dc.subjectINHIBITORY INPUTS-
dc.subjectCALCIUM-CHANNELS-
dc.subjectMEDIAN-EMINENCE-
dc.subjectCENTRAL ROLES-
dc.subjectNUCLEUS-
dc.subjectPLASMA-
dc.titlePersistent cytosolic Ca2+ increase induced by angiotensin II at nanomolar concentrations in acutely dissociated subfornical organ (SFO) neurons of rats-
dc.typeArticle-
dc.identifier.doi10.1016/j.brainres.2019.05.014-
dc.description.journalClass1-
dc.identifier.bibliographicCitationBRAIN RESEARCH, v.1718, pp.137 - 147-
dc.citation.titleBRAIN RESEARCH-
dc.citation.volume1718-
dc.citation.startPage137-
dc.citation.endPage147-
dc.description.journalRegisteredClassscie-
dc.description.journalRegisteredClassscopus-
dc.identifier.wosid000474319200015-
dc.identifier.scopusid2-s2.0-85065534414-
dc.relation.journalWebOfScienceCategoryNeurosciences-
dc.relation.journalResearchAreaNeurosciences & Neurology-
dc.type.docTypeArticle-
dc.subject.keywordPlusRECEPTOR SIGNALING PATHWAYS-
dc.subject.keywordPlusCIRCUMVENTRICULAR ORGANS-
dc.subject.keywordPlusINTRINSIC EXCITABILITY-
dc.subject.keywordPlusSENSITIVE NEURONS-
dc.subject.keywordPlusINHIBITORY INPUTS-
dc.subject.keywordPlusCALCIUM-CHANNELS-
dc.subject.keywordPlusMEDIAN-EMINENCE-
dc.subject.keywordPlusCENTRAL ROLES-
dc.subject.keywordPlusNUCLEUS-
dc.subject.keywordPlusPLASMA-
dc.subject.keywordAuthorSubfornical organs-
dc.subject.keywordAuthorAngiotensin II-
dc.subject.keywordAuthorCa2+ imaging-
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