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dc.contributor.authorda Costa Marques, LA
dc.contributor.authorTeixeira, SA
dc.contributor.authorde Jesus, FN
dc.contributor.authorWood, ME
dc.contributor.authorTorregrossa, R
dc.contributor.authorWhiteman, M
dc.contributor.authorCosta, SKP
dc.contributor.authorMuscará, MN
dc.date.accessioned2023-08-16T14:14:44Z
dc.date.issued2022-02-09
dc.date.updated2023-08-16T13:39:14Z
dc.description.abstractMitochondria-targeted hydrogen sulfide (H2S) donor compounds, such as compound AP39, supply H2S into the mitochondrial environment and have shown several beneficial in vitro and in vivo effects in cardiovascular conditions such as diabetes and hypertension. However, the study of their direct vascular effects has not been addressed to date. Thus, the objective of the present study was to analyze the effects and describe the mechanisms of action of AP39 on the in vitro vascular reactivity of mouse mesenteric artery. Protein and gene expressions of the H2S-producing enzymes (CBS, CSE, and 3MPST) were respectively analyzed by Western blot and qualitative RT-PCR, as well the in vitro production of H2S by mesenteric artery homogenates. Gene expression of CSE and 3MPST in the vessels has been evidenced by RT-PCR experiments, whereas the protein expression of all the three enzymes was demonstrated by Western blotting experiments. Nonselective inhibition of H2S-producing enzymes by AOAA abolished H2S production, whereas it was partially inhibited by PAG (a CSE selective inhibitor). Vasorelaxation promoted by AP39 and its H2S-releasing moiety (ADT-OH) were significantly reduced after endothelium removal, specifically dependent on NO-cGMP signaling and SKCa channel opening. Endogenous H2S seems to participate in the mechanism of action of AP39, and glibenclamide-induced KATP blockade did not affect the vasorelaxant response. Considering the results of the present study and the previously demonstrated antioxidant and bioenergetic effects of AP39, we conclude that mitochondria-targeted H2S donors may offer a new promising perspective in cardiovascular disease therapeutics.en_GB
dc.description.sponsorshipThe Royal Societyen_GB
dc.description.sponsorshipSao Paulo Research Foundation (FAPESP)en_GB
dc.description.sponsorshipSao Paulo Research Foundation (FAPESP)en_GB
dc.description.sponsorshipBrazilian National Council for Scientific and Technological Development (CNPq)en_GB
dc.description.sponsorshipBrazilian National Council for Scientific and Technological Development (CNPq)en_GB
dc.description.sponsorshipCoordination for the Improvement of Higher Education Personnel (CAPES)en_GB
dc.format.extent280-
dc.format.mediumElectronic
dc.identifier.citationVol. 12 (2), article 280en_GB
dc.identifier.doihttps://doi.org/10.3390/biom12020280
dc.identifier.grantnumbereGAP SZ50730en_GB
dc.identifier.grantnumber2016/06146-5en_GB
dc.identifier.grantnumber2019/14051-2en_GB
dc.identifier.grantnumber306294/2019-2en_GB
dc.identifier.grantnumber312514/2019-0en_GB
dc.identifier.grantnumber001en_GB
dc.identifier.urihttp://hdl.handle.net/10871/133795
dc.identifierORCID: 0000-0002-2674-6981 (Wood, Mark E)
dc.identifierORCID: 0000-0002-6583-6779 (Whiteman, Matthew)
dc.language.isoenen_GB
dc.publisherMDPIen_GB
dc.relation.urlhttps://www.ncbi.nlm.nih.gov/pubmed/35204781en_GB
dc.rights© 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).en_GB
dc.subjecthydrogen sulfideen_GB
dc.subjectmesenteric arteryen_GB
dc.subjectmitochondriaen_GB
dc.subjectvasorelaxationen_GB
dc.titleVasorelaxant Activity of AP39, a Mitochondria-Targeted H2S Donor, on Mouse Mesenteric Artery Rings In Vitroen_GB
dc.typeArticleen_GB
dc.date.available2023-08-16T14:14:44Z
exeter.article-numberARTN 280
exeter.place-of-publicationSwitzerland
dc.descriptionThis is the final version. Available from MDPI via the DOI in this record. en_GB
dc.descriptionThe data presented in this study are available on request from the corresponding author.en_GB
dc.identifier.eissn2218-273X
dc.identifier.journalBiomoleculesen_GB
dc.relation.ispartofBiomolecules, 12(2)
dc.rights.urihttps://creativecommons.org/licenses/by/4.0/en_GB
dcterms.dateAccepted2022-01-29
dc.rights.licenseCC BY
rioxxterms.versionVoRen_GB
rioxxterms.licenseref.startdate2022-01-29
rioxxterms.typeJournal Article/Reviewen_GB
refterms.dateFCD2023-08-16T14:05:46Z
refterms.versionFCDVoR
refterms.dateFOA2023-08-16T14:14:45Z
refterms.panelAen_GB
refterms.depositExceptionpublishedGoldOA
refterms.dateFirstOnline2022-02-09


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© 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Except where otherwise noted, this item's licence is described as © 2022 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).