The adipokine chemerin augments the constrictor effects of ET-1 and phenylephrine in rat aorta (2011)
- Authors:
- USP affiliated authors: OLIVEIRA, ANA MARIA DE - FCFRP ; PASSAGLIA, RITA DE CASSIA ALEIXO TOSTES - FMRP
- Unidades: FCFRP; FMRP
- Subjects: TECIDO ADIPOSO; FÁRMACOS
- Language: Inglês
- Imprenta:
- Source:
- Título do periódico: Programa
- Conference titles: Reunião Anual da Federação de Sociedades de Biologia Experimental (FeSBE)
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ABNT
NEVES, K. B. et al. The adipokine chemerin augments the constrictor effects of ET-1 and phenylephrine in rat aorta. 2011, Anais.. São Paulo: FeSBE, 2011. . Acesso em: 02 maio 2024. -
APA
Neves, K. B., Lobato, N. S., Filgueira, F. P., Passaglia, R. de C. A. T., & Oliveira, A. M. de. (2011). The adipokine chemerin augments the constrictor effects of ET-1 and phenylephrine in rat aorta. In Programa. São Paulo: FeSBE. -
NLM
Neves KB, Lobato NS, Filgueira FP, Passaglia R de CAT, Oliveira AM de. The adipokine chemerin augments the constrictor effects of ET-1 and phenylephrine in rat aorta. Programa. 2011 ;[citado 2024 maio 02 ] -
Vancouver
Neves KB, Lobato NS, Filgueira FP, Passaglia R de CAT, Oliveira AM de. The adipokine chemerin augments the constrictor effects of ET-1 and phenylephrine in rat aorta. Programa. 2011 ;[citado 2024 maio 02 ] - Effects of adipokine chemerin on the vascular reactivity: analysis in the rat aorta
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- Chemerin regulates crosstalk between adipocytes and vascular cells through nox
- Chemerin receptor blockade improves vascular function in diabetic obese mice via redox-sensitive and Akt-dependent pathways
- Chemerin, a novel adipokine, regulates human vascular cell function through redox‐sensitive processes involving NADPH oxidase 1/4 and endothelial nitric oxide sinthase
- Chemerin reduces vascular nitric oxide/cGMP signalling in rat aorta: a link to vascular dysfunction in obesity?
- Chronic ethanol consumption reduces 'ETIND.B'-Mediated relaxation in rat carotid arteries
- Hyperhomocysteinemia enhances the endothelin-1-induced contractions of rat carotid artery: role of ETA and ETB receptors
- Functional characterization and expression of endothelin receptors in rat carotid artery: mechanisms underlying 'ET IND. B'-induced relaxation
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