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American Journal of Physiology. Regulatory, Integrative and Comparative Physiology|September 19, 2008
Bradykinin regulates calpain and proinflammatory signaling through TRPM7-sensitive pathways in vascular smooth muscle cellsAlvaro Yogi, Glaucia E Callera, Rita Tostes, et al.Magnesium Research|January 5, 2011
Vascular biology of magnesium and its transporters in hypertensionAlvaro Yogi, Glaucia E Callera, Tayze T Antunes, et al.Current Opinion in Nephrology and Hypertension|January 7, 2010
Receptor and nonreceptor tyrosine kinases in vascular biology of hypertensionAlvaro Yogi, Sarah E O'Connor, Glaucia E Callera, et al.Current Opinion in Nephrology and Hypertension|February 13, 2007
Vascular signaling through cholesterol-rich domains: implications in hypertensionGlaucia E Callera, Augusto Ci Montezano, Alvaro Yogi, et al.Circulation Journal : Official Journal of the Japanese Circulation Society|December 15, 2010
Transient receptor potential melastatin 7 (TRPM7) cation channels, magnesium and the vascular system in hypertensionAlvaro Yogi, Glaucia E Callera, Tayze T Antunes, et al.The Journal of Pharmacology and Experimental Therapeutics|February 24, 2004
Ca2+-activated K+ channels underlying the impaired acetylcholine-induced vasodilation in 2K-1C hypertensive ratsGlaucia E Callera, Alvaro Yogi, Rita C Tostes, et al.Clinical Science (London, England : 1979)|November 8, 2005
Endothelin-1-induced oxidative stress in DOCA-salt hypertension involves NADPH-oxidase-independent mechanismsGlaucia E Callera, Rita C Tostes, Alvaro Yogi, et al.Expert Opinion on Therapeutic Targets|February 14, 2008
Therapeutic targets in hypertension: is there a place for antagonists of the most potent vasoconstrictors?Fernanda R C Giachini, Glaucia E Callera, Fernando S Carneiro, et al.Journal of Hypertension|January 17, 2009
Regulation of the novel Mg2+ transporter transient receptor potential melastatin 7 (TRPM7) cation channel by bradykinin in vascular smooth muscle cellsGlaucia E Callera, Ying He, Alvaro Yogi, et al.Clinical Science (London, England : 1979)|December 4, 2009
Ethanol-induced vasoconstriction is mediated via redox-sensitive cyclo-oxygenase-dependent mechanismsAlvaro Yogi, Glaucia E Callera, Ulisses V Hipólito, et al.Pageof 5