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Bejelentkezés
A Tudóstér funkcióinak nagy része bejelentkezés nélkül is elérhető. Bejelentkezésre az alábbi műveletekhez van szükség:
Kolijn, D.,
Pabel, S.,
Tian, Y.,
Lódi, M.,
Herwig, M.,
Carrizzo, A.,
Zhazykbayeva, S.,
Kovács, Á.,
Fülöp, G. Á.,
Falcao-Pires, I.,
Reusch, P. H.,
Linthout, S. V.,
Papp, Z.,
Heerebeek, L. v.,
Vecchione, C.,
Maier, L. S.,
Ciccarelli, M.,
Tschöpe, C.,
Mügge, A.,
Bagi, Z.,
Sossalla, S.,
Hamdani, N.:
Empagliflozin Improves Endothelial and Cardiomyocyte Function in Human Heart Failure With Preserved Ejection Fraction via Reduced Pro-Inflammatory-Oxidative Pathways and Protein Kinase Gα Oxidation.
Cardiovasc. Res. 117 (2), 495-507, 2021.
Gődény, I.,
Pollesello, P.,
Édes, I.,
Papp, Z.,
Bagi, Z.:
Levosimendan and its metabolite OR-1896 elicit KATP channel-dependent dilation in resistance arteries in vivo.
Pharmacol Rep. 65, 1304-1310, 2013.
Beleznai, T.,
Fehér, A.,
Spielvogel, D.,
Lansman, S. L.,
Bagi, Z.:
Arginase 1 contributes to diminished coronary arteriolar dilation in patients with diabetes.
Am. J. Physiol.-Heart Circul. Physiol. 300 (3), H777-H783, 2011.
Bagi, Z.,
Fehér, A.,
Cassuto, J.,
Akula, K.,
Labinskyy, N.,
Kaley, G.,
Koller, Á.:
Increased availability of angiotensin AT1 receptors leads to sustained arterial constriction to angiotensin II in diabetes - role for Rho-kinase activation.
Br. J. Pharmacol. 163 (5), 1059-1068, 2011.
Fehér, A.,
Rutkai, I.,
Beleznai, T.,
Ungvári, Z.,
Csiszár, A.,
Édes, I.,
Bagi, Z.:
Caveolin-1 limits the contribution of BK(Ca) channel to EDHF-mediated arteriolar dilation: implications in diet-induced obesity.
Cardiovasc. Res. 87 (4), 732-739, 2010.
Ungvári, Z.,
Bagi, Z.,
Fehér, A.,
Recchia, F. A.,
Sonntag, W. E.,
Pearson, K.,
de Cabo, R.,
Csiszár, A.:
Resveratrol confers endothelial protection via activation of the antioxidant transcription factor Nrf2.
Am. J. Physiol. Heart Circ. Physiol. 299 (1), H18-H24, 2010.
Rutkai, I.,
Fehér, A.,
Erdei, N.,
Henrion, D.,
Papp, Z.,
Édes, I.,
Koller, Á.,
Kaley, G.,
Bagi, Z.:
Activation of prostaglandin E2 EP1 receptor increases arteriolar tone and blood pressure in mice with type 2 diabetes.
Cardiovasc. Res. 83 (1), 148-154, 2009.
Bagi, Z.,
Fehér, A.,
Beleznai, T.:
Preserved coronary arteriolar dilatation in patients with type 2 diabetes mellitus: Implications for reactive oxygen species.
Pharmacol. Rep. 61 (1), 99-104, 2009.
Rácz, A.,
Veresh, Z.,
Erdei, N.,
Bagi, Z.,
Koller, Á.:
Thromboxane A2 Contributes to the Mediation of Flow-Induced Responses of Skeletal Muscle Venules: role of Cyclooxygenases 1 and 2.
J. Vasc. Res. 46 (5), 397-405, 2009.
Jebelovszki, É.,
Király, C.,
Erdei, N.,
Fehér, A.,
Pásztorné Tóth, E.,
Rutkai, I.,
Forster, T.,
Édes, I.,
Koller, Á.,
Bagi, Z.:
High-fat diet-induced obesity leads to increased NO sensitivity of rat coronary arterioles: role of soluble guanylate cyclase activation.
Am. J. Physiol. Heart Circ. Physiol. 294 (6), H2558-H2564, 2008.
Bagi, Z.,
Erdei, N.,
Koller, Á.:
High intraluminal pressure via H2O2 upregulates arteriolar constrictions to angiotensin II by increasing the functional availability of AT1 receptors.
Am. J. Physiol. Heart Circ. Physiol. 295 (2), H835-H841, 2008.
Fülöp, T.,
Jebelovszki, É.,
Erdei, N.,
Szerafin, T.,
Forster, T.,
Édes, I.,
Koller, Á.,
Bagi, Z.:
Adaptation of Vasomotor Function of Human Coronary Arterioles to the Simultaneous Presence of Obesity and Hypertension.
Arterioscler. Thromb. Vasc. Biol. 27 (11), 2348-2354, 2007.
Tóth, E.,
Rácz, A.,
Tóth, J.,
Kaminski, P. M.,
Wolin, M. S.,
Koller, Á.,
Bagi, Z.:
Contribution of polyol pathway to arteriolar dysfunction in hyperglycemia: role of oxidative stress, reduced NO, and enhanced PGH(2)/TXA(2) mediation.
Am. J. Physiol. Heart Circ. Physiol. 293 (5), H3096-H3104, 2007.
Erdei, N.,
Édes, I.,
Kaley, G.,
Koller, Á.,
Bagi, Z.:
H2O2 increases production of constrictor prostaglandins in smooth muscle leading to enhanced arteriolar tone in Type 2 diabetic mice.
Am. J. Physiol. Heart Circ. Physiol. 292 (1), H649-H656, 2007.
Erdei, N.,
Tóth, A.,
Pásztorné Tóth, E.,
Papp, Z.,
Édes, I.,
Koller, Á.,
Bagi, Z.:
High-fat diet-induced reduction in nitric oxide-dependent arteriolar dilation in rats: role of xanthine oxidase-derived superoxide anion.
Am. J. Physiol.-Heart Circul. Physiol. 291 (5), H2107-H2115, 2006.
Lizanecz, E.,
Bagi, Z.,
Pásztorné Tóth, E.,
Papp, Z.,
Édes, I.,
Kedei, N.,
Blumberg, P. M.,
Tóth, A.:
Phosphorylation-Dependent Desensitization by Anandamide of Vanilloid Receptor-1 (TRPV1) Function in Rat Skeletal Muscle Arterioles and in Chinese Hamster Ovary Cells Expressing TRPV1.
Mol. Pharmacol. 69 (3), 1015-1023, 2006.
Erdei, N.,
Papp, Z.,
Pollesello, P.,
Édes, I.,
Bagi, Z.:
The levosimendan metabolite OR-1896 elicits vasodilation by activating the KATP and BKCa channels in rat isolated arterioles.
Br. J. Pharmacol. 148 (5), 696-702, 2006.