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Dive into the research topics where Andrea Berenyiova is active.

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Featured researches published by Andrea Berenyiova.


Nitric Oxide | 2015

The reaction products of sulfide and S-nitrosoglutathione are potent vasorelaxants.

Andrea Berenyiova; Marian Grman; Ana Mijušković; Andrej Staško; Anton Misak; Péter Nagy; Elena Ondriasova; Sona Cacanyiova; Vlasta Brezová; Martin Feelisch; Karol Ondrias

The chemical interaction of sodium sulfide (Na2S) with the NO-donor S-nitrosoglutathione (GSNO) has been described to generate new reaction products, including polysulfides and nitrosopersulfide (SSNO(-)) via intermediacy of thionitrous acid (HSNO). The aim of the present work was to investigate the vascular effects of the longer-lived products of the Sulfide/GSNO interaction. Here we show that the products of this reaction relax precontracted isolated rings of rat thoracic aorta and mesenteric artery (but to a lesser degree rat uterus) with a >2-fold potency compared with the starting material, GSNO (50 nM), whereas Na2S and polysulfides have little effect at 1-5 µM. The onset of vasorelaxation of the reaction products was 7-10 times faster in aorta and mesenteric arteries compared with GSNO. Relaxation to GSNO (100-500 nM) was blocked by an inhibitor of soluble guanylyl cyclase, ODQ (0.1 and 10 µM), and by the NO scavenger cPTIO (100 µM), but less affected by prior acidification (pH 2-4), and unaffected by N-acetylcysteine (1 mM) or methemoglobin (20 µM heme). By contrast, relaxation to the Sulfide/GSNO reaction products (100-500 nM based on the starting material) was inhibited to a lesser extent by ODQ, only slightly decreased by cPTIO, more markedly inhibited by methemoglobin and N-acetylcysteine, and abolished by acidification before addition to the organ bath. The reaction mixture was found to generate NO as detected by EPR spectroscopy using N-(dithiocarboxy)-N-methyl-D-glucamine (MGD2)-Fe(2+) as spin trap. In conclusion, the Sufide/GSNO reaction products are faster and more pronounced vasorelaxants than GSNO itself. We conclude that in addition to NO formation from SSNO(-), reaction products other than polysulfides may give rise to nitroxyl (HNO) and be involved in the pronounced relaxation induced by the Sulfide/GSNO cross-talk.


Oxidative Medicine and Cellular Longevity | 2016

Epicatechin Prevents Blood Pressure Increase and Reduces Locomotor Hyperactivity in Young Spontaneously Hypertensive Rats

Michal Kluknavsky; Peter Balis; Angelika Puzserova; Jana Radosinska; Andrea Berenyiova; M. Drobna; Štefan Lukáč; Jana Muchová; Iveta Bernatova

This study investigated the effects of subchronic (−)-epicatechin (Epi) treatment on locomotor activity and hypertension development in young spontaneously hypertensive rats (SHR). Epi was administered in drinking water (100 mg/kg/day) for 2 weeks. Epi significantly prevented the development of hypertension (138 ± 2 versus 169 ± 5 mmHg, p < 0.001) and reduced total distance traveled in the open-field test (22 ± 2 versus 35 ± 4 m, p < 0.01). In blood, Epi significantly enhanced erythrocyte deformability, increased total antioxidant capacity, and decreased nitrotyrosine concentration. In the aorta, Epi significantly increased nitric oxide (NO) synthase (NOS) activity and elevated the NO-dependent vasorelaxation. In the left heart ventricle, Epi increased NOS activity without altering gene expressions of nNOS, iNOS, and eNOS. Moreover, Epi reduced superoxide production in the left heart ventricle and the aorta. In the brain, Epi increased nNOS gene expression (in the brainstem and cerebellum) and eNOS expression (in the cerebellum) but had no effect on overall NOS activity. In conclusion, Epi prevented the development of hypertension and reduced locomotor hyperactivity in young SHR. These effects resulted from improved cardiovascular NO bioavailability concurrently with increased erythrocyte deformability, without changes in NO production in the brain.


Oxidative Medicine and Cellular Longevity | 2018

The Effect of Chronic NO Synthase Inhibition on the Vasoactive and Structural Properties of Thoracic Aorta, NO Synthase Activity, and Oxidative Stress Biomarkers in Young SHR

Andrea Berenyiova; Ima Dovinová; Miroslava Kvandova; Frantisek Kristek; Eugene Jansen; Miroslava Majzunova; Sona Cacanyiova

Although the role of nitric oxide (NO) in essential hypertension is still unclear, the effects of long-term NO deficiency have not yet been investigated during the critical juvenile period in spontaneously hypertensive rats (SHR). We aimed to analyze the effects of chronic NO synthase (NOS) inhibition on systolic blood pressure (sBP), vasoactivity, morphological changes and superoxide level in the thoracic aorta (TA), NOS activity in different tissues, and general biomarkers of oxidative stress in plasma of young SHR. Four-week-old SHR were treated with NG-nitro-L-arginine methyl ester (L-NAME, 50 mg/kg/day, p.o.) for 4-5 weeks. L-NAME treatment induced a transient sBP increase only, and surprisingly, slightly inhibited endothelium-dependent relaxation of TA. Hereby, the inhibition of NOS activity varied from tissue to tissue, ranging from the lowest in the TA and the kidney to the highest in the brain stem. In spite of an increased sensitivity of adrenergic receptors, the maximal adrenergic contraction of TA was unchanged, which was associated with changes in elastin arrangement and an increase in wall thickness. The production of reactive oxygen species in the TA was increased; however, the level of selected biomarkers of oxidative stress did not change. Our findings proved that the TA of young SHR responded to chronic NO deficiency by the development of adaptive mechanisms on the functional (preserved NO-derived vasorelaxation, unincreased contraction) and molecular (preserved NOS activity) level.


Biomedicine & Pharmacotherapy | 2018

ADMA, homocysteine and redox status improvement affected by 7-nitroindazole in spontaneously hypertensive rats

Ima Dovinová; Eva Hrabárová; Eugene Jansen; Miroslava Kvandova; Miroslava Majzunova; Andrea Berenyiova; Miroslav Barancik

Inhibition of nitric oxide (NO) production can influence blood pressure regulation and increase hypertension. Asymmetric dimethylarginine, ADMA, an analogue of L-arginine, can inhibit NO synthesis, impair endothelial function, and is a risk marker of cardiovascular diseases. Homocysteine (Hcy) level affects oxidative stress production of reactive oxygen species (ROS) in hypertension and also influences changes in signaling and cell damage. The present study was focused on experimental effects of exogenous NOS inhibitors and their effect on ADMA, an endogenous NOS inhibitor, homocysteine and ROS production measured as reactive oxidative metabolites (ROM). We compared effects of the two potential exogenous NO-inhibitors: NG-nitro L-arginine methyl ester (L-NAME) and 7-nitroindazole (7-NI). Levels of ADMA, Hcy, ROM and total thiols (TTL) were not changed in the L-NAME group. With 7-NI administration, we observed unchanged NOS activity in the left ventricle and a pronounced decrease of ADMA and Hcy levels, accompanied by ROM over-production in plasma. TTL/ROM ratio was more favorable than in the L-NAME group. We observed that 7-NI, an exogenous NOinhibitor, can decrease and improve the levels of ADMA, Hcy, and ROM, and increase TTL/ROM ratio in the plasma of spontaneously hypertensive rats.


Oxidative Medicine and Cellular Longevity | 2017

Corrigendum to “(−)-Epicatechin Prevents Blood Pressure Increase and Reduces Locomotor Hyperactivity in Young Spontaneously Hypertensive Rats”

Michal Kluknavsky; Peter Balis; Angelika Puzserova; Jana Radosinska; Andrea Berenyiova; M. Drobna; Štefan Lukáč; Jana Muchová; Iveta Bernatova

[This corrects the article DOI: 10.1155/2016/6949020.].


Journal of Physiology and Biochemistry | 2014

Different vasoactive effects of chronic endothelial and neuronal NO-synthase inhibition in young Wistar rats

Sona Cacanyiova; Andrea Berenyiova; Magdalena Malekova; Frantisek Kristek; Ima Dovinová; Peter Krenek; Lenka Pivackova; Ivana Pifkova


Pathophysiology | 2018

THE INTERACTION OF HYDROGEN SULFIDE WITH NO-SYNTHASE AND NO DONORS TRIGGERS SPECIFIC VASOACTIVE EFFECTS IN ISOLATED ARTERIES OF RATS AND PATIENTS WITH ARTERIAL HYPERTENSION

Sona Cacanyiova; Andrea Berenyiova; Marian Grman; Karol Ondrias; Jan Breza; Frantisek Kristek


Pathophysiology | 2018

THE REDOX SIGNALING IN THE KIDNEY OF YOUNG SPONTANEOUSLY HYPERTENSIVE RATS AFTER CHRONIC INHIBITION OF NO

Miroslava Majzunova; Dominika Pavlicova; Miroslava Kvandova; Andrea Berenyiova; Eugene Jansen; Ima Dovinová


Pathophysiology | 2018

AGE AND INCREASED BLOOD PRESSURE MODULATED THE NITRIC OXIDE AND HYDROGEN SULPHIDE SIGNALISATIONS IN SPONTANEOUSLY HYPERTENSIVE RATS

Andrea Berenyiova


Pathophysiology | 2018

ENDOTHELIAL AGING IN SPONTANEOUSLY HYPERTENSIVE RATS

Angelika Puzserova; Anna Zemančíková; Peter Balis; Andrea Berenyiova; Jana Radosinska; Iveta Bernatova; Michal Kluknavsky; Sona Cacanyiova; Miroslava Kvandova; Jozef Török

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Sona Cacanyiova

Slovak Academy of Sciences

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Frantisek Kristek

Slovak Academy of Sciences

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Ima Dovinová

Slovak Academy of Sciences

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Marian Grman

Slovak Academy of Sciences

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Iveta Bernatova

Slovak Academy of Sciences

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Jana Radosinska

Comenius University in Bratislava

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Karol Ondrias

Slovak Academy of Sciences

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Michal Kluknavsky

Slovak Academy of Sciences

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