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Featured researches published by Balázs Bognár.


American Journal of Physiology-heart and Circulatory Physiology | 2009

Cardioprotection by HO-4038, a novel verapamil derivative, targeted against ischemia and reperfusion-mediated acute myocardial infarction

Iyyapu Krishna Mohan; Mahmood Khan; Sheik Wisel; Karuppaiyah Selvendiran; Arun Sridhar; Cynthia A. Carnes; Balázs Bognár; Tamás Kálai; Kálmán Hideg; Periannan Kuppusamy

Many cardiac interventional procedures, such as coronary angioplasty, stenting, and thrombolysis, attempt to reintroduce blood flow (reperfusion) to an ischemic region of myocardium. However, the reperfusion is accompanied by a complex cascade of cellular and molecular events resulting in oxidative damage, termed myocardial ischemia-reperfusion (I/R) injury. In this study, we evaluated the ability of HO-4038, an N-hydroxypiperidine derivative of verapamil, on the modulation of myocardial tissue oxygenation (Po(2)), I/R injury, and key signaling molecules involved in cardioprotection in an in vivo rat model of acute myocardial infarction (MI). MI was created in rats by ligating the left anterior descending coronary artery (LAD) for 30 min followed by 24 h of reperfusion. Verapamil or HO-4038 was infused through the jugular vein 10 min before the induction of ischemia. Myocardial Po(2) and the free-radical scavenging ability of HO-4038 were measured using electron paramagnetic resonance spectroscopy. HO-4038 showed a significantly better scavenging ability of reactive oxygen radicals compared with verapamil. The cardiac contractile functions in the I/R hearts were significantly higher recovery in HO-4038 compared with the verapamil group. A significant decrease in the plasma levels of creatine kinase and lactate dehydrogenase was observed in the HO-4038 group compared with the verapamil or untreated I/R groups. The left ventricular infarct size was significantly less in the HO-4038 (23 +/- 2%) compared with the untreated I/R (36 +/- 4%) group. HO-4038 significantly attenuated the hyperoxygenation (36 +/- 1 mmHg) during reperfusion compared with the untreated I/R group (44 +/- 2 mmHg). The HO-4038-treated group also markedly attenuated superoxide production, increased nitric oxide generation, and enhanced Akt and Bcl-2 levels in the reperfused myocardium. Overall, the results demonstrated that HO-4038 significantly protected hearts against I/R-induced cardiac dysfunction and damage through the combined beneficial actions of calcium-channel blocking, antioxidant, and prosurvival signaling activities.


Hypertension | 2013

Pulmonary Hypertension Secondary to Left-Heart Failure Involves Peroxynitrite-Induced Downregulation of PTEN in the Lung

Yazhini Ravi; Karuppaiyah Selvendiran; Shan Naidu; Sarath Meduru; Lucas Citro; Balázs Bognár; Mahmood Khan; Tamás Kálai; Kálmán Hideg; Periannan Kuppusamy; Chittoor Sai-Sudhakar

Pulmonary hypertension (PH) that occurs after left-heart failure (LHF), classified as Group 2 PH, involves progressive pulmonary vascular remodeling induced by smooth muscle cell (SMC) proliferation. However, mechanisms involved in the activation of SMCs remain unknown. The objective of this study was to determine the involvement of peroxynitrite and phosphatase-and-tensin homolog on chromosome 10 (PTEN) in vascular SMC proliferation and remodeling in the LHF-induced PH (LHF-PH). LHF was induced by permanent ligation of left anterior descending coronary artery in rats for 4 weeks. MRI, ultrasound, and hemodynamic measurements were performed to confirm LHF and PH. Histopathology, Western blot, and real-time polymerase chain reaction analyses were used to identify key molecular signatures. Therapeutic intervention was demonstrated using an antiproliferative compound, HO-3867. LHF-PH was confirmed by significant elevation of pulmonary artery pressure (mean pulmonary artery pressure/mm Hg: 35.9±1.8 versus 14.8±2.0, control; P<0.001) and vascular remodeling. HO-3867 treatment decreased mean pulmonary artery pressure to 22.6±0.8 mm Hg (P<0.001). Substantially higher levels of peroxynitrite and significant loss of PTEN expression were observed in the lungs of LHF rats when compared with control. In vitro studies using human pulmonary artery SMCs implicated peroxynitrite-mediated downregulation of PTEN expression as a key mechanism of SMC proliferation. The results further established that HO-3867 attenuated LHF-PH by decreasing oxidative stress and increasing PTEN expression in the lung. In conclusion, peroxynitrite and peroxynitrite-mediated PTEN inactivation seem to be key mediators of lung microvascular remodeling associated with PH secondary to LHF.


Medicinal Chemistry | 2017

Synthesis and biological evaluation of curcumin-nitroxide-based molecular hybrids as antioxidant and anti-proliferative agents

Balázs Bognár; Muthulakshmi Kuppusamy; Esha Madan; Tamás Kálai; Mária Balog; József Jekő; Periannan Kuppusamy; Kálmán Hideg

BACKGROUND Natural products and their derivatives are widely used to treat cancer and other diseases associated with ROS- and RNS-induced damages. METHODS A series of paramagnetic modified curcumin analogs and 3,5-diarylidene-piperidones (DAP) have been designed, synthesized, and characterized on their anti-proliferative and antioxidant activity. RESULTS Biological characterization of the new compounds supported the earlier results that incorporation of a nitroxide moiety or its precursor into curcumin or diarylidenylpiperidone (DAP) scaffolds resulted in anti-proliferative effect toward cancerous cell-lines in case of aryl hydroxy and/or methoxy substituent containing derivatives, suggesting their potential for targeted therapeutic applications. In case of basic side chain derivatives, nitroxide incorporation gave unambiguous results, however in tendency the more accessible DAP derivatives had stronger anti-proliferative effect. In most cases, the nitroxide incorporation increased the TEAC value (proton and electron donation capability) of DAP derivatives. CONCLUSIONS Among the compounds synthesized and investigated the spin-labeled curcumin and 3,5-bis(4-hydroxy-3-methoxybenzylidene)piperidin-4-one derivatives were the most effective antiproliferative and antioxidant derivatives.


Bioorganic & Medicinal Chemistry | 2010

Synthesis and study of new paramagnetic and diamagnetic verapamil derivatives

Balázs Bognár; Shabnam Ahmed; M. Lakshmi Kuppusamy; Karuppaiyah Selvendiran; Mahmood Khan; József Jekő; Olga H. Hankovszky; Tamás Kálai; Periannan Kuppusamy; Kálmán Hideg

New derivatives of verapamil (1) modified with nitroxides and their precursors were synthesized and screened for reactive oxygen species (ROS)-scavenging activities. The basic structure was modified by changing the nitrile group to an amide or the methyl substituent on tertiary nitrogen with nitroxides and their reduced forms (hydroxylamine and secondary amines). Among the new verapamil derivatives compound 16B [Mohan, I. K.; Kahn, M.; Wisel, S.; Selvendiran, K.; Sridhar, A.; Carnes, C.A.; Bognár, B.; Kálai, T.; Hideg, K.; Kuppusamy, P. Am. J. Physiol. Heart Circ. Physiol.2009, 296, 140], modified with hydroxylamine salt of 2,2,6,6-tetramethyl-1,2,3,6-tetrahydropyridine-1-yloxyl proved to be the best ROS scavenger in vitro and protected HSMC and CHO cells against H(2)O(2) induced damage.


Synthetic Communications | 2015

Synthesis of New Pyrroline Nitroxides with Ethynyl Functional Group

Györgyi Úr; Tamás Kálai; Mária Balog; Balázs Bognár; Gergely Gulyás-Fekete; Kálmán Hideg

Abstract 3-Substituted and 3,4-disubstituted pyrroline nitroxides containing an ethynyl group or two ethynyl groups were achieved by the reaction of a paramagnetic aldehydes with dimethyl (1-diazo-2-oxopropyl)phosphonate (Bestmann–Ohira reagent). The new compounds containing an ethynyl group were found to be useful building blocks in Sonogashira coupling, cyclization, and cycloaddition reactions producing potentially “azido-specific” cross-linking spin labels, paramagnetic ligands, and polyradical scaffolds. GRAPHICAL ABSTRACT


Archive | 2016

Chapter 31:EPR Detection (Spin Probes)

Éva Hideg; Anikó Mátai; Balázs Bognár; Tamás Kálai

Singlet oxygen is a unique molecule among reactive oxygen species, with equally fascinating physicochemical and photobiological features. In this chapter we review the principles and biological applications of its detection using spin trapping electron paramagnetic resonance (EPR) spectroscopy. In addition to introducing the chemistry behind the technique itself, possible applications are illustrated using examples from both medicinal and plant biochemistry.


Free Radical Biology and Medicine | 2006

A novel SOD-mimetic permeability transition inhibitor agent protects ischemic heart by inhibiting both apoptotic and necrotic cell death

Zita Bognar; Tamás Kálai; Anita Pálfi; Katalin Hanto; Balázs Bognár; László Márk; Zoltán Szabó; Antal Tapodi; Balázs Radnai; Zsolt Sárszegi; Árpád Szántó; Ferenc Gallyas; Kálmán Hideg; Balazs Sumegi; Gabor Varbiro


Bioorganic & Medicinal Chemistry | 2005

Synthesis and evaluation of the permeability transition inhibitory characteristics of paramagnetic and diamagnetic amiodarone derivatives

Tamás Kálai; Gabor Varbiro; Zita Bognar; Anita Pálfi; Katalin Hanto; Balázs Bognár; Erzsébet Osz; Balazs Sumegi; Kálmán Hideg


Tetrahedron | 2011

Synthesis and metal ion complexation of spin labeled 18-crown-6 ethers containing an acridone or an acridine fluorophore unit

Júlia Kertész; Balázs Bognár; Attila Kormos; Ildikó Móczár; Péter Baranyai; Miklós Kubinyi; Tamás Kálai; Kálmán Hideg; Péter Huszthy


Journal of Heterocyclic Chemistry | 2006

Synthesis of new double (spin and fluorescence) sensor reagents and labels

Balázs Bognár; Erzsébet Øz; Kálmán Hideg; Tamás Kálai

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Karuppaiyah Selvendiran

The Ohio State University Wexner Medical Center

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