Network


Latest external collaboration on country level. Dive into details by clicking on the dots.

Hotspot


Dive into the research topics where Eva Havránková is active.

Publication


Featured researches published by Eva Havránková.


Bioorganic Chemistry | 2018

Novel sulfonamide incorporating piperazine, aminoalcohol and 1,3,5-triazine structural motifs with carbonic anhydrase I, II and IX inhibitory action

Eva Havránková; Jozef Csöllei; Daniela Vullo; Vladimír Garaj; Pavel Pazdera; Claudiu T. Supuran

A new series of s-triazine derivatives incorporating sulfanilamide, homosulfanilamide, 4-aminoethyl-benzenesulfonamide and piperazine or aminoalcohol structural motifs is reported. Molecular docking was exploited to select compounds from virtual combinatorial library for synthesis and subsequent biological evaluation. The compounds were prepared by using step by step nucleophilic substitution of chlorine atoms from cyanuric chloride (2,4,6-trichloro-1,3,5-triazine). The compounds were tested as inhibitors of physiologically relevant carbonic anhydrase (CA, EC 4.2.1.1) isoforms. Specifically, against the cytosolic hCA I, II and tumor-associated hCA IX. These compounds show appreciable inhibition. hCA I was inhibited with KIs in the range of 8.5-2679.1 nM, hCA II with KIs in the range of 4.8-380.5 nM and hCA IX with KIs in the range of 0.4-307.7 nM. As other similar derivatives, some of the compounds showed good or excellent selectivity ratios for inhibiting hCA IX over hCA II, of 3.5-18.5. 4-[({4-Chloro-6-[(4-hydroxyphenyl)amino]-1,3,5-triazin-2-yl}amino)methyl] benzene sulfonamide demonstrated subnanomolar affinity for hCA IX (0.4 nM) and selectivity (18.50) over the cytosolic isoforms. This series of compounds may be of interest for the development of new, unconventional anticancer drugs targeting hypoxia-induced CA isoforms such as CA IX.


Journal of Chemical Engineering | 2014

Comparative Studies of Catalytic Application of Cerium(III) Chloride and Resin Supported Cerium(III) in Domino Syntheses of 1,5-Benzodiazepine and 1,3-Diazine Skeletons

Eva Havránková; Pavel Pazdera


Archive | 2017

Způsob přípravy grafenoidů a grafenoid připravitelný tímto způsobem

Pavel Pazdera; Jan Šimbera; Eva Havránková; Dana Němečková


Archive | 2017

Vsázkové technologie pro syntézu substituovaných piperazinů využívající mikrovlnný zdroj a imobilizovaný katalyzátor

Pavel Pazdera; Jan Šimbera; Dana Němečková; Eva Havránková


Archive | 2017

Průtoková technologie produkce substituovaných piperazinů využívající mikrovlnný zdroj a/ nebo katalytické lože

Pavel Pazdera; Eva Havránková; Dana Němečková; Jan Šimbera


International Journal of Engineering Research and | 2017

Comparative study for 3, 3´-[(4-X-phenyl)-methanediyl]bis(1H-indoles) synthesis catalyzed by Ce(III) cations

Eva Havránková; Jozef Csöllei; Pavel Pazdera


The 20th International Electronic Conference on Synthetic Organic Chemistry | 2016

SYNTHESIS OF A NOVEL 1,3,5-TRIAZINE DERIVATIVES AS POTENTIAL INHIBITORS OF TUMOR-ASSOCIATED CARBONIC ANHYDRASE IX

Eva Havránková; Jozef Csöllei; Pavel Pazdera


Archive | 2016

Průtokový reaktor s mikrovlnným zdrojem a/nebo katalytickýmložem

Pavel Pazdera; Jan Šimbera; Dana Herová; Eva Havránková; Richard Ševčík


Archive | 2015

Design Syntézy s-triazinů s novými piperazinovými strukturními motivy a jeho realizace s využitím metod "Zelené chemie"

Eva Havránková; Jozef Csöllei; Pavel Pazdera


J Chem Applications | 2015

Kabachnik-Fields and Prins-Ritter Synthesis: Application ofCe(III) Supported on a Weakly Acidic Cation-exchanger Resin inComparative Study

Eva Havránková; Pavel Pazdera

Collaboration


Dive into the Eva Havránková's collaboration.

Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar
Top Co-Authors

Avatar

Vladimír Garaj

Comenius University in Bratislava

View shared research outputs
Researchain Logo
Decentralizing Knowledge