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Dive into the research topics where Iva Benešová is active.

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Featured researches published by Iva Benešová.


Journal of Proteome Research | 2016

Differential Isotope Labeling of Glycopeptides for Accurate Determination of Differences in Site-Specific Glycosylation.

Martin Pabst; Iva Benešová; Stephan R. Fagerer; Mathias Jacobsen; Klaus Eyer; Gregor W. Schmidt; Robert F. Steinhoff; Jasmin Krismer; Fabian Wahl; Jan Preisler; Renato Zenobi

We introduce a stable isotope labeling approach for glycopeptides that allows a specific glycosylation site in a protein to be quantitatively evaluated using mass spectrometry. Succinic anhydride is used to specifically label primary amino groups of the peptide portion of the glycopeptides. The heavy form (D4(13)C4) provides an 8 Da mass increment over the light natural form (H4(12)C4), allowing simultaneous analysis and direct comparison of two glycopeptide profiles in a single MS scan. We have optimized a protocol for an in-solution trypsin digestion, a one-pot labeling procedure, and a post-labeling solid-phase extraction to obtain purified and labeled glycopeptides. We provide the first demonstration of this approach by comparing IgG1 Fc glycopeptides from polyclonal IgG samples with respect to their galactosylation and sialylation patterns using MALDI MS and LC-ESI-MS.


Analytical Chemistry | 2016

Direct Analysis of Gold Nanoparticles from Dried Droplets Using Substrate-Assisted Laser Desorption Single Particle-ICPMS

Iva Benešová; Kristýna Dlabková; František Zelenák; Tomáš Vaculovič; Viktor Kanický; Jan Preisler

Single particle inductively coupled plasma mass spectrometry (SP-ICPMS) has been generally accepted as a powerful tool in the field of nanoanalysis. The method has usually been restricted to direct nanoparticle (NP) introduction using nebulization or microdroplet generation systems. In this work, AuNPs are introduced into ICPMS by substrate-assisted laser desorption (SALD) directly from a suitable absorbing plastic surface using a commercial ablation cell for the first time. In SALD, desorption of individual NPs is mediated using a frequency-quintupled Nd:YAG laser (213 nm) operated at a rather low laser fluence. Conditions including laser fluence, laser beam scan rate, and carrier gas flow rate were optimized in order to gain the highest AuNP transport efficiency and avoid AuNP disintegration within the laser irradiation. The method was demonstrated on a well-characterized reference material, 56 nm AuNPs with a transport efficiency of 61% and commercially available 86 nm AuNPs. Feasibility of our technique for NP detection and characterization is discussed here, and the results are compared with an established technique, nebulizer SP-ICPMS.


Analytica Chimica Acta | 2017

LC coupled to ESI, MALDI and ICP MS - A multiple hyphenation for metalloproteomic studies

Kateřina Coufalíková; Iva Benešová; Tomáš Vaculovič; Viktor Kanický; Jan Preisler

A new multiple detection arrangement for liquid chromatography (LC) that supplements conventional electrospray ionization (ESI) mass spectrometry (MS) detection with two complementary detection techniques, matrix-assisted laser desorption/ionization (MALDI) MS and substrate-assisted laser desorption inductively coupled plasma (SALD ICP) MS has been developed. The combination of the molecular and elemental detectors in a single separation run is accomplished by utilizing a commercial MALDI target made of conductive plastic. The proposed platform provides a number of benefits in todays metalloproteomic applications, which are demonstrated by analysis of a metallothionein mixture. To maintain metallothionein complexes, separation is carried out at a neutral pH. The effluent is split; a major portion is directed to ESI MS while the remaining 1.8% fraction is deposited onto a plastic MALDI target. Dried droplets are overlaid with MALDI matrix and analysed consecutively by MALDI MS and SALD ICP MS. In the ESI MS spectra, the MT isoform complexes with metals and their stoichiometry are determined; the apoforms are revealed in the MALDI MS spectra. Quantitative determination of metallothionein isoforms is performed via determination of metals in the complexes of the individual protein isoforms using SALD ICP MS.


Archive | 2017

SALD a DLTV - nové techniky laserové desorpce pro ICP MS

Antonín Bednařík; Marek Stiborek; Kateřina Coufalíková; Iva Benešová; Kristýna Dlabková; Pavla Foltynová; Pavel Krásenský; Tomáš Vaculovič; Viktor Kanický; Jan Preisler


Archive | 2017

Capillary electrophoresis of selenium species withsubstrate-assisted laser desorption ICP MS detection

Jakub Bělehrad; Adam Pruška; Iva Benešová; Viktor Kanický; Jan Preisler


Archive | 2016

Využití hmotnostní spektrometrie indukčně vázaného plazmatu stepelným odpařováním diodovým laserem (DLTV-ICP-MS)

Antonín Bednařík; Pavla Foltynová; Kristýna Dlabková; Iva Benešová; Andrea Kútná; Markéta Dudrová; Pavel Krásenský; Tomáš Vaculovič; Viktor Kanický; Jan Preisler


Archive | 2016

Zvýšení výkonu zobrazovací MALDI MS využívající skenování laserového paprsku

Antonín Bednařík; Pavel Kuba; Eugene Moskovets; Iva Benešová; Jan Preisler


Archive | 2016

HPLC Coupling with ESI, MALDI and SALD ICP MS - The Detection Platform for Metalloprotein Characterization

Kateřina Jägerová; Iva Benešová; Kristýna Dlabková; Viktor Kanický; Jan Preisler


Archive | 2016

Analýza nanočástic pomocí ICP MS s laserovou desorpcí za účasti substrátu

Jan Preisler; Iva Benešová; Kristýna Dlabková; František Zelenák; Tomáš Vaculovič; Viktor Kanický


Archive | 2016

Laser-Assisted Sample Introduction for Nanoparticle Characterization using ICP MS

Jan Preisler; Iva Benešová; Kristýna Dlabková; František Zelenák; Tomáš Vaculovič; Viktor Kanický

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Pavla Foltynová

Central European Institute of Technology

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Huan-Tsung Chang

Chung Yuan Christian University

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