UCM
Research/art/teacher profile of a person
Name and surname:
Doc. Ing. Andrea Purdešová, PhD.
Email:
andrea.purdesova@ucm.sk
Homepage:
http:\\
Fakulta/Univerzita:
FPV UCM - Faculty of Natural Sciences
Pracovisko:
UCHEV - Ústav chémie a environmentálných vied

I. - Basic information

I.1 - Surname
Purdešová
I.2 - Name
Andrea
I.3 - Degrees
Assoc. Prof., Dipl. Eng., PhD.
I.4 - Year of birth
1973
I.5 - Name of the workplace
Institute of Chemistry and Environmental Science, Faculty of Natural Sciences UCM in Trnave
I.6 - Address of the workplace
Námestie J. Herdu 2, 917 01 Trnava
I.7 - Position
Associate Professor
I.8 - E-mail address
andrea.purdesova@ucm.sk
I.9 - Hyperlink to the entry of a person in the Register of university staff
https://www.portalvs.sk/regzam/detail/13588?mode=full
I.10 - Name of the study field in which a person works at the university
17 Chemistry, 4 Biotechnologies
I.11 - ORCID iD
0000-0002-3479-2734

II. - Higher education and further qualification growth

II.1 - First degree of higher education
II.2 - Second degree of higher education
II.a - Name of the university or institution
FCHFT SUT in Bratislava
II.b - Year
1996
II.c - Study field and programme
Chemistry
II.3 - Third degree of higher education
II.a - Name of the university or institution
FCHFT SUT in Bratislava
II.b - Year
2001
II.c - Study field and programme
Analytical Chemistry
II.4 - Associate professor
II.a - Name of the university or institution
FCHFT SUT in Bratislava
II.b - Year
2011
II.c - Study field and programme
Analyticaly Chemistry
II.5 - Professor
II.6 - Doctor of Science (DrSc.)

III. - Current and previous employment

III.a - Occupation-position III.b - Institution III.c - Duration
Assistant, Associate professor FCHFT SUT in Bratislava 1996 - 2020
Associate professor Faculty of Natural Sciences UCM in Trnave, Institute of Chemistry and Environmental Science, Department of Chemistry 2020 -

IV. - Development of pedagogical, professional, language, digital and other skills

IV.a - Activity description, course name, other IV.b - Name of the institution IV.c - Year
vedecký kvalifikačný stupeň IIa Slovak Academy of Sciences, Komisia Slovenskej akadémie vied pre posudzovanie vedeckej kvalifikácie zamestnancov 2009
Creation of static www pages FCHFT SUT in Bratislava 2006
professional seminar: Ensuring the quality of analytical results 2THETA ASE, Český Těšín 2008
professional course: Sampling University of Pardubice - Faculty of Chemical Technology 2008
professional course: Mass spectrometry from A to Z Spektroskopická společnost Jana Marka Marci, Přírodovědecká fakulta Masarykovy univerzity. Brno, CZ 2022
professional lecture stay: School of mass spectrometry Spektroskopická společnost Jana Marka Marci, Přírodovědecká fakulta Masarykovy univerzity. Brno, CZ 2022
professional course: interpretation of mass EI spectra Spektroskopická společnost Jana Marka Marci, Přírodovědecká fakulta Masarykovy univerzity. Brno, CZ 2023
professional lecture stay: 24th School of mass spectrometry Spektroskopická společnost Jana Marka Marci, Přírodovědecká fakulta Masarykovy univerzity. Brno, CZ 2023

V. - Overview of activities within the teaching career at the university

V.1 - Overview of the profile courses taught in the current academic year according to study programmes
V.1.a - Name of the profile course V.1.b - Study programme V.1.c - Degree V.1.d - Field of study
Theoretical principles of analytical chemistry Applied Analytical and Bioanalytical Chemistry III. 17 Chemistry
Methods of Separation of Substances Applied Chemistry II. 17 Chemistry
V.2 - Overview of the responsibility for the delivery, development and quality assurance of the study programme or its part at the university in the current academic year
V.2.a - Name of the study programme V.2.b - Degree V.2.c - Field of study
Applied Analytical Chemistry I. 17. Chemistry
V.3 - Overview of the responsibility for the development and quality of the field of habilitation procedure and inaugural procedure in the current academic year
V.3.a - Name of the field of habilitation procedure and inaugural procedure V.3.b - Study field to which it is assigned
Analytical Chemistry 17. Chemistry
V.4 - Overview of supervised final theses
V.4.1 - Number of currently supervised theses
V.4.a - Bachelor's (first degree)
1
V.4.b - Diploma (second degree)
1
V.4.c - Dissertation (third degree)
2
V.4.2 - Number of defended theses
V.4.a - Bachelor's (first degree)
9
V.4.b - Diploma (second degree)
9
V.4.c - Dissertation (third degree)
1
V.5 - Overview of other courses taught in the current academic year according to study programmes
V.5.a - Name of the course V.5.b - Study programme V.5.c - Degree V.5.d - Field of study
Instrumental Methods of Analysis Biotechnology II. 4. Biotechnologies
Methods of Separation of Substances Applied Chemistry II. 17. Chemistry
Electrochemistry Applied Chemistry II. 17. Chemistry
Theoretical Principles of Analytical Chemistry Applied Analytical and Bioanalytical Chemistry III. 17. Chemistry
Electroanalytical Methods Applied Analytical and Bioanalytical Chemistry III. 17. Chemistry
Experimental methods of substance characterization Chemistry I 17. Chemistry
Laboratory exercises in applied chemistry Applied Chemistry II 17. Chemistry

VI. - Overview of the research/artistic/other outputs

VI.1 - Overview of the research/artistic/other outputs and the corresponding citations
VI.1.1 - Number of the research/artistic/other outputs
VI.1.a - Overall
110
VI.1.b - Over the last six years
36
VI.1.2 - Number of the research/artistic/other outputs registered in the Web of Science or Scopus databases
VI.1.a - Overall
28
VI.1.b - Over the last six years
7
VI.1.3 - Number of citations corresponding to the research/artistic/other outputs
VI.1.a - Overall
644
VI.1.b - Over the last six years
140
VI.1.4 - Number of citations registered in the Web of Science or Scopus databases
VI.1.a - Overall
644
VI.1.b - Over the last six years
140
VI.1.5 - Number of invited lectures at the international, national level
VI.1.a - Overall
VI.1.b - Over the last six years
VI.2 - The most significant research/artistic/other outputs

Hercegová Andrea, Dömötörová Milena, Matisová Eva: Sample preparation methods in the analysis of pesticide residues in baby food with subsequent chromatographic determination. JOURNAL OF CHROMATOGRAPHY A, 1153, 54-73 (2007).

Sádecká Jana, Čakrt Miroslav, Hercegová Andrea, Polonský Jozef, Skačáni Ivan: Determination of ibuprofen and naproxen in tablets. J. Pharm. Biomed. Anal., 25, 881-891 (2001).

Hercegová Andrea, Dömötörová Milena, Kružlicová Dáša, Matisová Eva: Comparison of sample preparation methods combined with fast gas chromatography-mass spectrometry for ultratrace analysis of pesticide residues in baby food. J.SEP.SCI., 29, 1102-1109 (2006).

Hercegová Andrea, Dömötörová Milena, Matisová Eva, et al.: Fast gas chromatography with solid phase extraction clean-up for ultratrace analysis of pesticide residues in baby food. JOURNAL OF CHROMATOGRAPHY A, 1084 (1-2 ‏), 46-53 (2005).

Kirchner, M; Matisova, E; Otrekal, R; et al.: Search on ruggedness of fast gas chromatography-mass spectrometry in pesticide residues analysis. JOURNAL OF CHROMATOGRAPHY A 1084 (1-2 ‏), 63 – 70 (2005).

VI.3 - The most significant research/artistic/other outputs over the last six years

Blaskovicova, J., Vyskočil, V., Augustín, M., Purdesova, A. :Ethanol and NaCl-Induced Gold Nanoparticle Aggragation Toxicity toward DNA Investigated with a DNA/GCB Biosensor. Sensors, 23 (7), DOI10.3390/s23073425, (2023).

Beňovič, P., Sokol, J., Purdešová, A., Maliarová, M.: Biological properties and methods for determination of carnosine. Monatshefte fur Chemie, 154 (10), 1045-1060, (2023).

Purdesova, A., Kramplova, Z., Sokol, J.: Determination of selected pesticide residues in non-fatty fruits using GC-MS in combination with QuEChERS method. Monatshefte fur Chemie, 153 (11), 1049-1055, (2022).

Kramplova, Z., Ferancová, A., Maliar, T. Purdesova, A. : Tuneable properties of boron-doped diamond working electrodes and their advantages for the detection of pesticides. Journal of Electroanalytical Chemistry, 949, 117846, (2023).

Maliar, T., Maliarová, M., Purdešová, A., Jankech T., Gerhardtová, I., Beňovič P., Dvorácek, V., Jágr,. M., Viskupicová, J.: The Adapted POM Analysis of Avenanthramides In Silico.Pharmaceuticals 16(5), 717 (2023).

VI.4 - The most significant citations corresponding to the research/artistic/other outputs

Hercegová A, Dömötörová M, Matisová E, Sample preparation methods in the analysis of pesticide residues in baby food with subsequent chromatographic determination: JOURNAL OF CHROMATOGRAPHY A 1153, 54-73, 2007.

1. Development of QuEChERS-DLLME method for determination of neonicotinoid pesticide residues in grains by liquid chromatography-tandem mass spectrometry. Ma, Lingfei; Wang, Yanfei; Li, Haipu; et al.: FOOD CHEMISTRY‏ 331 Article Number: 127190, 2020.

2. Application of Zirconium Based Sorbent for the Xenobiotics Determination in Food of Animal Origin. Surma, Magdalena; Sadowska-Rociek, Anna; Cieslik, Ewa; et al. JOURNAL OF ANALYTICAL CHEMISTRY 75 (7) 859-868, 2020.

3 Milestones in the Development of Liquid-Phase Extraction Techniques. Poole, Colin F. LIQUID-PHASE EXTRACTION Book Series: ‏ Handbooks in Separation Science. 1-44, ‏. 2020

4. Lozowicka, Bozena; Ilyasova, Gulzhakhan; Kaczynski, Piotr; et al.: Multi-residue methods for the determination of over four hundred pesticides in solid and liquid high sucrose content matrices by tandem mass spectrometry coupled with gas and liquid chromatograph. TALANTA 151, 51-61 2016.

5. Multiclass pesticide analysis in fruit-based baby food: A comparative study of sample preparation techniques previous to gas chromatography-mass spectrometry. Petrarca, Mateus H.; Fernandes, Jose O.; Godoy, Helena T.; et al.: FOOD CHEMISTRY 212, 528-536 2016.

Sádecká, J; Čakrt, M; Hercegová, A; et al.: Determination of ibuprofen and naproxen in tablets. JOURNAL OF PHARMACEUTICAL AND BIOMEDICAL ANALYSIS. 25 (5-6)

‏ 881-891 (2001). 1. Optimized Quantification of Naproxen Based on DPV and a Multiwalled MWCNT-Carbon Paste Electrode. Aguilar-Lira, G. Y.; Rojas-Hernandez, A.; Rodriguez, J. A.; et al.: JOURNAL OF THE ELECTROCHEMICAL SOCIETY 167 (16) Article Number: 166510, DEC 1 2020.

2. A novel sensor for determination of naproxen based on change in localized surface plasmon peak of functionalized gold nanoparticles. Khodaveisi, Javad; Shabani, Ali Mohammad Haji; Dadfarnia, Shayessteh; et al.: SPECTROCHIMICA ACTA PART A-MOLECULAR AND BIOMOLECULAR SPECTROSCOPY 179, 11-16, 2017.

3. Size effects of multi-walled carbon nanotubes on the electrochemical oxidation of propionic acid derivative drugs: Ibuprofen and naproxen. Montes, Rodrigo H. O.; Lima, Ana P.; Cunha, Rafael R.; et al.: JOURNAL OF ELECTROANALYTICAL CHEMISTRY 77, 342-349, 2016.

4. Numerical determination of non-Langmuirian adsorption isotherms of ibuprofen enantiomers on Chiralcel OD column using ultraviolet-circular dichroism dual detector. Li, Hui; Jiang, Xiaoxiao; Xu, Wei; et al.: JOURNAL OF CHROMATOGRAPHY A 1435, ‏, 92-99, 2016.

5. Square-Wave Voltammetry as Analytical Tool for Real-Time Study of Controlled Naproxen Releasing from Cellulose Derivative Materials. Fonseca, Wilson T.; Santos, Rodrigo F.; Alves, Janainne N.; et al.: ELECTROANALYSIS 27 (8 ), 1847-1854, 2015.

Hercegová, A; Dömötörová, M; Kružilicová, D, et al, Comparison of sample preparation methods combined with fast gas chromatography - mass spectrometry for ultratrace analysis of pesticide residues in baby food: JOURNAL OF SEPARATION SCIENCE 29, 1102-1109, 2006.

1. Dispersive solid phase microextraction. Ghorbani, Mahdi; Aghamohammadhassan, Mohsen; Chamsaz, Mahmoud; et al.: TRAC-TRENDS IN ANALYTICAL CHEMISTRY 118. 793-809, 2019.

2. Comparison of green sample preparation techniques in the analysis of pyrethrins and pyrethroids in baby food by liquid chromatography-tandem mass spectrometry. Henrique Petrarca, Mateus; Ccanccapa-Cartagena, Alexander; Masia, Ana; et al.: JOURNAL OF CHROMATOGRAPHY A 1497, 28-37, 2017.

3. Kiris, Sevilay; Velioglu, Yakup Sedat: Reduction in pesticide residue levels in olives by ozonated and tap water treatments and their transfer into olive oil. FOOD ADDITIVES AND CONTAMINANTS PART A-CHEMISTRY ANALYSIS CONTROL EXPOSURE & RISK ASSESSMENT 33 (1), 128-136, 2016.

4. Jang, Jin; Rahman, Md. Musfiqur; Abd El-Aty, A. M.; et al.: A Simple and Improved HPLC Method for the Analysis of Dithianon in Red Pepper with Tandem Mass Spectrometry Confirmation. FOOD ANALYTICAL METHODS 7 (3), 653-659, 2014.

5. Steinbach, Philipp; Schwack, Wolfgang: Comparison of different solid-phase-extraction cartridges for a fatty acid cleanup of the ethyl acetate/cyclohexane based multi-pesticide residue method EN 12393. JOURNAL OF CHROMATOGRAPHY A 1323, 28-38, 2014.

Hercegová, A; Dömötörová, M; Matisová, E, et al., Fast gas chromatography with solid phase extraction clean-up for ultratrace analysis of pesticide residues in baby food: JOURNAL OF CHROMATOGRAPHY A 1084, 46-53, 2005.

1. Upgrading analytical methodology through comparative study for screening of 267 pesticides/metabolites in five representative matrices using UPLC-MS/MS. Na, Tae-Woong; Rahman, Musfiqur; Kim, Sung-Woo; et al.: JOURNAL OF CHROMATOGRAPHY B-ANALYTICAL TECHNOLOGIES IN THE BIOMEDICAL AND LIFE SCIENCES 1141, Article Number: 122021, 2020.

2. Analytical Method Validation for Determining Organophosphorus Pesticides in Baby Foods by a Modified Liquid-Liquid Microextraction Method and Gas Chromatography-Ion Trap/Mass Spectrometry Analysis. Notardonato, Ivan; Russo, Mario Vincenzo; Vitali, Matteo; et al.: FOOD ANALYTICAL METHODS

‏12 (1), 41-50, 3. 20193. Further improvements in pesticide residue analysis in food by applying gas chromatography triple quadrupole mass spectrometry (GC-QqQ-MS/MS) technologies. Hakme, Elena; Lozano, Ana; Ucles, Samanta L.; et al.: ANALYTICAL AND BIOANALYTICAL CHEMISTRY 410 (22), 5491-5506, 2018.

4. Friedrich, Maria T.; Martins, Manoel L.; Prestes, Osmar D.; et al.: Use of Factorial Design in the Development of Multiresidue Method for Determination of Pesticide Residues in Wheat by Liquid Chromatography-Tandem Mass Spectrometry. FOOD ANALYTICAL METHODS, 9 (9) 2541-2551 2016

5. Nolvachai, Yada; Kulsing, Chadin; Marriott, Philip J.: Pesticides Analysis: Advantages of Increased Dimensionality in Gas Chromatography and Mass Spectrometry. CRITICAL REVIEWS IN ENVIRONMENTAL SCIENCE AND TECHNOLOGY, 45 (19) 2135-2173 2015.

Kirchner, M; Matisová, E; Otrekal, R, Hercegová A, de Zeeuw J, Search on ruggedness of fast gas chromatography-mass spectrometry in pesticide residues analysis: JOURNAL OF CHROMATOGRAPHY A 1084, 63-70, 2005.

1. Clean-up Procedure Development and Method Validation for Pesticide Residues Analysis in Carrots. Kurz, Marcia H. S.; Batista, Juliana L. da S.; de Oliveira, Lenise G.; et al: FOOD ANALYTICAL METHODS 12 (1) ‏ 282-292, 2019.

2. Determination of 16 phthalate esters in sesame oil by isotope dilution liquid chromatography with tandem mass spectrometry. Li, Xiaomin; Zhang, Qinghe; Chen, Ling; et al.: ANALYTICAL METHODS 10 (26), 3197-3206, 2018.

3. Santilio, A.; Girolimetti, S.; Barbini, D. Attard: Y Estimation of the validation parameters for a fast analysis of herbicide residues by LC-MS/MS. FOOD ADDITIVES AND CONTAMINANTS PART A-CHEMISTRY ANALYSIS CONTROL EXPOSURE & RISK ASSESSMENT, 31(5) 845-851 2014

4. Waters, Brian; Hara, Kenji; Kashiwagi, Masayuki; et al.: Combination of a short middle-bore capillary column with a thicker stationary phase and a short narrow-bore separation column with a thinner stationary phase for the rapid screening of non-volatile drugs by gas chromatography-mass spectrometry. FORENSIC TOXICOLOGY, 31 (1) 67-69 2013

5. Shi, Jia-Wei; Zhao, Yong-Gang; Fu, Zhen-Jun; et al.: Development of a Screening Method for the Determination of PCBs in Water Using QuEChERS Extraction and Gas Chromatography-Triple Quadrupole Mass Spectrometry. ANALYTICAL SCIENCES, 28 (2) 167-173 2012.

VI.5 - Participation in conducting (leading) the most important research projects or art projects over the last six years
VEGA 1/0191/22 (2022-2025) Unconventional single molecule magnets

KEGA 022/UCM-4/2023 (2023-2025) Promoting the internationalization of the educational process, innovative educational approaches and improving the quality of teaching in the subject of laboratory exercises in analytical chemistry.

APVV-20-0413 (2021-2023) Physical "processing" of biomass as a source of bio-active substances with antiviral, antibacterial and anti-inflammatory effect for further applications.
VEGA 1/0086/21 (2021-2024) New compounds with useful magnetic and opto-electrical properties

KEGA 009UCM-4/2024 Inovácia vzdelávacieho procesu na bakalárskom a magisterskom študijnom programe biomedicínska chémia

VII. - Overview of organizational experience related to higher education and research/artistic/other activities

VII.a - Activity, position VII.b - Name of the institution, board VII.c - Duration
Lecturer FCHFT SUT in Bratislava/Extraction techniques in sample preparation - educational workshop 2018
Lecturer FCHFT SUT in Bratislava/Extractions and microextractions - educational workshop 2019
external assessor Slovak National Accreditation Service from 2022
Head of Institute Institute of Chémie a Environmental Science, FNS UCM in Trnave 2025 -
členka Vedeckej rady FPV UCM FNS UCM in Trnave 2023 -
členka Rady kvality FPV UCM FNS UCM in Trnave 2024 -
členka senátu FPV UCM 2021-2023

VIII. - Overview of international mobilities and visits oriented on education and research/artistic/other activities in the given field of study

VIII.a - Name of the institution VIII.b - Address of the institution VIII.c - Duration (indicate the duration of stay) VIII.d - Mobility scheme, employment contract, other (describe)
Jan Marek Marci Spectroscopic Society, Czech Republic Masaryk University, Kamenice 753/5, building C14/232, 625 00 Brno, Czech Republic 11.-15.09.2023 Intership
Jan Marek Marci Spectroscopic Society, Czech Republic Masaryk University, Kamenice 753/5, building C14/232, 625 00 Brno, Czech Republic 04.-09.09.202 Intership
„Umweltforschung Zenter Leipzig-Halle“ Germany, Leipzig_Halle 2003 DAAD
„Canada Centre for Inland Waters“ Burlington, Ontario, Canada 1999 research stay
Katedra analytickej chémie, Prírodovedecká fakulta, Karlova univerzita v Prahe Univerzita Karlova, Přírodovědecká fakulta, Albertov 2038/6, 128 00 Praha, Česká republika Erasmus+

IX. - Other relevant facts

IX.a - If relevant, other activities related to higher education or research/artistic/other activities are mentioned

Reviewer of articles for publication in journals registered in Current Contents: Journal of Chromatography, International Journal of Analytical Chemistry.

Organization of national and international conferences and seminars at FCHFT SUT in Bratislava-5x (1x as head of the organizing committee). Award from the Journal of Chomatography: TOP CITED ARTICLE 2007 – 2009 for the article "Sample preparation methods in the analysis of pesticide residues in baby food with subsequent chromatographic determination".

Member of the commission for bachelor's, master's and doctoral state examinations. Member of the trade union committee for PhD. study in field 17. Chemistry. Opponent of doctoral theses, external member of the commission of bachelor's theses. Member of the Scientific Council of UCM in Trnava.

Date of last update
2025-01-15