UCM
Research/art/teacher profile of a person
Name and surname:
doc. RNDr. Daniela Ondrejovič Chmelová, PhD.
Email:
daniela.ondrejovic.chmelova@ucm.sk
Homepage:
http:\\
Fakulta/Univerzita:
FPV UCM - Faculty of Natural Sciences
Pracovisko:
UBB - Ústav biológie a biotechnológie

I. - Basic information

I.1 - Surname
Ondrejovič Chmelová
I.2 - Name
Daniela
I.3 - Degrees
Assoc. prof. RNDr. PhD.
I.4 - Year of birth
1987
I.5 - Name of the workplace
University of Ss. Cyril and Methodius in Trnava, Faculty of Natural Sciences
I.6 - Address of the workplace
Nám. J. Herdu 2, 917 01, Trnava
I.7 - Position
associate professor
I.8 - E-mail address
daniela.ondrejovic.chmelova@ucm.sk
I.9 - Hyperlink to the entry of a person in the Register of university staff
https://www.portalvs.sk/regzam/detail/22796
I.10 - Name of the study field in which a person works at the university
4. Biotechnology
I.11 - ORCID iD
0000-0001-9323-5121

II. - Higher education and further qualification growth

II.1 - First degree of higher education
II.a - Name of the university or institution
University of Ss. Cyril and Methodius in Trnava, Faculty of Natural Sciences
II.b - Year
2008
II.c - Study field and programme
Biotechnology
II.2 - Second degree of higher education
II.a - Name of the university or institution
University of Ss. Cyril and Methodius in Trnava, Faculty of Natural Sciences
II.b - Year
2011
II.c - Study field and programme
Applied chemistry and biotechnology
II.3 - Third degree of higher education
II.a - Name of the university or institution
Slovak University of Agriculture in Nitra
II.b - Year
2014
II.c - Study field and programme
Biotechnology
II.4 - Associate professor
II.a - Name of the university or institution
Slovak University of Technology in Bratislava
II.b - Year
2023
II.c - Study field and programme
Biotechnology
II.5 - Professor
II.6 - Doctor of Science (DrSc.)

III. - Current and previous employment

III.a - Occupation-position III.b - Institution III.c - Duration
university associate professor University of Ss. Cyril and Methodius in Trnava, Faculty of Natural Sciences 06/2022-until now
Assistant professor University of Ss. Cyril and Methodius in Trnava, Faculty of Natural Sciences 02/2015-06/2022
researcher University of Ss. Cyril and Methodius in Trnava, Faculty of Natural Sciences 09/2014-02/2015

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
the English language course Embassy English, Oxford 06/2015-07-2015
Developing pedagogical skills Faculty of Arts, University of St. Cyril and Methodius in Trnava 02/2023

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
Laboratory exercises in microbiology Biotechnology, Applied biology, Environment protection and restoration Bachelor 3. Biology, 4. Biotechnology, 7. Ecological and environmental sciences
Laboratory exercises in biochemistry Biotechnology, Chemistry Bachelor 4. Biotechnology, 7. Chemistry
Microbiology Biotechnology, Applied biology Bachelor 3. Biology, 4. Biotechnology
Laboratory exercises in enzymology Biotechnology Bachelor 4. Biotechnology
Laboratory exercises in separation methods Biotechnology Bachelor 4. Biotechnology
Laboratory exercises in industrial biotechnology Biotechnology Master 4. Biotechnology
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.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.4 - Overview of supervised final theses
V.4.1 - Number of currently supervised theses
V.4.a - Bachelor's (first degree)
3
V.4.b - Diploma (second degree)
2
V.4.c - Dissertation (third degree)
0
V.4.2 - Number of defended theses
V.4.a - Bachelor's (first degree)
20
V.4.b - Diploma (second degree)
14
V.4.c - Dissertation (third degree)
0
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
Laboratory exercises in microbiology Biotechnology Bachelor 4. Biotechnology
Laboratory exercises in biochemistry Biotechnology Bachelor 4. Biotechnology
Laboratory exercises in enzymology Biotechnology Bachelor 4. Biotechnology
Laboratory exercises in industrial biotechnology Biotechnology Master 4. Biotechnology

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
37
VI.1.b - Over the last six years
18
VI.1.2 - Number of the research/artistic/other outputs registered in the Web of Science or Scopus databases
VI.1.a - Overall
37
VI.1.b - Over the last six years
20
VI.1.3 - Number of citations corresponding to the research/artistic/other outputs
VI.1.a - Overall
400
VI.1.b - Over the last six years
298
VI.1.4 - Number of citations registered in the Web of Science or Scopus databases
VI.1.a - Overall
400
VI.1.b - Over the last six years
298
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

ADC/V3 Lipničanová, S., Chmelová, D. (33 %), Godány, A., Ondrejovič, M., Miertuš, S.: Purification of viral neuraminidase from inclusion bodies produced by recombinant Escherichia coli. Journal of Biotechnology, 2020, 316, 27-34. (IF 3,163, Q2)

ADC/V3 Legerská, B., Chmelová, D. (33 %), Ondrejovič, M.: TLC-Bioautography as a fast and cheap screening method for the detection of α-chymotrypsin inhibitors in crude plant extracts. Journal of Biotechnology, 2020, 313, 10, 11-17. (3,163, Q2)

ADC/V3 Lipničanová, S., Chmelová, D. (31 %), Ondrejovič, M., Frecer, V., Miertuš, S.: Diversity of sialidases found in the human body - A review. International Journal of Biological Macromolecules, 2020, 148, 857-868. (IF 4,784, Q1)

ADC/V3 Chmelová, D. (50 %), Ondrejovič, M. Purification and characterization of extracellular laccase produced by Ceriporiopsis subvermispora and decolorization of triphenylmethane dyes. Journal of Basic Microbiology, 2016, 56, 11, 1173-1182. (IF 1,438, Q4)

ADC/V3 Legerská, B., Chmelová, D., Ondrejovič, M. (2018) Decolourization and detoxification of monoazo dyes by laccase from the white-rot fungus Trametes versicolor. Journal of Biotechology, 2018, 148: 857-868. (IF 3,163, Q2)

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

Legerská, B., Chmelová, D. (33 %), Ondrejovič, M., Miertuš, S.: The TLC-Bioautography as a tool for rapid enzyme inhibitors detection - A Review. Critical Reviews in Analytical Chemistry, 2022, 52, 2, 275-293. (IF 4,568, Q1)

ADM/V3 Pecková, V., Legerská, B., Chmelová, D. (30 %), Horník, M., Ondrejovič, M. Comparison of efficiency for monoazo dye removal by different species of white-rot fungi. International Journal of Environmental Science and Technology, 2021, 18, 1, 21-32. (IF 2,031, Q3)

ADC/V3 Chmelová, D. (40 %), Škulcová, D., Legerská B., Horník, M., Ondrejovič, M.: Ultrasonic-assisted extraction of polyphenols and antioxidants from Picea abies bark. Journal of Biotechnology, 2020, 314-315, 25-33. (IF 3,163, Q2)

ADC/V3 Legerská, B., Chmelová, D. (33 %), Ondrejovič, M.: TLC-Bioautography as a fast and cheap screening method for the detection of α-chymotrypsin inhibitors in crude plant extracts. Journal of Biotechnology, 2020, 313, 10, 11-17. (3,163, Q2)

ADD/V3 Chmelová, D. (40 %), Ondrejovič, M. Havrlentová, M., Kraic, J. Evaluation of polar polyphenols with antioxidant activities in Papaver somniferum L. Jurnal of Food and Nutrition Research, 2018, 57,1, 98-107. (IF 0,927, Q4)

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

Legerská, B., Chmelová, D., Ondrejovič, M. TLC-Bioautography as a fast and cheap screening method for the detection of α-chymotrypsin inhibitors in crude plant extracts (2020) Journal of Biotechnology, 313, pp. 11-17. 1. (number of citations WoS a Scopus: 4)

  • [1.1] [1.2] Cabezudo, I; Salazar, MO; Ramallo, IA; Furlan, RLE. Effect-directed analysis in food by thin-layer chromatography assays. FOOD CHEMISTRY, 2022, 390, 132937.
  • [1.1] [1.2] Shi, HX; Liu, C; Cui, JJ; Cheng, J; Lin, YW; Gao, L; Luo, R. Perspective on chymotrypsin detection. NEW JOURNAL OF CHEMISTRY, 2020, 44, 48, 20921- 20929.
  • [1.1] [1.2] Altemimi, AB; Mohammed, MJ; Yi-Chen, L; Watson, DG; Lakhssassi, N; Cacciola, F; Ibrahim, SA. Optimization of ultrasonicated kaempferol extraction from Ocimum basilicum using a box-behnken design and its densitometric validation. FOODS, 2020, 9, 10, 1379.
  • [1.1] [1.2] Attia, R; Zedet, A; Bourjot, M; Skhiri, E; Messaoud, C; Girard, C. Thin-layer chromatography-bioautographic method for the detection of arginase inhibitors. Journal of Separation Science, 2020, 43, 2477-2486.

Legerská, B., Chmelová, D., Ondrejovič, M. Decolourization and detoxification of monoazo dyes by laccase from the white-rot fungus Trametes versicolor (2020) Journal of Biotechnology, 148, pp. 857-868. (number of citations WoS a Scopus: 44)

  • [1.1] Daronch, N.A., Kelbert, M., Pereira, C.S., de Araújo, P.H.H., de Oliveira, D. Elucidating the choice for a precise matrix for laccase immobilization: A review (2020) Chemical Engineering Journal, 397, art. no. 125506. 2.
  • [1.1] Zhao, J., Wu, Q.-X., Cheng, X.-D., Su, T., Wang, X.-H., Zhang, W.-N., Lu, Y.-M., Chen, Y. Biodegradation and detoxification of the triphenylmethane dye coomassie brilliant blue by the extracellular enzymes from mycelia of Lactarius deliciosus (2020) Frontiers of Chemical Science and Engineering, article in press. 3.
  • [1.1] Liu, S.Q, Xu, X.L, Kang, Y.S., Xiao, Y.T., Liu, H. Degradation and detoxification of azo dyes with recombinant ligninolytic enzymes from Aspergillus sp. with secretory overexpression in Pichia pastoris. Royal Society Open Science, 7, 9, 200688. 4.
  • [1.1] Tisma, M., Salic, A., Planinic M., Zelic, B., Potocnik, M., Selo, G., Bucic-Kojic, A. Production, characterization and immobilization of laccase for an efficient aniline-based dye decolourization. (2020) Journal of Water Process Engineering, 46, 101327. 5.
  • [1.1] El-Bendary, M.A., Ezzat, S.M., Ewais, E.A., Al-Zalama, M.A. Optimization of spore laccase production by Bacillus amyloliquefaciens isolated from wastewater and its potential in green biodecolorization of synthetic textile dyes (2020) Preparative Biochemistry and Biotechnology.

Chmelová, D., Ondrejovič, M. Purification and characterization of extracellular laccase produced by Ceriporiopsis subvermispora and decolorization of triphenylmethane dyes (2016) Journal of Basic Microbiology, 56 (11), pp. 1173-1182. (number of citations WoS a Scopus: 15)

  • [1.1] Li, Z., Chen, Z., Zhu, Q., Song, J., Li, S., Liu, X. Improved performance of immobilized laccase on Fe3O4@C-Cu2+ nanoparticles and its application for biodegradation of dyes (2020) Journal of Hazardous Materials, 399, art. no. 123088.
  • [1.1] Perdani, M.S., Margaretha, G., Sahlan, M., Hermansyah, H. Solid state fermentation method for production of laccase enzyme with bagasse, cornstalk and rice husk as substrates for adrenaline biosensor (2020) Energy Reports, 6, pp. 336-340.
  • [1.1] Al Farraj, D.A., Elshikh, M.S., Al Khulaifi, M.M., Hadibarata, T., Yuniarto, A., Syafiuddin, A. Biotransformation and Detoxification of Antraquione Dye Green 3 using halophilic Hortaea sp. (2019) International Biodeterioration and Biodegradation, 140, pp. 72-77.
  • [1.1] Cao, D.-J., Wang, J.-J., Zhang, Q., Wen, Y.-Z., Dong, B., Liu, R.-J., Yang, X., Geng, G. Biodegradation of triphenylmethane dye crystal violet by Cedecea davisae (2019) Spectrochimica Acta - Part A: Molecular and Biomolecular Spectroscopy, 210, pp. 9-13.
  • [1.1] Baker, P., Tiroumalechetty, A., Rajinikanth, M. Fungal Enzymes for Bioremediation of Xenobiotic Compounds. (2019) RECENT ADVANCEMENT IN WHITE BIOTECHNOLOGY THROUGH FUNGI, VOL 3: PERSPECTIVE FOR SUSTAINABLE ENVIRONMENTS Book Series: Fungal Biology-US Pages:

Ivanišová, E., Ondrejovič, M., Chmelová, D., Maliar, T., Havrlentová, M., Rückschloss, L' Antioxidant activity and polyphenol content in milling fractions of purple wheat (2014) Cereal Research Communications, 42 (4), pp. 578-588. (number of citations WoS a Scopus: 7)

  • [1.1] Tariq, H; Awan, SI; Sabir, SM; Ilyas, M. Hexaploid-Tetraploid Landraces and Wild Species of Wheat Revealed Diversity for Antioxidants and Total Phenolics (2020) Philippine Agricultural Scientist, 103 (1), 29-37.
  • [1.1] Fuentealba-Sandoval, C., Pedreros, A., Fischer, S., Lopez, M.D. Influence of different water deficit levels during grain filling on yield and total polyphenols content in spring wheat cultivars. CHILEAN JOURNAL OF AGRICULTURAL RESEARCH, 80, 3, 433-443.
  • [1.2] Durán-Aranguren, D., Chiriví-Salomón, J.S., Anaya, L., Durán-Sequeda, D., Cruz, L.J., Serrano, J.D., Sarmiento, L., Restrepo, S., Sanjuan, T., Sierra, R. Effect of bioactive compounds extracted from Cordyceps nidus ANDES-F1080 on laccase activity of Pleurotus ostreatus ANDES-F515 (2020) Biotechnology Reports, 26, art. no. e00466.
  • [1.2] 1. Hamli, S., Kadi, K., Addad, D., Bouzerzour, H. Phytochemical screening and radical scavenging activity of whole seed of durum wheat (Triticum durum Desf.) and Barley (Hordeum vulgare L.) varieties (2017) Jordan Journal of Biological Sciences, 10 (4), pp. 323-327.
  • [1.2] Eliášová, M., Paznocht, L. Total phenolic content and antioxidant activity of tritordeum wheat and barley (2017) Agronomy Research, 15 (Special Issue 2), pp. 1287-1294.

Legerská, B., Chmelová, D., Ondrejovič, M. Degradation of synthetic dyes by laccases - A mini-review (2016) Nova Biotechnologica et Chimica (2016) 15 (1), pp. 90- 106. (number of citations WoS a Scopus: 45)

  • [1.2] Espina, G., Cáceres-Moreno, P., Mejías-Navarrete, G., Ji, M., Sun, J., Blamey, J.M. A novel and highly active recombinant spore-coat bacterial laccase, able to rapidly biodecolorize azo, triarylmethane and anthraquinonic dyestuffs (2021) International Journal of Biological Macromolecules, 170, pp. 298-306.
  • [1.2] Jankowska, K., Grzywaczyk, A., Piasecki, A., Kijeńska-Gawrońska, E., Nguyen, L.N., Zdarta, J., Nghiem, L.D., Pinelo, M., Jesionowski, T. Electrospun biosystems made of nylon 6 and laccase and its application in dyes removal (2021) Environmental Technology and Innovation, 21, art. no. 101332, .
  • [1.2] Glazunova, O.A., Moiseenko, K.V., Savinova, O.S., Fedorova, T.V. Purification and characterization of two novel laccases from peniophora lycii (2020) Journal of Fungi, 6 (4), art. no. 340, pp. 1-16.
  • [1.2] Zygouri, P., Spyrou, K., Mitsari, E., Barrio, M., Macovez, R., Patila, M., Stamatis, H., Verginadis, I.I., Velalopoulou, A.P., Evangelou, A.M., Sideratou, Z., Gournis, D., Rudolf, P. A facile approach to hydrophilic oxidized fullerenes and their derivatives as cytotoxic agents and supports for nanobiocatalytic systems (2020) Scientific Reports, 10 (1), art. no. 8244.
  • [1.2] Saini, S., Chutani, P., Kumar, P., Sharma, K.K. Development of an eco-friendly deinking process for the production of bioethanol using diverse hazardous paper wastes (2020) Renewable Energy, 146, pp. 2362-2373.
VI.5 - Participation in conducting (leading) the most important research projects or art projects over the last six years

1. New antiviral drugs: Design, Synthesis and Activity Testing of Novel Specific Inhibitors of SARS-CoV-2 Viral Proteases (APVV-PP-COVID-20-0010)


2. Biotechnological preparation of PHA-based bioplastics with programmed release of biopolymer and its potential applications (APVV-18-0420)


3. Molecular-metabolomic approach to beta-D-glucan and its protective function in plant organism (APVV-18-0154)


4. Bioactive polysaccharides from unused plants and plant wastes: structure and functional diversity (VEGA 2/0085/13)


5.Research and identification of suitable varietal composition of spring barley of desired malting quality for areas more frequently affected by drought for malt and beer producers (Interreg CZ-SK P506)

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
Vice-President of the Scientific Board FNS UCM Faculty of Natural Sciences, University of Ss. Cyril and Methodius in Trnava 2022-until now
Vice-dean of quality and accreditation Faculty of Natural Sciences, University of Ss. Cyril and Methodius in Trnava 2022-until now
The member of the Board for study programme of Biotechnology in bachelor, master and doctoral degree Faculty of Natural Sciences, University of Ss. Cyril and Methodius in Trnava 2021-until now
Secretary of the Department of Biotechnology Faculty of Natural Sciences, University of Ss. Cyril and Methodius in Trnava 2015-until now
Chair of the Quality Board FNS UCM Faculty of Natural Sciences, University of Ss. Cyril and Methodius in Trnava 2022-until now

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)
University of Trieste, Italy Piazzale Europa, 1, 34127 Trieste TS, Italy january 2019 Erasmus+
University of Trieste, Italy Piazzale Europa, 1, 34127 Trieste TS, Italy september 2019 Erasmus+
Research Institute of Brewing and malting, Brno, Czech Republic Mostecká 971/7, 614 00 Brno, Česká republika november 2019 Interreg CZ-SK
Brno University of Technology, Czech Republic Purkyňova 464/118, Medlánky, 61200 Brno june 2023 Erasmus+

IX. - Other relevant facts

Date of last update
2025-02-24