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Meno a priezvisko:
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Mgr. Eva Drobná, PhD.
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Typ dokumentu:
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Vedecko/umelecko-pedagogická charakteristika osoby
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Názov vysokej školy:
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Univerzita Komenského v Bratislave
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Sídlo vysokej školy:
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Šafárikovo námestie 6, 818 06 Bratislava
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| III.a - Zamestnanie-pracovné zaradenie | III.b - Inštitúcia | III.c - Časové vymedzenie |
|---|---|---|
| odborný asistent | Farmaceutická fakulta Univerzity Komenského | od 2014 - stále trvá |
| IV.a - Popis aktivity, názov kurzu (ak išlo o kurz), iné | IV.b - Názov inštitúcie | IV.c - Rok |
|---|---|---|
| Bacterial genome: Disease outbreaks and antimicrobial resistance | Futeure learn | 2019 |
| člen organizačného výboru 28. Kongresu ČSSM | Československá spoločnosť mikrobiologická | 2019 |
| V.5.a - Názov predmetu | V.5.b - Študijný program | V.5.c - Stupeň | V.5.d - Študijný odbor |
|---|---|---|---|
| Mikrobiológia | Farmácia | magisterský | Farmácia |
| Mikrobiológia | Zdravotnícke a diagnostické pomôcky | bakalársky | Zdravotnícke a diagnostické pomôcky |
| Imunodiagnostika | Farmácia | magisterský | farmácia |
10.1002/fsn3.71413
Praktické cvičenia z mikrobiológie pre farmaceutov Eva Drobná, Martina Hrčka Dubničková, Gabriela Greifová
Vykazovacie obdobie CREPČ2021Kategória EPCBCI Skriptá a učebné textyVyd. údajeBratislava : Farmaceutická fakulta UK , 2021Vydanie1. vyd.Rozsah174 s. [8,08 AH] [online]ISBN978-80-223-5123-2
Drobná, E., Rauová, D., Májeková, H., Greif, G., Mikuš, P.
Journal of Food and Nutrition Research, 2017, 56(3), pp. 255–264
1)Li, M., Yang, Z., Zhai, X., Li, Z., Huang, X., Shi, J., Zou, X., Lv, G. Incorporation of Lactococcus lactis and Chia Mucilage for Improving the Physical and Biological Properties of Gelatin-Based Coating: Application for Strawberry Preservation (2024) Foods, 13 (7), art. no. 1102, Cited 9 times. DOI: 10.3390/foods13071102
2) Abdel-Nasser, A., Hathout, A.S., Badr, A.N., Barakat, O.S., Fathy, H.M. Extraction and characterization of bioactive secondary metabolites from lactic acid bacteria and evaluating their antifungal and antiaflatoxigenic activity (2023) Biotechnology Reports, 38, art. no. e00799, Cited 37 times. DOI: 10.1016/j.btre.2023.e00799
3)Nasrollahzadeh, A., Mokhtari, S., Khomeiri, M., Saris, P. Mycotoxin detoxification of food by lactic acid bacteria (2022) International Journal of Food Contamination, 9 (1), art. no. 1, Cited 41 times. DOI: 10.1186/s40550-021-00087-w
4) Farkas, Z., Országh, E., Engelhardt, T., Csorba, S., Kerekes, K., Zentai, A., Süth, M., Nagy, A., Miklós, G., Molnár, K., Rácz, C., Dövényi-Nagy, T., Ámbrus, Á., Győri, Z., Dobos, A.C., Pusztahelyi, T., Pócsi, I., Józwiak, Á. A Systematic Review of the Efficacy of Interventions to Control Aflatoxins in the Dairy Production Chain—Feed Production and Animal Feeding Interventions
(2022) Toxins, 14 (2), art. no. 115, Cited 16 times. DOI: 10.3390/toxins14020115
5) Wang, J., Lin, L., Jiang, Q., Huang, W., Liu, N. Effect of supplemental lactic acid bacteria on growth performance, glutathione turnover and aflatoxin B1 removal in lambs (2019) Czech Journal of Animal Science, 64 (6), pp. 272-278. Cited 14 times.DOI: 10.17221/5/2019-CJAS
6) Wang, J.P., Lin, L., Jiang, Q.R., Huang, W.L., Liu, N.
Probiotics and clay detoxifier protected growth performance and intestinal barrier of lambs fed diet contaminated with aflatoxin B1 (2019) Indian Journal of Animal Sciences, 89 (6), pp. 658 - 662, Cited 8 times
Overexpression of the YAP1, PDE2, and STB3 genes enhances the tolerance of yeast to oxidative stress induced by 7-chlorotetrazolo[5,1-c]benzo[1,2,4]triazineDrobna E., Gazdag Z., Culakova H., Dzugasova V., Gbelska Y., Pesti M., Subik J.
(2012) FEMS Yeast Research, 12 (8) , pp. 958-968.
1)Lin, N.-X., Xu, Y., Yu, X.-W. Overview of yeast environmental stress response pathways and the development of tolerant yeasts
(2022) Systems Microbiology and Biomanufacturing, 2 (2), pp. 232 - 245, Cited 43 times. DOI: 10.1007/s43393-021-00058-4
2) Skerker, J.M., Leon, D., Price, M.N., Mar, J.S., Tarjan, D.R., Wetmore, K.M., Deutschbauer, A.M., Baumohl, J.K., Bauer, S., Ibáñez, A.B., Mitchell, V.D., Wu, C.H., Hu, P., Hazen, T., Arkin, A.P. Dissecting a complex chemical stress: Chemogenomic profiling of plant hydrolysates(2013) Molecular Systems Biology, 9, art. no. 201330, Cited 89 times. DOI: 10.1038/msb.2013.30
3) Vamvakas, S.-S., Kapolos, J. Factors affecting yeast ethanol tolerance and fermentation efficiency
(2020) World Journal of Microbiology and Biotechnology, 36 (8), art. no. 114, Cited 49 times. DOI: 10.1007/s11274-020-02881-8
4) Das, S., Vörös-Horváth, B., Bencsik, T., Micalizzi, G., Mondello, L., Horváth, G., Koszegi, T., Széchenyi, A. Antimicrobial activity of different artemisia essential oil formulations (2020) Molecules, 25 (10), art. no. 2390, . Cited 36 times. DOI: 10.3390/molecules25102390
5) Zhang, C., Lueptow, L.M., Zhang, H.-T., O'Donnell, J.M., Xu, Y.The role of phosphodiesterase-2 in psychiatric and neurodegenerative disorders(2017) Advances in Neurobiology, 17, pp. 307 - 347, Cited 30 times.DOI: 10.1007/978-3-319-58811-7_12
6)Yi, D.G., Kim, M.J., Choi, J.E., Lee, J., Jung, J., Huh, W.-K., Chung, W.-H. Yap1 and Skn7 genetically interact with Rad51 in response to oxidative stress and DNA double-strand break in Saccharomyces cerevisiae (2016) Free Radical Biology and Medicine, 101, pp. 424 - 433, Cited 28 times.DOI: 10.1016/j.freeradbiomed.2016.11.005
6)Tian, Y., Cui, W., Huang, M., Robinson, H., Wan, Y., Wang, Y., Ke, H. Dual specificity and novel structural folding of yeast phosphodiesterase-1 for hydrolysis of second messengers cyclic adenosine and guanosine 3'5'-monophosphate (2014) Biochemistry, 53 (30), pp. 4938-4945. Cited 14 times. DOI: 10.1021/bi500406h
Transcriptional regulators of Seven yeast species: Comparative genome analysis - reviewDrobna E., Bialkova A., Subik J.
(2008) Folia Microbiologica, 53 (4) , pp. 275-287.
1) Yang, G., Liu, G.-L., Wang, S.-J., Chi, Z.-M., Chi, Z. Pullulan biosynthesis in yeast-like fungal cells is regulated by the transcriptional activator Msn2 and cAMP-PKA signaling pathway (2020) International Journal of Biological Macromolecules, 157, pp. 591-603. Cited 7 times. DOI: 10.1016/j.ijbiomac.2020.04.174
2) Hahn, S., Young, E.T. Transcriptional regulation in saccharomyces cerevisiae: Transcription factor regulation and function, mechanisms of initiation, and roles of activators and coactivators (2011) Genetics, 189 (3), pp. 705-736. Cited 195 times.
3) Siegal-Gaskins, D., Mejia-Guerra, M.K., Smith, G.D., Grotewold, E. Emergence of switch-like behavior in a large family of simple biochemical networks (2011) PLoS Computational Biology, 7 (5), art. no. e1002039, . Cited 36 times. DOI: 10.1371/journal.pcbi.1002039
4) Hodurova, Z., Ferreira, L., Sánchez-Juanes, F., Dominguez, A., Gbelska, Y. Cytosolic proteome of Kluyveromyces lactis affected by the multidrug resistance regulating transcription factor KlPdr1p (2012) Journal of Proteomics, 75 (17), pp. 5316-5326. Cited 3 times, DOI: 10.1016/j.jprot.2012.06.036
FEMS Yeast Research, 2007, 7(2), pp. 254–264
1) Buechel, E.R., Pinkett, H.W. Transcription factors and ABC transporters: from pleiotropic drug resistance to cellular signaling in yeast (2020) FEBS Letters, 594 (23), pp. 3943-3964. Cited 53 times. DOI: 10.1002/1873-3468.13964
2)Prasad, R., Devaux, F., Dhamgaye, S., Banerjee, D. Response of pathogenic and non-pathogenic yeasts to steroids (2012) Journal of Steroid Biochemistry and Molecular Biology, 129 (1-2), pp. 61-69. Cited 15 times. DOI: 10.1016/j.jsbmb.2010.11.011
3)Schwarzmüller, T., Klein, C., Valachovic, M., Glaser, W., Kuchler, K. Membrane Transporters in Pleiotropic Drug Resistance and Stress Response in Yeast and Fungal Pathogens (2009) Transporters as Drug Carriers: Structure, Function, Substrates, 44, pp. 159-193.DOI: 10.1002/9783527627424.ch6
4) Balazfyova, Z., Hervay, N.T., Gbelska, Y. Gain-of-function mutation in the KlPDR1 gene encoding multidrug resistance regulator in Kluyveromyces lactis (2013) Yeast, 30 (2), pp. 71-80. Cited 1 time.DOI: 10.1111/j.1567-1364.2010.00702.x
5) Lenitz, I., Börlin, C., Pianale, L.T., Balachandran, D., Nielsen, J., David, F., Siewers, V., Nygård, Y. ChIP-exo and CRISPRi/a illuminate the role of Pdr1 and Yap1 in acetic acid tolerance in Saccharomyces cerevisiae (2025) Applied and Environmental Microbiology, 91 (4), art. no. e01824-24, Cited 0 times.DOI: 10.1128/aem.01824-24
1)Kabat, M., Popiół, J., Gunia-Krzyżak, A. Cinnamic Acid Derivatives as Potential Multifunctional Agents in Cosmetic Formulations Used for Supporting the Treatment of Selected Dermatoses (2024) Molecules, 29 (23), art. no. 5806, Cited 12 times. DOI: 10.3390/molecules29235806
2)Wang, L., Xin, M., Li, M., Liu, W., Mao, Y. Effect of the structure of chitosan quaternary phosphonium salt and chitosan quaternary ammonium salt on the antibacterial and antibiofilm activity (2023) International Journal of Biological Macromolecules, 242, art. no. 124877, Cited 83 times. DOI: 10.1016/j.ijbiomac.2023.124877
3)Qin, Y., Wang, J., Lv, Q., Han, B. Recent Progress in Research on Mitochondrion-Targeted Antifungal Drugs: a Review
(2023) Antimicrobial Agents and Chemotherapy, 67 (6), Cited 24 times. DOI: 10.1128/aac.00003-23
4)Hassanein, E.H.M., Mohamed, W.R., Ahmed, O.S., Abdel-Daim, M.M., Sayed, A.M. The role of inflammation in cadmium nephrotoxicity: NF-κB comes into view (2022) Life Sciences, 308, art. no. 120971, Cited 40 times. DOI: 10.1016/j.lfs.2022.120971
5)Elansary, H.O., Szopa, A., Kubica, P., Ekiert, H., Klimek-Szczykutowicz, M., El-Ansary, D.O., Mahmoud, E.A.
Polyphenol profile and antimicrobial and cytotoxic activities of natural Mentha x piperita and Mentha longifolia populations in Northern Saudi Arabia (2020) Processes, 8 (4), art. no. 479, Cited 61 times.DOI: 10.3390/PR8040479
6)Fiorani, G., Perosa, A., Selva, M. Phosphonium salts and P-ylides (2021) Organophosphorus Chemistry, 50, pp. 179-242 DOI: 10.2174/1573412916666191231104909
VEGA 1/0527/21
Charakterizácia a využitie mikroorganizmov degradujúcich biogénne amíny ako možné riešenie pre zabezpečenie zdravotne bezpečných fermentovaných potravín. - spluriešiteľ
VEGA 1/0170/24 Spoluriešiteľ
| VII.a - Aktivita, funkcia | VII.b - Názov inštitúcie, grémia | VII.c - Časové vymedzenia pôsobenia |
|---|---|---|
| Prednáška pre študentov na výmennom pobyte Twinnet | Slovenský spolok študentov farmácie | 15.11.2018 |
| Prednáška o ATB v rámci podujatí Týždeň povedomia o antibiotickej rezistencii pre študentov aj verejnosť | Slovenský spolok študentov farmácie | 21.11.2017 |
| Prednáška v rámci BIP Drug Discovery | Faculdad de Farmacia, Universidad Castilla la Mancha, Erasmus+ | 4.7.2024 |
| VIII.a - Názov inštitúcie | VIII.b - Sídlo inštitúcie | VIII.c - Obdobie trvania pôsobenia/pobytu (uviesť dátum odkedy dokedy trval pobyt) | VIII.d - Mobilitná schéma, pracovný kontrakt, iné (popísať) |
|---|---|---|---|
| Univeridad Castilla-La Mancha | Albacete | 1-5.7.2024 | Erasmus+ BIP |
Koordináto za Farmaceutickú fakultu UK v Bratislave v projekte ETN INTERDISCIPLINARY NETWORK ON THE IMPACT OF SEX & GENDER IN HEALTH - IMPULSE v rámci aliancie ENLIGHT