Prof. dr hab. Anna Stojakowska
Profesor
Zakład Fitochemii
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Janusz Malarz, Agnieszka Galanty, Anna Stojakowska
Plants (Basel, Switzerland), 2815 10.3390/plants11212815
PMID:36365268 -
Hairy Root Cultures as a Source of Polyphenolic Antioxidants: Flavonoids, Stilbenoids and Hydrolyzable Tannins.
Janusz Malarz, Klaudia Michalska, Yulia V Yudina, Anna Stojakowska
Plants (Basel, Switzerland), 1950 10.3390/plants11151950
PMID:35956428 -
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Ciara-Ruth Kenny, Anna Stojakowska, Ambrose Furey, Brigid Lucey
Molecules (Basel, Switzerland), 1406 10.3390/molecules27041406
PMID:35209195 -
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Klaudia Michalska, Agnieszka Galanty, Thanh Nguyen Le, Janusz Malarz, Nguyen Quoc Vuong, Van Cuong Pham, Anna Stojakowska
Molecules (Basel, Switzerland), 7013 10.3390/molecules26227013
PMID:34834104 -
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Danuta Jantas, Janusz Malarz, Thanh Nguyen Le, Anna Stojakowska
International journal of molecular sciences, 10363 10.3390/ijms221910363
PMID:34638702
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Secondary Metabolism in Tissue and Organ Cultures of Plants from the Tribe Cichorieae
Stojakowska A., Malarz J. (2021) Secondary Metabolism in Tissue and Organ Cultures of Plants from the Tribe Cichorieae. In: Ramawat K.G., Ekiert H.M., Goyal S. (eds) Plant Cell and Tissue Differentiation and Secondary Metabolites. Reference Series in Phytochemistry. Springer, Cham. https://doi.org/10.1007/978-3-030-30185-9_23
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Natural products from Tolpis barbata (L.) Gaertn. (Asteraceae, Cichorieae)
Michalska K., Malarz J., Paul W., Stojakowska A. Biochem. Syst. Ecol., 2019, 86, 103922
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Associations between root-inhabiting fungi and 40 species of medicinal plants with potential applications in the pharmaceutical and biotechnological industries
Piszczek P., Kuszewska K., Błaszkowski J., Sochacka-Obruśnik A., Stojakowska A., Zubek S. Appl. Soil Ecol., 2019, 137, 69-77
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Further sesquiterpenoids and phenolics from two species of Taraxacum F.H.Wigg. and cytotoxic activity of taraxinic acid and its derivatives
Michalska K., Galanty A., Michalski O., Stojakowska A. Phytochem. Lett., 2019, 30, 296-301
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Thymol derivatives from the roots of Xerolekia speciosissima an endemic species of the pre-Alpine area
Kłeczek N., Malarz J., Kosecka-Strojek M., Musielak B., Stojakowska A. 2019, 30, 235-237. DOI: 10.1016/j.phytol.2019.01.010
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Sesquiterpene lactones and phenolics from roots of Leontodon hispidus subsp. hispidus
Michalska K., Pieron K., Stojakowska A. 2018. Nat. Prod. Commun., 13, 393-394.
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Phenolics and terpenoids from a wild edible plant Lactuca orientalis (Boiss.) Boiss.: A preliminary study
Stojakowska A., Michalska K., Kłeczek N., Malarz J., Beharav A. 2018. J. Food Comp. Anal., 69, 20-24.
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Bioactive phenolics from in vitro cultures of Lactuca aculeata Boiss. et Kotschy
Stojakowska A., Malarz J. 2017. Phytochem. Lett., 19, 7-11
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Sesquiterpenoids from roots of Lactuca sativa var. angustana cv. "Gruener Stern"
Michalska K., Michalski O., Stojakowska A. 2017, 20, 425-428. DOI 10.1016/j.phytol.2016.10.023
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Hydroxycinnamates from elecampane (Inula helenium L.) callus culture
Stojakowska A., Malarz J., Kiss A.K. 2016. Acta Physiol. Plant., 38, 41, DOI 10.1007/s11738-016-2069-y
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Acylated hydroxycinnamic acid glucosides from flowers of Telekia speciosa
Stojakowska A., Malarz J., Żylewski M., Kisiel W. 2015. Phytochemistry Lett., 12, 257-261
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Chemical constituents of Lactuca dregeana
Michalska K., Kisiel W., Stojakowska A. 2015. Biochem. Syst. Ecol., 59, 302-304.
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Quantitative analysis of sesquiterpene lactones and thymol derivatives in extracts from Telekia speciosa
Stojakowska A., Malarz J., Kisiel W. 2015. Phytochemistry Lett., 11, 378-383.
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Variation of sesquiterpene lactone contents in Lactuca georgica natural populations from Armenia
Beharav A., Stojakowska A., Ben-David R., Malarz J., Michalska K., Kisiel W. 2015. Genet. Resour. Crop Evol., 62, 431-441.
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A new neolignan glucoside from hairy roots of Cichorium intybus
Malarz J., Stojakowska A., Szneler E., Kisiel W. 2013. Phytochemistry Lett., 6, 59-61
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Phenolic constituents of Lactuca tenerrima
Michalska K., Stojakowska A., Kisiel W. 2012. Biochem. Syst. Ecol., 42, 32-34.
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Terpenoids from a multiple shoot culture of Telekia speciosa
Stojakowska A., Malarz J., Kisiel W. 2011. Acta Soc. Bot. Pol., 80, 253-256.
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Caffeic acid derivatives from a hairy root culture of Lactuca virosa
Stojakowska A., Malarz J., Szewczyk A., Kisiel W. 2012. Acta Physiol. Plant., 34, 291-298.
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Variation of sesquiterpene lactones in Lactuca aculeata natural populations from Israel, Jordan and Turkey
Beharav A., Ben-David R., Malarz J., Stojakowska A., Michalska K., Dolezalova I., Lebeda A., Kisiel W. 2010. Biochem. Syst. Ecol., 38, 602-611.
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Terpenoids and phenolics from Inula ensifolia
Stojakowska A., Malarz J., Zubek S., Turnau K., Kisiel W. 2010. Biochem. Syst. Ecol., 38, 232-235.
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Interactions between mycorrhizal fungi and medicinal plants
Zubek S., Stojakowska A., Kisiel W., Góralska K., Turnau K. 2009. In: Crop Plant Resistance to Biotic and Abiotic Factors: Current Potential and Future Demands. Feldman F., Alford D.V., Furk C. (Eds.). Deutsche Phytomedizinische Gesellschaft, Braunschweig, pp. 124-129
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Systematic implications of sesquiterpene lactones in Lactuca species
Michalska K., Stojakowska A., Malarz J., Dolezalova I., Lebeda A., Kisiel W. 2009. Biochem. Syst. Ecol., 37, 74-179.
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Effects of various elicitors on the accumulation and secretion of spiroketal enol ether diacetylenes in feverfew hairy root culture
Stojakowska A., Burczyk J., Kisiel W., Zych M., Banaś A,. Duda T. 2008. Acta Soc. Bot. Pol., 77, 17-21.
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Effect of methyl jasmonate and salicylic acid on sesquiterpene lactone accumulation in hairy roots of Cichorium intybus
Malarz J., Stojakowska A., Kisiel W. 2007. Acta Physiol. Plant., 29, 127-132.
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Protective effect of Philesia magellanica (Coicopihue) from Chilean Patagonia against oxidative damage
Suwalsky M., Avello M., Obreque J., Villena F., Szymańska R., Stojakowska A., Strzałka K. 2015. J. Chil. Chem. Soc., 60, 2935-2939
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In vitro propagation of Inula royleana DC.
Stojakowska A., Malarz J. 2004. Acta Soc. Bot. Pol., 73, 5-8.
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Flavonoids from the roots of Scutellaria polyodon
Kisiel W., Piozzi F., Stojakowska A., Rosselli S., Servettaz O. 2002. Istituto Lombardo (Rend. Sc.) B, 136, 207-210.
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Salicylate and methyl jasmonate differentially influence diacetylene accumulation pattern in transformed roots of feverfew
Stojakowska A., Malarz J., Kisiel W. 2002. Plant Sci., 163, 1147-1152
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Flavonoids from Teucrium fruticans
Kisiel W., Stojakowska A., Piozzi F., Rosselli S. 2001. Acta Soc. Bot. Pol., 70, 199-201.
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Flavonoid aglycones from transformed root culture of Scutellaria baicalensis
Stojakowska A., Malarz J., Kisiel W. 2001. Pol. J. Chem., 75, 1935-1937
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Flavonoid Production in transformed root cultures of Scutellaria baicalensis
Stojakowska A., Malarz J. 2000. J. Plant Physiol., 156, 121-125.
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Neolignan glycosides from a cell suspension culture of Lactuca virosa
Stojakowska A., Kisiel W. 2000. Pol. J. Chem., 74, 153-155.
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Metabolity wtórne korzeni włośnikowatych Tanacetum parthenium
Stojakowska A., Kisiel W., 2003. Biotechnologia, 62, 87-94
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Variation of sesquiterpene lactone contents in Lactuca altaica natural populations from Armenia.
Beharav A., Malarz J., Michalska K., Ben-David R., Stojakowska A. Biochem. Syst. Ecol., 2020, 90, 104030
Krajowa
- Instytut Nauk o Środowisku Uniwersytetu Jagiellońskiego
- Instytut Podstaw Chemii Żywności Politechniki Łódzkiej
- Katedra i Zakład Botaniki Farmaceutycznej Collegium Medicum Uniwersytetu Jagiellońskiego
- Pracownia Mikologii Instytutu Botaniki Uniwersytetu Jagiellońskiego
- Zakład Farmakognozji Collegium Medicum Uniwersytetu Jagiellońskiego
Międzynarodowa
- Institute of Evolution, University of Haifa
- Institute of Marine Biochemistry, Vietnam Academy of Science and Technology
- Palacky University in Olomouc, Faculty of Science, Department of Botany
Zainteresowania badawcze
Techniki badawcze
- chromatografia cienkowarstwowa (TLC)
- chromatografia rotacyjna (CATLC)
- hodowle tkankowe roślin
- konwencjonalna chromatografia kolumnowa (CC)
- kultury korzeni włośnikowatych
- kultury niezróżnicowanych komórek roślinnych
- organogeneza bezpośrednia
- organogeneza pośrednia
- spektrometria mas
- spektroskopia magnetycznego rezonansu jądrowego (1H i 13C NMR, techniki jedno- i dwuwymiarowe)
- spektroskopia UV-VIS
- wysokosprawna chromatografia cieczowa (HPLC) z detekcją UV