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Milk thistle (Silybum marianum L. Gaertn.) is the Asteraceae family’s extensively distributed herbaceous plant. Its seeds are famous for their medicinal and industrial potential due to their lipid fraction, richness in valuable fatty acids, and bioactive compounds, including silymarin and polyphenolics. The study aimed to evaluate the chemical composition and antioxidant properties of commercial milk thistle seed oil. The fatty acid profile, triacylglycerol distribution, thermal property, and antioxidant activity were analysed. Research on the physicochemical properties of Polish cold-pressed oil from milk thistle seeds has shown that this oil is a valuable source of unsaturated fatty acids, mainly linoleic (49.83 ±0.02%) and oleic (27.36 ±0.11%). Beneficial nutritional and health values characterise it, but due to the high value acid number (4.43 ±0.14 mg KOH/g) and low polyphenol content (0.559 ±0.004 mg GAE/g), it is unstable, quickly turns rancid, and loses its sensory properties.
Czasopismo
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Tom
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21--29
Opis fizyczny
Bibliogr. 34 poz., fig., tab.
Twórcy
autor
- Warsaw University of Life Sciences – SGGW, Poland
autor
- Warsaw University of Life Sciences – SGGW, Poland
autor
- Warsaw University of Life Sciences – SGGW, Poland
Bibliografia
- 1] Sumara A., Stachniuk A., Montowska M., Kotecka-Majchrzak K., Grywalska E., Mitura P., Saftić Martinović L., Kraljević Pavelić S., Fornal E. 2023. Comprehensive review of seven plant seed oils: chemical composition, nutritional properties, and biomedical functions. Food Reviews International 39(8): 5402–5422.
- [2] Yang R., Zhang L., Li P., Yu L., Mao J., Wang X., Zhang Q. 2018. A review of chemical composition and nutritional properties of minor vegetable oils in China. Trends in Food Science & Technology 74: 26–32.
- [3] Fathi-Achachlouei B., Azadmard-Damirchi S. 2009. Milk thistle seed oil constituents from different varieties grown in Iran. Journal of the American Oil Chemists’ Society 86: 643–649.
- [4] Meddeb W., Rezig L., Abderrabba M., Lizard G., Mejri M. 2017. Tunisian milk thistle: An investigation of the chemical composition and the characterization of its cold-pressed seed oils. International Journal of Molecular Sciences 18(12), 2582: 1–13.
- [5] Tukan S.K., Takruri H.R., Al-Eisawi D.M. 1988. The use of wild edible plants in the Jordanian diet. International Journal of Food Sciences and Nutrition 49: 1889–1895.
- [6] Seidler-Lożykowska K. 2010. Hodowla i odmiany roślin zielarskich. Hodowla i Nasiennictwo 3: 16–20.
- [7] Hackett E.S., Twedt D.C., Gustafson D.L. 2013. Milk thistle and its derivative compounds. A review of opportunities for treatment of liver disease. Journal of Veterinary Internal Medicine 27: 10–16.
- [8] Crocenzi F.A., Roma M.G. 2006. Silymarin as a new hepatoprotective agent in experimental cholestasis: New possibilities for an ancient medication. Current Medicinal Chemistry 13: 1055–1074.
- [9] Shaker E., Mahmoud H., Mnaa S. 2010. Silymarin, the antioxidant component and Silybum marianum extracts prevent liver damage. Food and Chemical Toxicology 48(3): 803–806.
- [10] Zheljazkov V., Zhalnov I., Nedkov N. 2006. Herbicides for weed control in Blessed Thistle (Silybum marianum). Weed Technology 20:1030–1034.
- [11] Baranowska B., Kurzepa K., Marczak E., Szczucińska A., Lipkowski A. 2003. Utylizacja odpadu nasion ostropestu plamistego II. Biologicznie czynne peptydy z odpadu nasion ostropestu plamistego. Rośliny Oleiste 24: 725–732.
- [12] Malekzadach M., Mirmazloum S., Mortazavi S., Panahi M., Angorani H. 2011. Physicochemical properties and oil constituents of milk thistle (Silybum marianum Gaertn. Cv. Budakalaszi) under drought stress. Journal of Medicinal Plants Research 5(13): 2886–2889.
- [13] Qavami N., Naghdi Badi H., Labbafi M.R., Mehrafarin A.A. 2013. Review on pharmacological, cultivation and biotechnology aspects of milk thistle (Silybum Marianum (L. Gaertn.). Journal of Medicinal Plants 12(47): 19–37.
- [14] Alemardan A., Karkanis A., Salehi R. 2013. Breeding objectives and selection criteria for milk thistle (Silybum marianum L. Gaertn.) improvement. Not Bot Horti Agrobo 42(2): 340–347.
- [15] Aliyas I.M. 2017. Wild milk thistle unique fatty plant. International Journal of Science and Research 6(1): 1227–1229.
- [16] Kazazis Ch.E., Evangelopoulos A.A., Kollas A., Vallianou N.G. 2014. The therapeutic potential of milk thistle in diabetes. The Review of Diabetic Studies 11(2): 167–174.
- [17] Hadolin M., Skerget M., Knez Z., Bauman D. 2001. High pressure extraction of vitamin E-rich oil from Silybum marianum. Food Chemistry 74(3): 355–364.
- [18] Marceddu R., Dinolfo L., Carrubba A., Sarno M., Di Miceli G. 2022. Milk thistle (Silybum marianum L.) as a novel multipurpose crop for agriculture in marginal environments: A review. Agronomy 12, 729: 1–25.
- [19] Zhang Z.S., Wang S., Liu H., Li B.Z., Che L. 2020. Constituents and thermal properties of milk thistle seed oils extracted with three methods. LWT – Food Science and Technology 126, 109282: 1–8.
- [20] PN EN ISO 5509:2001. Animal and vegetable fats and oils – preparation of methyl esters of fatty acids. Polish Committee for Standardization, Warsaw, Poland.
- [21] Bryś J., Vaz I.F., Górska A., Wirkowska-Wojdyła M., Ostrowska-Ligęza E., Bryś A. 2017. Use of GC and PDSC methods to characterize human milk fat substitutes obtained from lard and milk thistle oil mixtures. Journal of Thermal Analysis and Calorimetry 130(1): 319–327.
- [22] ISO 660:2009. Animal and vegetable fats and oils – determination of acid value and acidity. International Organization for Standardization, Geneva, Switzerland.
- [23] ISO 3960:2007. Animal and vegetable fats and oils – determination of peroxide value –iodometric (visual) endpoint determination. International Organization for Standardization, Geneva, Switzerland.
- [24] Hassanein M., Elshami S.M., Elmallah M.H. 2003. Detailed studies on some lipids of Silybum marianum (L.) seed oil. Grasas y Aceites 54: 397–402
- .[25] Ayduğan A., Ok S., Yılmaz E. 2022. Cold-pressed milk thistle seed oil: physico-chemical properties, composition and sensory analysis. Grasas Aceites 73(4): e481.
- [26] PN-EN ISO 3960:2017-03. Vegetable and animal oils and fats. Determination of peroxide number (Reference Method). Polish Committee for Standardization, Warsaw, Poland.
- [27] Khan I., Khattak H.U., Ullah I., Bangash F.K. 2007. Study of the physicochemical properties of Silybum marianum seed oil. Journal of The Chemical Society of Pakistan 29: 545–548.
- [28] Nyam K.L., Tan C.P., Lai O.M., Long K., Che Man Y.B. 2009. Physicochemical properties and bioactive compounds of selected seed oils. Journal of Food Science and Technology 42: 1396–1403.
- [29] Siol M., Dudek A., Bryś J., Mańko-Jurkowska D., Gruczyńska-Sękowska E., Makouie S., Palani B.K., Obranović M., Koczoń P. 2024. Chromatographic and thermal characteristics, and hydrolytic and oxidative stability of commercial pomegranate seed oil. Foods 13(9), 1370: 1–16.
- [30] Bryś J., Wirkowska M., Górska A., Ostrowska-Ligęza E., Bryś A., Koczoń P. 2013. The use of DSC and FT-IR spectroscopy for evaluation of oxidative stability of interesterified fats. Journal of Thermal Analysis and Calorimetry 112: 481–487.
- [31] López-López A., Castellote-Bargalló A.I., Campoy-Folgoso C., Rivero-Urgel M., Tormo-Carnicé R., Infante-Pina D., López-Sabater M.C. 2001. The influence of dietary palmitic acid triacylglyceride position on the fatty acid, calcium and magnesium contents of at term newborn faeces. Early Human Development 65: S83–S94.
- [32] Parry J., Hao Z., Luther M., Su L., Zhou K., Yu L.L. 2006. Characterization of cold-pressed onion, parsley, cardamom, mullein, roasted pumpkin and milk thistle seed oils. Journal of the American Oil Chemists’ Society 83: 847–854.
- [33] Dabbour I.R., Al-Ismail K.M., Takruri H.R., Azzeh F.S. 2014. Chemical characteristics and antioxidant content properties of cold pressed seed oil of wild milk thistle plant grown in Jordan. Pakistan Journal of Nutrition 13: 67–78.
- [34] Aparicio R., Roda L., Albi M.A., Gutiérrez F. 1999. Effect of various compounds on virgin olive oil stability measured by Rancimat. Journal of Agricultural and Food Chemistry 47: 4150–4155
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-0a96bcff-dba2-4413-b6c6-0d85f503fa3e
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