Marianna Raczyk
Life Sciences Institute
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Featured researches published by Marianna Raczyk.
Journal of Agricultural and Food Chemistry | 2016
Paweł Górnaś; Magdalena Rudzińska; Marianna Raczyk; Inga Mišina; Arianne Soliven; Guna̅rs La̅cis; Dalija Segliņa
The profile of bioactive compounds (carotenoids, tocopherols, tocotrienols, phytosterols, and squalene) in oils recovered from the kernels of 28 plum varieties of hexaploid species Prunus domestica L. and diploid plums Prunus cerasifera Ehrh. and their crossbreeds were studied. Oil yields in plum kernels of both P. cerasifera and P. domestica was in wide ranges of 22.6-53.1 and 24.2-46.9% (w/w) dw, respectively. The contents of total tocochromanols, carotenoids, phytosterols, and squalene was significantly affected by the variety and ranged between 70.7 and 208.7 mg/100 g of oil, between 0.41 and 3.07 mg/100 g of oil, between 297.2 and 1569.6 mg/100 g of oil, and between 25.7 and 80.4 mg/100 g of oil, respectively. Regardless of the cultivar, β-sitosterol and γ-tocopherol were the main minor lipophilic compounds in plum kernel oils and constituted between 208.5 and 1258.7 mg/100 g of oil and between 60.5 and 182.0 mg/100 g of oil, respectively. Between the studied plum species, significant differences were recorded for δ-tocopherol (p = 0.007), 24-methylenecycloartanol (p = 0.038), and citrostadienol (p = 0.003), but they were insufficient for discrimination by PCA.
Journal of the Science of Food and Agriculture | 2016
Paweł Górnaś; Magdalena Rudzińska; Marianna Raczyk; Arianne Soliven
BACKGROUND The by-products of seven different cereal grains were investigated as a source of extractable oil, rich in lipophilic bioactive compounds. RESULTS Oil yields (g kg(-1) DW) recovered from cereal by-products were as follows: 189 (rice bran) > 112 (wheat germ) > 74 (corn bran) > 58 (oat bran) > 41 (buckwheat bran) > 39 (spelt bran) > 33 (wheat bran) > 27 (rye bran). The main fatty acids identified in the studied oil samples were palmitic acid (11.39-17.23%), oleic acid (11.76-42.73%), linoleic acid (35.54-62.65%) and α-linolenic acid (1.05-9.46%). The range of total tocochromanols and phytosterols in the obtained oils was 0.369-3.763 and 1.19-35.24 g kg(-1) of oil, respectively. The oils recovered from buckwheat and corn bran, and wheat germ were dominated by tocopherols (99.9, 84.2 and 96.5%, respectively), whereas the oat, rice, rye, spelt, wheat bran oils were rich in tocotrienols (73.9, 79.6, 78.1, 90.6 and 73.8%, respectively). The campesterol and β-sitosterol constituted 10.1-32.5 and 30.4-63.7%, respectively, of total phytosterols contents identified in all of the studied samples. CONCLUSION The present study demonstrated that oils recovered from the cereal by-products are richer sources of bioactive compounds, compared with traditional oils.
Food Research International | 2017
Marianna Raczyk; Dominik Kmiecik; Peter Schieberle; Roman Przybylski; Henryk Jeleń; Magdalena Rudzińska
The consumption of plant sterols is reported to have a beneficial effects on human health, i.e. phytosterols are known for their cholesterol-lowering properties. Whereas, they are prone to oxidation and currently there is ongoing worldwide research aimed at the biological effect of phytosterol oxides. In this study volatile compounds formed during thermal degradation of stigmasteryl esters were identified. The research was conducted using standards of stigmasterol, fatty acids and stigmasteryl esters as well as fat enriched with stigmasteryl esters which were thermally treated at 60°C and 180°C for 12h. Volatile compounds were characterised by SPME-GC-MS. Among the volatiles formed during heating of stigmasteryl esters aldehydes, ketones, alcohols and hydrocarbons were found. The mechanism of the formation of volatile compounds from sterol esters was related to oxidation of steryl and fatty acid moieties. In particular, 2-methyl-3-pentanone and 5-ethyl-6-methyl-3-hepten-2-one were identified as unique degradation products formed from degradation of the steryl moiety specifically, and a mechanism of their formation was suggested. Both volatiles could be a good indicator of thermo-oxidative degradation of functional food products enriched in phytosterols and their esters.
Acta Scientiarum Polonorum Technologia Alimentaria | 2017
Marianna Raczyk; Aleksander Siger; Elżbieta Radziejewska-Kubzdela; Katarzyna Ratusz; Magdalena Rudzińska
BACKGROUND Pumpkin seed oil is valuable oil for its distinctive taste and aroma, as well as supposed health- promoting properties. The aim of this study was to investigate how roasting pumpkin seeds influences the physicochemical properties of cold-pressed oils. METHODS The fatty acid composition, content of phytosterols, carotenoids and tocopherols, oxidative stability and colour were determined in oils after cold pressing and storage for 3 months using GC-FID, GCxGC-ToFMS, HPLC, Rancimat and spectrophotometric methods. RESULTS The results of this study indicate that the seed-roasting and storage process have no effect on the fatty acid composition of pumpkin seed oils, but does affect phytosterols and tocopherols. The carotenoid content decreased after storage. The colour of the roasted oil was darker and changed significantly during storage. CONCLUSIONS Pumpkin oil obtained from roasted seeds shows better physicochemical properties and oxidative stability than oil from unroasted seeds.
European Journal of Lipid Science and Technology | 2016
Marianna Raczyk; Edyta Popis; Bartosz Kruszewski; Katarzyna Ratusz; Magdalena Rudzińska
Industrial Crops and Products | 2016
Paweł Górnaś; Magdalena Rudzińska; Marianna Raczyk; Inga Mišina; Arianne Soliven; Dalija Segliņa
Journal of the American Oil Chemists' Society | 2016
Paweł Górnaś; Magdalena Rudzińska; Marianna Raczyk; Inga Mišina; Arianne Soliven; Dalija Segliņa
Plant Foods for Human Nutrition | 2016
Paweł Górnaś; Magdalena Rudzińska; Marianna Raczyk; Inga Mišina; Dalija Segliņa
Journal of the American Oil Chemists' Society | 2017
Marianna Raczyk; Dominik Kmiecik; Roman Przybylski; Magdalena Rudzińska
European Journal of Lipid Science and Technology | 2018
Marianna Raczyk; Anja Bonte; Bertrand Matthäus; Magdalena Rudzińska