Róża Biegańska-Marecik
Life Sciences Institute
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Featured researches published by Róża Biegańska-Marecik.
International Journal of Molecular Sciences | 2014
Elżbieta Radziejewska-Kubzdela; Róża Biegańska-Marecik; Marcin Kidoń
Vacuum impregnation is a non-destructive method of introducing a solution with a specific composition to the porous matrices of fruit and vegetables. Mass transfer in this process is a result of mechanically induced differences in pressure. Vacuum impregnation makes it possible to fill large volumes of intercellular spaces in tissues of fruit and vegetables, thus modifying physico-chemical properties and sensory attributes of products. This method may be used, e.g., to reduce pH and water activity of the product, change its thermal properties, improve texture, color, taste and aroma. Additionally, bioactive compounds may be introduced together with impregnating solutions, thus improving health-promoting properties of the product or facilitating production of functional food.
Journal of the Science of Food and Agriculture | 2014
Elżbieta Radziejewska-Kubzdela; Janusz Czapski; Katarzyna Czaczyk; Róża Biegańska-Marecik
BACKGROUND The aim of this study was to determine the effect of washing (4 °C, 120 s) or soaking (4 °C, 600 s) of shredded celeriac in tap water on changes in contents of phenolic compounds, including furanocoumarins, and sensory and microbiological quality during 12 days of storage. The product was packaged in air or modified atmosphere containing 2/10/88 kPa O2/CO2/N2. RESULTS The applied pre-treatment consisting of washing or soaking of shredded celeriac in water resulted in decreases in 8-methoxypsoralen content by approximately 50 and 70% respectively and phenolic content by 30% compared with samples that were not subjected to pre-treatment. During storage of shredded celeriac, a further significant (P ≤ 0.05) reduction in phenolic compounds and an approximately 2.5-fold increase in the total content of furanocoumarins were found. The application of modified atmosphere packaging had a significant effect on the maintenance of good sensory and microbiological quality of the tested product. CONCLUSION Modified atmosphere packaging of shredded celeriac not subjected to pre-treatment made it possible to obtain a product with good sensory and microbiological quality and the highest content of phenolic compounds. The level of furanocoumarins recorded in the tested product does not constitute a health hazard.
Journal of the Science of Food and Agriculture | 2017
Agnieszka Piotrowska-Cyplik; Kamila Myszka; Jakub Czarny; Katarzyna Ratajczak; Ryszard Kowalski; Róża Biegańska-Marecik; Justyna Staninska-Pięta; Jacek Nowak; Paweł Cyplik
BACKGROUND Knowledge regarding microaerophilic and anaerobic specific spoilage organisms (SSOs) is crucial for an appropriate evaluation of vacuum-packed ham. The objective of this study was to characterize the SSO community in vacuum-packed ham by a culture-dependent technique and MiSeq next-generation sequencing (NGS) platform. The relation between changes among the SSO group in the ham and changes in sensory characteristics of the product was also assessed. RESULTS In the study, conventional microbiological analyses were employed in order to establish the participation of several groups of microorganisms in the deterioration of vacuum-packed ham. The diversity of the SSO group in the product was further assessed with the use of MiSeq NGS technology. The bacteria identified in sliced cooked ham belonged mostly to four phyla, namely Actinobacteria, Proteobacteria, Firmicutes and Bacteroidetes. A temperature of 4 °C favoured the development of mesophilic and psychrophilic/psychrotrophic flora, mainly Lactobacillaceae, Enterobacteriaceae and Micrococcaceae families. A high ratio of Brochothrix thermosphacta species and new, cold-tolerant Clostridium spp. was also observed. The growth of these microorganisms facilitated changes in the pH value and organoleptic characteristics of the product. CONCLUSION This study confirms that the combination of culturing and MiSeq NGS technology improves the microbial evaluation of food.
Food Chemistry | 2017
Róża Biegańska-Marecik; Elżbieta Radziejewska-Kubzdela; Roman Marecik
The aim of this study was to determine the polyphenols, glucosinolates and ascorbic acid content as well as antioxidant activity of beverages on the base of apple juice with addition of frozen and freeze-dried curly kale leaves. Upon enrichment with frozen (13%) and freeze-dried curly kale (3%), the naturally cloudy apple juice was characterized by an increase in phenolic compounds by 2.7 and 3.3-times, accordingly. The antioxidant activity of beverages with the addition of curly kale ranged from 6.6 to 9.4μmol Trolox/mL. The obtained beverages were characterized glucosinolates content at 117.6-167.6mg/L and ascorbic acid content at 4,1-31,9mg/L. The results of sensory evaluation of colour, taste and consistency of apple juice and beverages with the addition of kale did not differ significantly prior to pasteurization (P≤0.05), whereas after the pasteurization the evaluated factors decreased significantly.
Ultrasonics Sonochemistry | 2018
Joanna Kroehnke; Justyna Szadzińska; Marcin Stasiak; Elżbieta Radziejewska-Kubzdela; Róża Biegańska-Marecik; Grzegorz Musielak
The aim of these studies was to investigate the influence of airborne ultrasound-assisted convective drying and microwave-assisted convective drying, as well as their combination, on process kinetics, total color change, water activity, content of carotenoids, polyphenols and antioxidant activity of carrots (Daucus carota L.). The global model of drying kinetics based on coupled ordinary differential equations was used to describe the moisture and material temperature profiles during drying. Application of ultrasound and microwave in convective drying reduced drying time in the range of 9-81%, but the shortest drying time was observed for simultaneous action of convection, ultrasound and microwave. The results of qualitative analysis showed a product improvement due to ultrasound as compared to convective drying and microwave-convective drying. The proposed mathematical model of drying kinetics successfully simulated real drying processes. The proposed mathematical model of drying kinetics successfully simulated real hybrid drying processes.
International Biodeterioration & Biodegradation | 2015
Roman Marecik; Łukasz Chrzanowski; Agnieszka Piotrowska-Cyplik; Wojciech Juzwa; Róża Biegańska-Marecik
Lwt - Food Science and Technology | 2015
Elżbieta Radziejewska-Kubzdela; Róża Biegańska-Marecik
Polish Journal of Food and Nutrition Sciences | 2007
Róża Biegańska-Marecik; Janusz Czapski
Acta Scientiarum Polonorum. Technologia Alimentaria | 2007
Róża Biegańska-Marecik; Janusz Czapski
Journal of the American Oil Chemists' Society | 2017
Paweł Górnaś; Elżbieta Radziejewska-Kubzdela; Inga Mišina; Róża Biegańska-Marecik; Anna Grygier; Magdalena Rudzińska