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Dive into the research topics where Rafał Jakub Bułdak is active.

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Featured researches published by Rafał Jakub Bułdak.


Scandinavian Journal of Gastroenterology | 2010

Serum chemerin and vaspin in non-alcoholic fatty liver disease.

Michał Kukla; Krystyna Zwirska-Korczala; Marek Hartleb; Marek Waluga; Alina Chwist; Maciej Kajor; Monika Ciupińska-Kajor; Agnieszka Berdowska; Elzbieta Wozniak-Grygiel; Rafał Jakub Bułdak

Abstract Objective. Chemerin and vaspin are new adipokines which may modulate inflammatory response and insulin sensitivity in non-alcoholic fatty liver disease (NAFLD). The aims of this study were to assess: (1) circulating levels of chemerin and vaspin and their association with liver histology and markers of liver injury in NAFLD patients; and (2) the relationship between the analyzed adipokines and insulin resistance. Material and methods. A total of 41 NAFLD patients with body mass index (BMI) 30.4 ± 3.3 kg/m2 [20 with non-alcoholic steatohepatitis (NASH) and BMI 30.3 ± 3.3 kg/m2 and 21 with simple steatosis/uncertain NASH (SS/UN) and BMI 30.5 ± 3.4 kg/m2] and 10 healthy volunteers with BMI 24.0 ± 2.9 kg/m2 were included in the study. Results. Serum chemerin concentration was significantly higher in NAFLD patients compared to healthy volunteers (p = 0.009). Serum chemerin was significantly higher in patients with NASH compared to patients with SS/UN (p = 0.009). The homeostasis model assessment for insulin resistance (HOMA-IR) value was higher in patients with NASH than in patients with SS/UN (p = 0.01). Serum chemerin and HOMA-IR were positively associated with NAFLD activity score (r = 0.40, p = 0.02; and r = 0.43, p = 0.008, respectively). Serum chemerin was associated with hepatocyte ballooning degeneration (r = 0.37; p = 0.03), total cholesterol (r = 0.45; p = 0.008) and diastolic blood pressure (r = 0.41; p = 0.02). HOMA-IR was related to fibrosis stage (r = 0.51; p = 0.001) and inflammatory activity grade in portal tracts (r = 0.40; p = 0.01). Serum vaspin correlated with hepatocyte ballooning degeneration (r = 0.31; p = 0.04), alanine aminotransferase and aspartate aminotransferase (r = 0.33, p = 0.03; and r = 0.32, p = 0.04, respectively) and diastolic blood pressure (r = 0.39, p = 0.01). Conclusions. This study shows for the first time that chemerin and vaspin serum concentrations are altered in patients with NAFLD. The analyzed adipokines appear to play a pivotal role in the pathogenesis of NAFLD, not only as regulators of insulin sensitivity, but also as mediators of the inflammatory process.


Bioelectromagnetics | 2012

Short-term exposure to 50 Hz ELF-EMF alters the cisplatin-induced oxidative response in AT478 murine squamous cell carcinoma cells.

Rafał Jakub Bułdak; Renata Polaniak; Łukasz Bułdak; Krystyna Żwirska-Korczala; Magdalena Skonieczna; Aleksandra Monsiol; Michał Kukla; Anna Duława-Bułdak; Ewa Birkner

The aim of this study was to assess the influence of cisplatin and an extremely low frequency electromagnetic field (ELF-EMF) on antioxidant enzyme activity and the lipid peroxidation ratio, as well as the level of DNA damage and reactive oxygen species (ROS) production in AT478 carcinoma cells. Cells were cultured for 24 and 72 h in culture medium with cisplatin. Additionally, the cells were irradiated with 50 Hz/1 mT ELF-EMF for 16 min using a solenoid as a source of the ELF-EMF. The amount of ROS, superoxide dismutase (SOD) isoenzyme activity, glutathione peroxidase (GSH-Px) activity, DNA damage, and malondialdehyde (MDA) levels were assessed. Cells that were exposed to cisplatin exhibited a significant increase in ROS and antioxidant enzyme activity. The addition of ELF-EMF exposure to cisplatin treatment resulted in decreased ROS levels and antioxidant enzyme activity. A significant reduction in MDA concentrations was observed in all of the study groups, with the greatest decrease associated with treatment by both cisplatin and ELF-EMF. Cisplatin induced the most severe DNA damage; however, when cells were also irradiated with ELF-EMF, less DNA damage occurred. Exposure to ELF-EMF alone resulted in an increase in DNA damage compared to control cells. ELF-EMF lessened the effects of oxidative stress and DNA damage that were induced by cisplatin; however, ELF-EMF alone was a mild oxidative stressor and DNA damage inducer. We speculate that ELF-EMF exerts differential effects depending on the exogenous conditions. This information may be of value for appraising the pathophysiologic consequences of exposure to ELF-EMF.


Pharmacological Reports | 2014

Metformin affects macrophages' phenotype and improves the activity of glutathione peroxidase, superoxide dismutase, catalase and decreases malondialdehyde concentration in a partially AMPK-independent manner in LPS-stimulated human monocytes/macrophages.

Łukasz Bułdak; Krzysztof Łabuzek; Rafał Jakub Bułdak; Michał Kozłowski; Grzegorz Machnik; Sebastian Liber; Dariusz Suchy; Anna Duława-Bułdak; Bogusław Okopień

BACKGROUND Diabetic patients experience accelerated atherosclerosis. Metformin is a cornerstone of the current therapy of type 2 diabetes. Macrophages are the key cells associated with the development of atherosclerotic plaques. Therefore, our aim was to assess the in vitro effects of metformin on macrophages and its influence on the mechanisms involved in the development of atherosclerosis. MATERIALS AND METHODS Peripheral blood mononuclear cells were obtained from the group including 16 age-matched healthy non-smoking volunteers aged 18-40 years. Monocytes were further incubated with metformin, LPS and compound C--a pharmacological inhibitor of AMPK. The impact of metformin on oxidative stress markers, antioxidative properties, inflammatory cytokines and phenotypical markers of macrophages was studied. RESULTS We showed that macrophages treated with metformin expressed less reactive oxygen species (ROS), which resulted from increased antioxidative potential. Furthermore, a reduction in inflammatory cytokines was observed. We also observed a phenotypic shift toward the alternative activation of macrophages that was induced by metformin. All the aforementioned results resulted from AMPK activation, but a residual activity of metformin after AMPK blockade was still noticeable even after inhibition of AMPK by compound C. CONCLUSIONS Authors believe that metformin-based therapy, a cornerstone in diabetes therapy, not only improves the prognosis of diabetics by reducing blood glucose but also by reducing oxidative stress, inflammatory cytokine production and the shift toward alternative activation of macrophages.


Oncology Reports | 2013

Visfatin affects redox adaptative responses and proliferation in Me45 human malignant melanoma cells: an in vitro study.

Rafał Jakub Bułdak; Łukasz Bułdak; Renata Polaniak; Michał Kukla; Ewa Birkner; Robert Kubina; Agata Kabała-Dzik; Anna Duława-Bułdak; Krystyna Żwirska-Korczala

Visfatin has recently been established as a novel adipokine that is predominantly expressed in subcutaneous and visceral fat. Only few studies have investigated the effect of visfatin on prostate, breast, ovarian cancer as well as on astrocytoma cell biology. There have been no previous studies on antioxidative enzyme activities, proliferation processes or levels of DNA damage in malignant melanoma cells in response to visfatin stimulation. Here, we report that visfatin increases activity of selected antioxidative enzymes (SOD, CAT, GSH-Px) in culture supernatants of Me45 human malignant melanoma cells. Our findings suggest that visfatin triggers a redox adaptation response, leading to an upregulation of antioxidant capacity along with decreased levels of the lipid peroxidation process in Me45 melanoma cells. Moreover, visfatin led to a significantly increased proliferation rate in the study using the [(3)H]thymidine incorporation method. Unlike insulin, visfatin-induced melanoma cell proliferation is not mediated by an insulin receptor. Better understanding of the role of visfatin in melanoma redox states may provide sound insight into the association between obesity-related fat adipokines and the antioxidant defense system in vitro in melanoma progression.


Advances in Clinical and Experimental Medicine | 2015

The Ethanol Extract of Polish Propolis Exhibits Anti-Proliferative and/or Pro-Apoptotic Effect on HCT 116 Colon Cancer and Me45 Malignant Melanoma Cells In Vitro Conditions.

Robert Kubina; Agata Kabała-Dzik; Arkadiusz Dziedzic; Beata Bielec; Robert D. Wojtyczka; Rafał Jakub Bułdak; Magdalena Wyszyńska; Barbara Stawiarska-Pięta; Ewa Szaflarska-Stojko

BACKGROUND Propolis is a natural product widely consumed in folk medicine. Different biological activities, such as anticancer, antioxidant, anti-inflammatory, antibiotic and antifungal effects have been reported for propolis and its constituents. OBJECTIVES An in vitro study focused on an evaluation of the biological activity of EEPP, including its anti-proliferative influence on selected neoplastic cells, considering qualitative-quantitative chemical characterization of Polish propolis. MATERIAL AND METHODS Cytotoxicity was evaluated by means of the MTT and LDH assays. The apoptosis was determined using fluorescence microscopy with annexin V-FITC. Additional EEPP composition was analyzed by a High Performance Liquid Chromatography (HPLC) method. The antimicrobial activity was evaluated by minimal inhibitory concentrations (MIC) against Streptococcus aureus, Enetecoccus faecalis, Escherichia coli, Pseudomonas aeruginosa and Candida albicans.

. RESULTS The total content of flavonoids per quercetin in the examined propolis extract amounted to 0.442±0.091 mg/mL. The flavonoid compounds identified in Polish propolis included flavones, flavonones, flavonolols, flavonols and phenolic acids. The multi-directional interactions among the various chemical compounds in propolis seem to be the essential biological activities when considering its anticancer effects. The results showed that in case of Me45 and HCT 116 cell lines, the ethanol extract of propolis could inhibit cell growth as well as cell size reduction. Regarding antimicrobial activity, EEPP showed MICs ranging from 0.39 to 6.25 mg/mL. CONCLUSIONS Ethanol extract of propolis from Poland obtained in the study exhibits anti-proliferative activity in different carcinoma cells.


International Journal of Molecular Sciences | 2014

Caffeic acid reduces the viability and migration rate of oral carcinoma cells (SCC-25) exposed to low concentrations of ethanol.

Arkadiusz Dziedzic; Robert Kubina; Agata Kabała-Dzik; Robert D. Wojtyczka; Tadeusz Morawiec; Rafał Jakub Bułdak

Alcohol increases the risk of carcinoma originated from oral epithelium, but the biological effects of ultra-low doses of ethanol on existing carcinoma cells in combination with natural substances are still unclear. A role for ethanol (EtOH), taken in small amounts as an ingredient of some beverages or mouthwashes to change the growth behavior of established squamous cell carcinoma, has still not been examined sufficiently. We designed an in vitro study to determine the effect of caffeic acid (CFA) on viability and migration ability of malignant oral epithelial keratinocytes, exposed to ultra-low concentrations (maximum 100 mmol/L) EtOH. MTT (3-[4,5-dimethylthiazol-2-yl]-2,5-dimethyltetrazolium bromide) and LDH (lactate dehydrogenase) assays were used to assess the cytotoxic effect of EtOH/CFA and the viability of squamous carcinoma SCC-25 cells (ATCC CRL-1628, mobile part of the tongue). Tested EtOH concentrations were: 2.5, 5, 10, 25, 50, and 100 mmol/L, along with an equal CFA concentration of 50 μmol/L. Carcinoma cells’ migration was investigated by monolayer “wound” healing assay. We demonstrated that very low concentrations of EtOH ranging between 2.5 and 10 mmol/L may induce the viability of oral squamous cell carcinoma cells, while the results following addition of CFA reveal an antagonistic effect, attenuating pro-proliferative EtOH activity. The migration rate of oral squamous carcinoma cells can be significantly inhibited by the biological activity of caffeic acid.


Molecules | 2016

Silver Nanoparticles Exhibit the Dose-Dependent Anti-Proliferative Effect against Human Squamous Carcinoma Cells Attenuated in the Presence of Berberine.

Arkadiusz Dziedzic; Robert Kubina; Rafał Jakub Bułdak; Magda Skonieczna; Krzysztof W Cholewa

The biological activity of nanosize silver particles towards oral epithelium-derived carcinoma seems to be still underinvestigated. We evaluated the influence of low doses of nanosize scale silver particles on the proliferation and viability of malignant oral epithelial keratinocytes in vitro, alone and in conjunction with the plant alkaloid berberine. Cells of human tongue squamous carcinoma SCC-25 (ATCC CRL-1628), cultivated with the mixture of Dulbeccos modified Eagle’s medium, were exposed to silver nanoparticles alone (AgNPs, concentrations from 0.31 to 10 μg/mL) and to a combination of AgNPs with berberine chloride (BER, 1/2 IC50 concentration) during 24 h and 48 h. The cytotoxic activity of AgNPs with diameters of 10 nm ± 4 nm was measured by 3-(4,5-dimethyl-2-thiazyl)-2,5-diphenyl-2H-tetrazolium bromide (MTT) assay. Cell cycle analysis was performed by treating cells with propidium iodide followed by flow-activated cell sorting. RT-QPCR reaction was used to assess expression of anti-apoptotic proteins Bcl-2 and pro-apoptotic protein Bcl-2-associated X protein Bax genes expression. Monodisperse silver nanoparticles at a concentration of 10 μg/mL arrested SCC-25 cells cycle after 48 h at the G0/G1 phase in a dose- and time-dependent manner through disruption G0/G1 checkpoint, with increase of Bax/Bcl-2 ratio gene expression. AgNPs exhibit cytotoxic effects on SCC-25 malignant oral epithelial keratinocytes, which is diminished when combined with BER. The AgNPs concentration required to inhibit the growth of carcinoma cells by 50% (IC50) after 48 h was estimated at 5.19 μg/mL. AgNPs combined with BER increased the expression of Bcl-2 while decreasing the ratio of Bax/Bcl-2 in SCC-25 cells. Silver particles at low doses therefore reduce the proliferation and viability of oral squamous cell carcinoma cells. SCC-25 cells are susceptible to damage from AgNPs-induced stress, which can be regulated by the natural alkaloid berberine, suggesting that nanoparticles may be potentially used in a chemoprevention/chemotherapy by augmentation of action of standard anti-cancer drugs.


Naunyn-schmiedebergs Archives of Pharmacology | 2015

Exenatide (a GLP-1 agonist) improves the antioxidative potential of in vitro cultured human monocytes/macrophages

Łukasz Bułdak; Krzysztof Łabuzek; Rafał Jakub Bułdak; Grzegorz Machnik; Aleksandra Bołdys; Bogusław Okopień

Macrophages are dominant cells in the pathogenesis of atherosclerosis. They are also a major source of reactive oxygen species (ROS). Oxidative stress, which is particularly high in subjects with diabetes, is responsible for accelerated atherosclerosis. Novel antidiabetic drugs (e.g., glucagon-like peptide-1 (GLP-1) agonists) were shown to reduce ROS level. Therefore, we conceived a study to evaluate the influence of exenatide, a GLP-1 agonist, on redox status in human monocytes/macrophages cultured in vitro, which may explain the beneficial effects of incretin-based antidiabetic treatment. Human macrophages obtained from 10 healthy volunteers were in vitro subjected to the treatment with GLP-1 agonist (exenatide) in the presence of lipopolysaccharide (LPS), antagonist of GLP-1 receptors (exendin 9-39), or protein kinase A inhibitor (H89). Afterwards, reactive oxygen species, malondialdehyde level, NADPH oxidase, and antioxidative enzymes [superoxide dismutase (SOD), glutathione peroxidase (GSH-Px), and catalase] expression was evaluated. Finally, we estimated the activity of the abovementioned enzymes in the presence of H89. According to our findings, exenatide reduced ROS and malondialdyhyde (MDA) level by decreasing the expression of ROS-generating NADPH oxidase and by increasing the expression and activities of SOD and GSH-Px. We also showed that this effect was significantly inhibited by exendin 9-39 (a GLP-1 antagonist) and blocked by H89. Exenatide improved the antioxidative potential and reduced oxidative stress in cultured human monocytes/macrophages, and this finding may be responsible for the pleiotropic effects of incretin-based therapies. This effect relied on the stimulation of GLP-1 receptor.


International Journal of Toxicology | 2010

Influence of an Extremely Low Frequency Magnetic Field (ELF-EMF) on Antioxidative Vitamin E Properties in AT478 Murine Squamous Cell Carcinoma Culture In Vitro

Renata Polaniak; Rafał Jakub Bułdak; Marta Karoń; Katarzyna Birkner; Michał Kukla; Krystyna Żwirska-Korczala; Ewa Birkner

This study examines the effects of vitamin E and an extremey low frequency electromagnetic field (ELF-EMF) and their combination in different time intervals of exposure of vitamin E (tocopherol) on the AT478 murine squamous cell carcinoma line. This study provides insight into the influence of correlations between ELF-EMF and vitamin E supplementation on antioxidant enzyme activity in malignant cells in vitro. Following vitamin E treatment, activity of the antioxidant enzymes is increased in an exposure-dependent manner compared with the untreated group. Application of ELF-EMF alone or with vitamin E increases both superoxide dismutase isoenzymes and glutathione peroxidase activities in comparison to the control group. The results suggest that ELF-EMF alters antioxidative activities of vitamin E in AT478 tumor cells. This study confirms the role of vitamin E in decreasing susceptibility to lipid peroxidation in AT478 tumor cells.


Oxidative Medicine and Cellular Longevity | 2017

NADPH Oxidases: Insights into Selected Functions and Mechanisms of Action in Cancer and Stem Cells

Magdalena Skonieczna; Tomasz Hejmo; Aleksandra Poterala-Hejmo; Artur Cieslar-Pobuda; Rafał Jakub Bułdak

NADPH oxidases (NOX) are reactive oxygen species- (ROS-) generating enzymes regulating numerous redox-dependent signaling pathways. NOX are important regulators of cell differentiation, growth, and proliferation and of mechanisms, important for a wide range of processes from embryonic development, through tissue regeneration to the development and spread of cancer. In this review, we discuss the roles of NOX and NOX-derived ROS in the functioning of stem cells and cancer stem cells and in selected aspects of cancer cell physiology. Understanding the functions and complex activities of NOX is important for the application of stem cells in tissue engineering, regenerative medicine, and development of new therapies toward invasive forms of cancers.

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Michał Kukla

Medical University of Silesia

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Łukasz Bułdak

Medical University of Silesia

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Renata Polaniak

Medical University of Silesia

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Tomasz Sawczyn

Medical University of Silesia

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Magdalena Skonieczna

Silesian University of Technology

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Agnieszka Berdowska

Medical University of Silesia

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Marek Waluga

Medical University of Silesia

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Robert Kubina

Medical University of Silesia

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