Browsing by Author "Zafirovic, Sonja (55697604900)"
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Publication Apoptosis and acute brain ischemia in ischemic stroke(2017) ;Radak, Djordje (7004442548) ;Katsiki, Niki (25421628400) ;Resanovic, Ivana (55697862100) ;Jovanovic, Aleksandra (57214859907) ;Sudar-Milovanovic, Emina (23570110000) ;Zafirovic, Sonja (55697604900) ;Mousa, Shaker A. (7102645283)Isenovic, Esma R. (14040488600)Apoptosis may contribute to a significant proportion of neuron death following acute brain ischemia (ABI), but the underlying mechanisms are still not fully understood. Brain ischemia may lead to stroke, which is one of the main causes of long-term morbidity and mortality in both developed and developing countries. Therefore, stroke prevention and treatment is clinically important. There are two important separate areas of the brain during ABI: the ischemic core and the ischemic penumbra. The ischemic core of the brain experiences a sudden reduction of blood flow, just minutes after ischemic attack with irreversible injury and subsequent cell death. On the other hand, apoptosis within the ischemic penumbra may occur after several hours or days, while necrosis starts in the first hours after the onset of ABI in the ischemic core. ABI is characterized by key molecular events that initiate apoptosis in many cells, such as overproduction of free radicals, Ca2+ overload and excitotoxicity. These changes in cellular homeostasis may trigger either necrosis or apoptosis, which often depends on cell type, cell age, and location in the brain. Apoptosis results in DNA fragmentation, degradation of cytoskeletal and nuclear proteins, cross-linking of proteins, formation of apoptotic bodies, expression of ligands for phagocytic cell receptors and finally uptake by phagocytic cells. This review focuses on recent findings based on animal and human studies regarding the apoptotic mechanisms of neuronal death following ABI and the development of potential neuroprotective agents that reduce morbidity. The effects of statins on stroke prevention and treatment as well as on apoptotic mediators are also considered. © 2017 Bentham Science Publishers. - Some of the metrics are blocked by yourconsent settings
Publication Estradiol in vivo induces changes in cardiomyocytes size in obese rats(2015) ;Obradovic, Milan (48061421600) ;Sudar, Emina (23570110000) ;Zafirovic, Sonja (55697604900) ;Stanimirovic, Julijana (56441699200) ;Labudovic-Borovic, Milica (36826154300)Isenovic, Esma R. (14040488600)We studied the in vivo effects of estradiol on size and biochemical parameters of cardiomyocytes in pathophysiological conditions such as obesity and insulin resistance. Male Wistar rats were normally fed (controls, n = 7) or fed with high-fat diet (obese, n = 14). Half of the obese rats (obese + estradiol, n = 7) were treated with a single dose of estradiol (40 μg/kg, intraperitoneally) and 24 hours after treatment all the rats were killed. Estradiol in vivo in obese rats resulted in a significant increase in protein kinase B (Akt) activation (P < .05) and decrease in heart mass (P < .05), ratio of the heart mass/body mass (P < .05), transverse diameters of cardiomyocytes (P < .001), concentration of serum high-sensitivity C-reactive protein (P < .001), and total cholesterol (P < .01) compared with obese nontreated rats. Our results suggest that estradiol in obese/IR rats affects the size of cardiomyocytes and its actions lead in vivo to a reduction in obesity-induced cardiac hypertrophy via Akt. © The Author(s) 2013. - Some of the metrics are blocked by yourconsent settings
Publication Influence of a high-fat diet on cardiac iNOS in female rats(2017) ;Jovanovic, Aleksandra (57214859907) ;Sudar-Milovanovic, Emina (23570110000) ;Obradovic, Milan (48061421600) ;Pitt, Samantha J. (7005316383) ;Stewart, Alan J. (7403497452) ;Zafirovic, Sonja (55697604900) ;Stanimirovic, Julijana (56441699200) ;Radak, Djordje (7004442548)Isenovic, Esma R. (14040488600)Background: Overexpression of inducible nitric oxide synthase (iNOS) is a key link between high-fat (HF) diet induced obesity and cardiovascular disease. Oestradiol has cardioprotective effects that may be mediated through reduction of iNOS activity/expression. Methods: In the present study, female Wistar rats were fed a standard diet or a HF diet (42% fat) for 10 weeks. iNOS gene and protein expressions were measured in heart tissue. HF-fed rats exhibited a significant increase in cardiac iNOS mRNA by 695% (p<0.05), iNOS protein level by 248% (p<0.01), without changes in nitrate/nitrite levels. Expression of CD36 protein in plasma membranes was increased by 37% (p<0.05), while the concentration of free fatty acids (FFA) was reduced by 25% (p<0.01) in HF-fed rats. Expression of the p50 subunit of nuclear factor-ΚB (NFΚB-p50) in heart was increased by 77% (p<0.01) in HF-fed rats. Expression of protein kinase B (Akt) and extracellular signalregulated kinases 1/2 (ERK1/2) were unchanged between the groups. There was a significant increase in the ratio of phospho-Akt/total Akt but not for phospho-ERK1/2/total ERK1/2 in HF-fed rats. Estrogen receptor-α levels (by 50%; p<0.05) and serum oestradiol concentrations (by 35%; p<0.05) were shown to be significantly reduced in HF-fed rats. Results and Conclusion: Our results revealed that a HF diet led to increased iNOS expression, most likely via a mechanism involving Akt and NFΚB-p50 proteins. Decreased levels of oestradiol and ERΚ protein in the HF-fed group, in combination with increased iNOS levels are consistent with the hypothesis that oestradiol has a cardioprotective effect through its ability to regulate iNOS expression. © 2017 Bentham Science Publishers. - Some of the metrics are blocked by yourconsent settings
Publication Involvement of PI3K, akt and RhoA in oestradiol regulation of cardiac iNOS expression(2019) ;Zafirovic, Sonja (55697604900) ;Sudar-Milovanovic, Emina (23570110000) ;Obradovic, Milan (48061421600) ;Djordjevic, Jelena (57197593897) ;Jasnic, Nebojsa (17343800800) ;Borovic, Milica Labudovic (36826154300)Isenovic, Esma R. (14040488600)Background: Oestradiol is an important regulatory factor with several positive effects on the cardiovascular (CV) system. We evaluated the molecular mechanism of the in vivo effects of oestradiol on the regulation of cardiac inducible nitric oxide (NO) synthase (iNOS) expression and activity. Methods: Male Wistar rats were treated with oestradiol (40 mg/kg, intraperitoneally) and after 24 h the animals were sacrificed. The concentrations of NO and L-Arginine (L-Arg) were determined spectro-photometrically. For protein expressions of iNOS, p65 subunit of nuclear factor-κB (NFκB-p65), Ras homolog gene family-member A (RhoA), angiotensin II receptor type 1 (AT1R), insulin receptor substrate 1 (IRS-1), p85, p110 and protein kinase B (Akt), Western blot method was used. Co-immunoprecipitation was used for measuring the association of IRS-1 with the p85 subunit of phos-phatidylinositol-3-kinase (PI3K). The expression of iNOS messenger ribonucleic acid (mRNA) was measured with the quantitative real-time polymerase chain reaction (qRT-PCR). Immunohistochemical analysis of the tissue was used to detect localization and expression of iNOS in heart tissue. Results: Oestradiol treatment reduced L-Arg concentration (p<0.01), iNOS mRNA (p<0.01) and protein (p<0.001) expression, level of RhoA (p<0.05) and AT1R (p<0.001) protein. In contrast, plasma NO (p<0.05), Akt phosphorylation at Thr308 (p<0.05) and protein level of p85 (p<0.001) increased after oestradiol treatment. Conclusion: Our results suggest that oestradiol in vivo regulates cardiac iNOS expression via the PI3K/Akt signaling pathway, through attenuation of RhoA and AT1R. © 2019 Bentham Science Publishers. - Some of the metrics are blocked by yourconsent settings
Publication Involvement of PI3K, akt and RhoA in oestradiol regulation of cardiac iNOS expression(2019) ;Zafirovic, Sonja (55697604900) ;Sudar-Milovanovic, Emina (23570110000) ;Obradovic, Milan (48061421600) ;Djordjevic, Jelena (57197593897) ;Jasnic, Nebojsa (17343800800) ;Borovic, Milica Labudovic (36826154300)Isenovic, Esma R. (14040488600)Background: Oestradiol is an important regulatory factor with several positive effects on the cardiovascular (CV) system. We evaluated the molecular mechanism of the in vivo effects of oestradiol on the regulation of cardiac inducible nitric oxide (NO) synthase (iNOS) expression and activity. Methods: Male Wistar rats were treated with oestradiol (40 mg/kg, intraperitoneally) and after 24 h the animals were sacrificed. The concentrations of NO and L-Arginine (L-Arg) were determined spectro-photometrically. For protein expressions of iNOS, p65 subunit of nuclear factor-κB (NFκB-p65), Ras homolog gene family-member A (RhoA), angiotensin II receptor type 1 (AT1R), insulin receptor substrate 1 (IRS-1), p85, p110 and protein kinase B (Akt), Western blot method was used. Co-immunoprecipitation was used for measuring the association of IRS-1 with the p85 subunit of phos-phatidylinositol-3-kinase (PI3K). The expression of iNOS messenger ribonucleic acid (mRNA) was measured with the quantitative real-time polymerase chain reaction (qRT-PCR). Immunohistochemical analysis of the tissue was used to detect localization and expression of iNOS in heart tissue. Results: Oestradiol treatment reduced L-Arg concentration (p<0.01), iNOS mRNA (p<0.01) and protein (p<0.001) expression, level of RhoA (p<0.05) and AT1R (p<0.001) protein. In contrast, plasma NO (p<0.05), Akt phosphorylation at Thr308 (p<0.05) and protein level of p85 (p<0.001) increased after oestradiol treatment. Conclusion: Our results suggest that oestradiol in vivo regulates cardiac iNOS expression via the PI3K/Akt signaling pathway, through attenuation of RhoA and AT1R. © 2019 Bentham Science Publishers. - Some of the metrics are blocked by yourconsent settings
Publication The protective role of nutritional antioxidants against oxidative stress in thyroid disorders(2023) ;Macvanin, Mirjana T. (6505949095) ;Gluvic, Zoran (24460256500) ;Zafirovic, Sonja (55697604900) ;Gao, Xin (55712115900) ;Essack, Magbubah (25621234900)Isenovic, Esma R. (14040488600)An imbalance between pro-oxidative and antioxidative cellular mechanisms is oxidative stress (OxS) which may be systemic or organ-specific. Although OxS is a consequence of normal body and organ physiology, severely impaired oxidative homeostasis results in DNA hydroxylation, protein denaturation, lipid peroxidation, and apoptosis, ultimately compromising cells’ function and viability. The thyroid gland is an organ that exhibits both oxidative and antioxidative processes. In terms of OxS severity, the thyroid gland’s response could be physiological (i.e. hormone production and secretion) or pathological (i.e. development of diseases, such as goitre, thyroid cancer, or thyroiditis). Protective nutritional antioxidants may benefit defensive antioxidative systems in resolving pro-oxidative dominance and redox imbalance, preventing or delaying chronic thyroid diseases. This review provides information on nutritional antioxidants and their protective roles against impaired redox homeostasis in various thyroid pathologies. We also review novel findings related to the connection between the thyroid gland and gut microbiome and analyze the effects of probiotics with antioxidant properties on thyroid diseases. Copyright © 2023 Macvanin, Gluvic, Zafirovic, Gao, Essack and Isenovic.
