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Browsing by Author "Janjetovic, Kristina (35332184000)"

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    Autophagy-independent increase of ATG5 expression in T cells of multiple sclerosis patients
    (2018)
    Paunovic, Verica (24342012700)
    ;
    Petrovic, Irena Vukovic (57201253580)
    ;
    Milenkovic, Marina (55308661500)
    ;
    Janjetovic, Kristina (35332184000)
    ;
    Pravica, Vera (7003322504)
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    Dujmovic, Irena (6701590899)
    ;
    Milosevic, Emina (24822544200)
    ;
    Martinovic, Vanja (56925159700)
    ;
    Mesaros, Sarlota (7004307592)
    ;
    Drulovic, Jelena (55886929900)
    ;
    Trajkovic, Vladimir (7004516866)
    Autophagy, a process of controlled self-digestion which regulates cell homeostasis, is involved in innate and adaptive immunity. We investigated the expression of autophagy genes and autophagic activity in distinct lymphocyte populations in treatment-naive MS patients. The mRNA and protein levels of autophagy-related (ATG)5, required for autophagosome formation, were increased in CD4+ and CD4− T cells, but not B cells of MS patients compared to control subjects. The expression of other investigated autophagy genes, as well as the autophagic activity, did not significantly differ between the two groups. ATG5 mRNA levels in CD4+ T cells from MS patients were positively correlated with those of the proinflammatory cytokine tumor necrosis factor. These data suggest that autophagy-independent increase in ATG5 expression might be associated with the proinflammatory capacity of T cells in multiple sclerosis. © 2018 Elsevier B.V.
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    Autophagy-independent increase of ATG5 expression in T cells of multiple sclerosis patients
    (2018)
    Paunovic, Verica (24342012700)
    ;
    Petrovic, Irena Vukovic (57201253580)
    ;
    Milenkovic, Marina (55308661500)
    ;
    Janjetovic, Kristina (35332184000)
    ;
    Pravica, Vera (7003322504)
    ;
    Dujmovic, Irena (6701590899)
    ;
    Milosevic, Emina (24822544200)
    ;
    Martinovic, Vanja (56925159700)
    ;
    Mesaros, Sarlota (7004307592)
    ;
    Drulovic, Jelena (55886929900)
    ;
    Trajkovic, Vladimir (7004516866)
    Autophagy, a process of controlled self-digestion which regulates cell homeostasis, is involved in innate and adaptive immunity. We investigated the expression of autophagy genes and autophagic activity in distinct lymphocyte populations in treatment-naive MS patients. The mRNA and protein levels of autophagy-related (ATG)5, required for autophagosome formation, were increased in CD4+ and CD4− T cells, but not B cells of MS patients compared to control subjects. The expression of other investigated autophagy genes, as well as the autophagic activity, did not significantly differ between the two groups. ATG5 mRNA levels in CD4+ T cells from MS patients were positively correlated with those of the proinflammatory cytokine tumor necrosis factor. These data suggest that autophagy-independent increase in ATG5 expression might be associated with the proinflammatory capacity of T cells in multiple sclerosis. © 2018 Elsevier B.V.
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    Chloroquine-mediated lysosomal dysfunction enhances the anticancer effect of nutrient deprivation
    (2012)
    Harhaji-Trajkovic, Ljubica (6507652139)
    ;
    Arsikin, Katarina (36611166200)
    ;
    Kravic-Stevovic, Tamara (35275295500)
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    Petricevic, Sasa (25226498300)
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    Tovilovic, Gordana (8612798200)
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    Pantovic, Aleksandar (36601215300)
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    Zogovic, Nevena (35333437200)
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    Ristic, Biljana (7006688884)
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    Janjetovic, Kristina (35332184000)
    ;
    Bumbasirevic, Vladimir (6603957757)
    ;
    Trajkovic, Vladimir (7004516866)
    Purpose To investigate the ability of chloroquine, a lysosomotropic autophagy inhibitor, to enhance the anticancer effect of nutrient deprivation. Methods Serum-deprived U251 glioma, B16 melanoma and L929 fibrosarcoma cells were treated with chloroquine in vitro. Cell viability was measured by crystal violet and MTT assay. Oxidative stress, apoptosis/necrosis and intracellular acidification were analyzed by flow cytometry. Cell morphology was examined by light and electron microscopy. Activation of AMP-activated protein kinase (AMPK) and autophagy were monitored by immunoblotting. RNA interference was used for AMPK and LC3b knockdown. The anticancer efficiency of intraperitoneal chloroquine in calorierestricted mice was assessed using a B16mouse melanoma model. Results Chloroquine rapidly killed serum-starved cancer cells in vitro. This effect was not mimicked by autophagy inhibitors or LC3b shRNA, indicating autophagy-independent mechanism. Chloroquine-induced lysosomal accumulation and oxidative stress, leading tomitochondrial depolarization, caspase activation and mixed apoptotic/necrotic cell death, were prevented by lysosomal acidification inhibitor bafilomycin. AMPK downregulation participated in chloroquine action, as AMPK activation reduced, and AMPK shRNA mimicked chloroquine toxicity. Chloroquine inhibited melanoma growth in calorie-restricted mice, causing lysosomal accumulation, mitochondrial disintegration and selective necrosis of tumor cells. Conclusion Combined treatment with chloroquine and calorie restriction might be useful in cancer therapy. © Springer Science+Business Media, LLC 2012.
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    Chloroquine-mediated lysosomal dysfunction enhances the anticancer effect of nutrient deprivation
    (2012)
    Harhaji-Trajkovic, Ljubica (6507652139)
    ;
    Arsikin, Katarina (36611166200)
    ;
    Kravic-Stevovic, Tamara (35275295500)
    ;
    Petricevic, Sasa (25226498300)
    ;
    Tovilovic, Gordana (8612798200)
    ;
    Pantovic, Aleksandar (36601215300)
    ;
    Zogovic, Nevena (35333437200)
    ;
    Ristic, Biljana (7006688884)
    ;
    Janjetovic, Kristina (35332184000)
    ;
    Bumbasirevic, Vladimir (6603957757)
    ;
    Trajkovic, Vladimir (7004516866)
    Purpose To investigate the ability of chloroquine, a lysosomotropic autophagy inhibitor, to enhance the anticancer effect of nutrient deprivation. Methods Serum-deprived U251 glioma, B16 melanoma and L929 fibrosarcoma cells were treated with chloroquine in vitro. Cell viability was measured by crystal violet and MTT assay. Oxidative stress, apoptosis/necrosis and intracellular acidification were analyzed by flow cytometry. Cell morphology was examined by light and electron microscopy. Activation of AMP-activated protein kinase (AMPK) and autophagy were monitored by immunoblotting. RNA interference was used for AMPK and LC3b knockdown. The anticancer efficiency of intraperitoneal chloroquine in calorierestricted mice was assessed using a B16mouse melanoma model. Results Chloroquine rapidly killed serum-starved cancer cells in vitro. This effect was not mimicked by autophagy inhibitors or LC3b shRNA, indicating autophagy-independent mechanism. Chloroquine-induced lysosomal accumulation and oxidative stress, leading tomitochondrial depolarization, caspase activation and mixed apoptotic/necrotic cell death, were prevented by lysosomal acidification inhibitor bafilomycin. AMPK downregulation participated in chloroquine action, as AMPK activation reduced, and AMPK shRNA mimicked chloroquine toxicity. Chloroquine inhibited melanoma growth in calorie-restricted mice, causing lysosomal accumulation, mitochondrial disintegration and selective necrosis of tumor cells. Conclusion Combined treatment with chloroquine and calorie restriction might be useful in cancer therapy. © Springer Science+Business Media, LLC 2012.
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    Coordinated time-dependent modulation of AMPK/Akt/mTOR signaling and autophagy controls osteogenic differentiation of human mesenchymal stem cells
    (2013)
    Pantovic, Aleksandar (36601215300)
    ;
    Krstic, Aleksandra (7006010128)
    ;
    Janjetovic, Kristina (35332184000)
    ;
    Kocic, Jelena (26532883400)
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    Harhaji-Trajkovic, Ljubica (6507652139)
    ;
    Bugarski, Diana (35616659100)
    ;
    Trajkovic, Vladimir (7004516866)
    We investigated the role of AMP-activated protein kinase (AMPK), Akt, mammalian target of rapamycin (mTOR), autophagy and their interplay in osteogenic differentiation of human dental pulp mesenchymal stem cells. The activation of various members of AMPK, Akt and mTOR signaling pathways and autophagy was analyzed by immunoblotting, while osteogenic differentiation was assessed by alkaline phosphatase staining and real-time RT-PCR/immunoblot quantification of osteocalcin, Runt-related transcription factor 2 and bone morphogenetic protein 2 mRNA and/or protein levels. Osteogenic differentiation of mesenchymal stem cells was associated with early (day 1) activation of AMPK and its target Raptor, coinciding with the inhibition of mTOR and its substrate p70S6 kinase. The early induction of autophagy was demonstrated by accumulation of autophagosome-bound LC3-II, upregulation of proautophagic beclin-1 and a decrease in the selective autophagic target p62. This was followed by the late activation of Akt/mTOR at days 3-7 of differentiation. The RNA interference-mediated silencing of AMPK, mTOR or autophagy-essential LC3β, as well as the pharmacological inhibitors of AMPK (compound C), Akt (10-DEBC hydrochloride), mTOR (rapamycin) and autophagy (bafilomycin A1, chloroquine and ammonium chloride), each suppressed mesenchymal stem cell differentiation to osteoblasts. AMPK knockdown prevented early mTOR inhibition and autophagy induction, as well as late activation of Akt/mTOR signaling, while Akt inhibition suppressed mTOR activation without affecting AMPK phosphorylation. Our data indicate that AMPK controls osteogenic differentiation of human mesenchymal stem cells through both early mTOR inhibition-mediated autophagy and late activation of Akt/mTOR signaling axis. © 2012 Elsevier Inc.
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    Coordinated time-dependent modulation of AMPK/Akt/mTOR signaling and autophagy controls osteogenic differentiation of human mesenchymal stem cells
    (2013)
    Pantovic, Aleksandar (36601215300)
    ;
    Krstic, Aleksandra (7006010128)
    ;
    Janjetovic, Kristina (35332184000)
    ;
    Kocic, Jelena (26532883400)
    ;
    Harhaji-Trajkovic, Ljubica (6507652139)
    ;
    Bugarski, Diana (35616659100)
    ;
    Trajkovic, Vladimir (7004516866)
    We investigated the role of AMP-activated protein kinase (AMPK), Akt, mammalian target of rapamycin (mTOR), autophagy and their interplay in osteogenic differentiation of human dental pulp mesenchymal stem cells. The activation of various members of AMPK, Akt and mTOR signaling pathways and autophagy was analyzed by immunoblotting, while osteogenic differentiation was assessed by alkaline phosphatase staining and real-time RT-PCR/immunoblot quantification of osteocalcin, Runt-related transcription factor 2 and bone morphogenetic protein 2 mRNA and/or protein levels. Osteogenic differentiation of mesenchymal stem cells was associated with early (day 1) activation of AMPK and its target Raptor, coinciding with the inhibition of mTOR and its substrate p70S6 kinase. The early induction of autophagy was demonstrated by accumulation of autophagosome-bound LC3-II, upregulation of proautophagic beclin-1 and a decrease in the selective autophagic target p62. This was followed by the late activation of Akt/mTOR at days 3-7 of differentiation. The RNA interference-mediated silencing of AMPK, mTOR or autophagy-essential LC3β, as well as the pharmacological inhibitors of AMPK (compound C), Akt (10-DEBC hydrochloride), mTOR (rapamycin) and autophagy (bafilomycin A1, chloroquine and ammonium chloride), each suppressed mesenchymal stem cell differentiation to osteoblasts. AMPK knockdown prevented early mTOR inhibition and autophagy induction, as well as late activation of Akt/mTOR signaling, while Akt inhibition suppressed mTOR activation without affecting AMPK phosphorylation. Our data indicate that AMPK controls osteogenic differentiation of human mesenchymal stem cells through both early mTOR inhibition-mediated autophagy and late activation of Akt/mTOR signaling axis. © 2012 Elsevier Inc.
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    Effects of IL-33/ST2 pathway in acute inflammation on tissue damage, Antioxidative parameters, Magnesium concentration and cytokines profile
    (2016)
    Stankovic, Marija S. (56954542900)
    ;
    Janjetovic, Kristina (35332184000)
    ;
    Velimirovic, Milica (56270007000)
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    Milenkovic, Marina (55308661500)
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    Stojkovic, Tihomir (55332669300)
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    Puskas, Nela (15056782600)
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    Zaletel, Ivan (56461363100)
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    de Luka, Silvio R. (56957018200)
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    Jankovic, Sasa (35203368500)
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    Stefanovic, Srdjan (58777786600)
    ;
    Japundzic-Zigon, Nina (6506302556)
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    Petronijevic, Natasa D. (6506911099)
    ;
    Trajkovic, Vladimir (7004516866)
    ;
    Trbovich, Alexander M. (57115127200)
    Aim: The aim of this study was to examine the role of IL-33/ST2 pathway in a pathogenesis of acute inflammation and its effects on tissue damage, antioxidative capacity, magnesium concentration and cytokine profile in acutely inflamed tissue. Material and methods: Male mice were randomly divided in four groups: wild-type control group (WT-C), ST2 knockout control group (KO-C), wild-type inflammatory group (WT-I), and ST2 knockout inflammatory group (KO-I). Acute inflammation was induced in WT-I and KO-I by intramuscular injection of turpentine oil, while mice in WT-C and KO-C were treated with saline. After 12 h, animals were euthanized, and blood was collected for determination of creatine kinase (CK) and aspartate transaminase (AST) activity. The treated tissue was used for histopathological analysis, determination of volume density of inflammatory infiltrate (Vdii) and necrotic fiber (Vdnf), gene expression of interleukin (IL)-33, ST2, tumor necrosis factor alpha (TNF-alpha), IL-6, IL-12p35, and transforming growth factor beta (TGF-beta), concentration of magnesium (Mg), copper (Cu), selenium (Se), manganese (Mn) and reduced glutathione (GSH), and superoxide dismutase (SOD) and glutathione peroxidase (GPx) activity. Results: Presence of inflammatory infiltration and necrosis in the treated tissue was histopathologically confirmed in WT-I and KO-I. Vdii was significantly higher in WT-I when compared to KO-I, whereas Vdnf did not significantly differ between WT-I and KO-I. CK and AST significantly increased in both inflammatory groups when compared to corresponding control groups. However, the values of CK and AST were significantly higher in WT-I than in KO-I. Mg in the treated tissue was significantly lower in WT-I in comparison to WT-C and KO-I, while there was no significant difference between KO-C and KO-I. There was no significant difference in Cu, Se, and Mn in the treated tissue between WT-C, KO-C, WT-I and KO-I. Gene expression of IL-33 in the treated tissue increased in both inflammatory groups when compared to the corresponding control groups, but it was significantly higher in KO-I than in WT-I. Gene expression of ST2 in the treated tissue was significantly higher in WT-I than in WT-C. Gene expression of TNF-alpha, IL-6, and IL-12p35 in the treated tissue was significantly higher in WT-I and KO-I than in the corresponding control groups, and IL-6 was significantly higher in KO-C than in WT-C. TGF-beta gene expression in the treated tissue was significantly higher in KO-I when compared to WT-I, while there was no difference between WT-C and KO-C. SOD activity decreased at the site of acute inflammation in both inflammatory groups, while the GPx activity increased. GSH in the treated tissue was significantly higher in KO-I than in KO-C or WT-I. Conclusion: The results of our study have indicated, to our knowledge for the first time, that IL-33/ST2 pathway plays a role in enhancing inflammation and tissue damage at the site of acute inflammation by affecting the concentration of magnesium and GSH, important for antioxidative capacity, as well as gene expression of anti-inflammatory cytokine TGF-beta. © 2016 Elsevier Inc..
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    Effects of IL-33/ST2 pathway in acute inflammation on tissue damage, Antioxidative parameters, Magnesium concentration and cytokines profile
    (2016)
    Stankovic, Marija S. (56954542900)
    ;
    Janjetovic, Kristina (35332184000)
    ;
    Velimirovic, Milica (56270007000)
    ;
    Milenkovic, Marina (55308661500)
    ;
    Stojkovic, Tihomir (55332669300)
    ;
    Puskas, Nela (15056782600)
    ;
    Zaletel, Ivan (56461363100)
    ;
    de Luka, Silvio R. (56957018200)
    ;
    Jankovic, Sasa (35203368500)
    ;
    Stefanovic, Srdjan (58777786600)
    ;
    Japundzic-Zigon, Nina (6506302556)
    ;
    Petronijevic, Natasa D. (6506911099)
    ;
    Trajkovic, Vladimir (7004516866)
    ;
    Trbovich, Alexander M. (57115127200)
    Aim: The aim of this study was to examine the role of IL-33/ST2 pathway in a pathogenesis of acute inflammation and its effects on tissue damage, antioxidative capacity, magnesium concentration and cytokine profile in acutely inflamed tissue. Material and methods: Male mice were randomly divided in four groups: wild-type control group (WT-C), ST2 knockout control group (KO-C), wild-type inflammatory group (WT-I), and ST2 knockout inflammatory group (KO-I). Acute inflammation was induced in WT-I and KO-I by intramuscular injection of turpentine oil, while mice in WT-C and KO-C were treated with saline. After 12 h, animals were euthanized, and blood was collected for determination of creatine kinase (CK) and aspartate transaminase (AST) activity. The treated tissue was used for histopathological analysis, determination of volume density of inflammatory infiltrate (Vdii) and necrotic fiber (Vdnf), gene expression of interleukin (IL)-33, ST2, tumor necrosis factor alpha (TNF-alpha), IL-6, IL-12p35, and transforming growth factor beta (TGF-beta), concentration of magnesium (Mg), copper (Cu), selenium (Se), manganese (Mn) and reduced glutathione (GSH), and superoxide dismutase (SOD) and glutathione peroxidase (GPx) activity. Results: Presence of inflammatory infiltration and necrosis in the treated tissue was histopathologically confirmed in WT-I and KO-I. Vdii was significantly higher in WT-I when compared to KO-I, whereas Vdnf did not significantly differ between WT-I and KO-I. CK and AST significantly increased in both inflammatory groups when compared to corresponding control groups. However, the values of CK and AST were significantly higher in WT-I than in KO-I. Mg in the treated tissue was significantly lower in WT-I in comparison to WT-C and KO-I, while there was no significant difference between KO-C and KO-I. There was no significant difference in Cu, Se, and Mn in the treated tissue between WT-C, KO-C, WT-I and KO-I. Gene expression of IL-33 in the treated tissue increased in both inflammatory groups when compared to the corresponding control groups, but it was significantly higher in KO-I than in WT-I. Gene expression of ST2 in the treated tissue was significantly higher in WT-I than in WT-C. Gene expression of TNF-alpha, IL-6, and IL-12p35 in the treated tissue was significantly higher in WT-I and KO-I than in the corresponding control groups, and IL-6 was significantly higher in KO-C than in WT-C. TGF-beta gene expression in the treated tissue was significantly higher in KO-I when compared to WT-I, while there was no difference between WT-C and KO-C. SOD activity decreased at the site of acute inflammation in both inflammatory groups, while the GPx activity increased. GSH in the treated tissue was significantly higher in KO-I than in KO-C or WT-I. Conclusion: The results of our study have indicated, to our knowledge for the first time, that IL-33/ST2 pathway plays a role in enhancing inflammation and tissue damage at the site of acute inflammation by affecting the concentration of magnesium and GSH, important for antioxidative capacity, as well as gene expression of anti-inflammatory cytokine TGF-beta. © 2016 Elsevier Inc..
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    Intracerebroventricular administration of metformin inhibits ghrelin-induced hypothalamic AMP-kinase signalling and food intake
    (2012)
    Stevanovic, Darko (25226966200)
    ;
    Janjetovic, Kristina (35332184000)
    ;
    Misirkic, Maja (35332620200)
    ;
    Vucicevic, Ljubica (35333082000)
    ;
    Sumarac-Dumanovic, Mirjana (7801558773)
    ;
    Micic, Dragan (7006038410)
    ;
    Starcevic, Vesna (7005374307)
    ;
    Trajkovic, Vladimir (7004516866)
    Background/Aims: The antihyperglycaemic drug metformin reduces food consumption through mechanisms that are not fully elucidated. The present study investigated the effects of intracerebroventricular administration of metformin on food intake and hypothalamic appetite-regulating signalling pathways induced by the orexigenic peptide ghrelin. Methods: Rats were injected intracerebroventricularly with ghrelin (5 μg), metformin (50, 100 or 200 μg), 5-amino-imidazole-4-carboxamide 1-β-D-ribofuranoside (AICAR, 25 μg) and L-leucine (1 μg) in different combinations. Food intake was monitored during the next 4 h. Hypothalamic activation of AMP-activated protein kinase (AMPK), acetyl-CoA carboxylase (ACC), regulatory-associated protein of mTOR (Raptor), mammalian target of rapamycin (mTOR) and p70 S6 kinase 1 (S6K) after 1 h of treatment was analysed by immunoblotting. Results: Metformin suppressed the increase in food consumption induced by intracerebroventricular ghrelin in a dose-dependent manner. Ghrelin increased phosphorylation of hypothalamic AMPK and its targets ACC and Raptor, which was associated with the reduced phosphorylation of mTOR. The mTOR substrate, S6K, was activated by intracerebroventricular ghrelin despite the inhibition of mTOR. Metformin treatment blocked ghrelin-induced activation of hypothalamic AMPK/ACC/Raptor and restored mTOR activity without affecting S6K phosphorylation. Metformin also reduced food consumption induced by the AMPK activator AICAR while the ghrelin-triggered food intake was inhibited by the mTOR activator L-leucine. Conclusion: Metformin could reduce food intake by preventing ghrelin-induced AMPK signalling and mTOR inhibition in the hypotalamus. Copyright © 2012 S. Karger AG, Basel.
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    Intracerebroventricular administration of metformin inhibits ghrelin-induced hypothalamic AMP-kinase signalling and food intake
    (2012)
    Stevanovic, Darko (25226966200)
    ;
    Janjetovic, Kristina (35332184000)
    ;
    Misirkic, Maja (35332620200)
    ;
    Vucicevic, Ljubica (35333082000)
    ;
    Sumarac-Dumanovic, Mirjana (7801558773)
    ;
    Micic, Dragan (7006038410)
    ;
    Starcevic, Vesna (7005374307)
    ;
    Trajkovic, Vladimir (7004516866)
    Background/Aims: The antihyperglycaemic drug metformin reduces food consumption through mechanisms that are not fully elucidated. The present study investigated the effects of intracerebroventricular administration of metformin on food intake and hypothalamic appetite-regulating signalling pathways induced by the orexigenic peptide ghrelin. Methods: Rats were injected intracerebroventricularly with ghrelin (5 μg), metformin (50, 100 or 200 μg), 5-amino-imidazole-4-carboxamide 1-β-D-ribofuranoside (AICAR, 25 μg) and L-leucine (1 μg) in different combinations. Food intake was monitored during the next 4 h. Hypothalamic activation of AMP-activated protein kinase (AMPK), acetyl-CoA carboxylase (ACC), regulatory-associated protein of mTOR (Raptor), mammalian target of rapamycin (mTOR) and p70 S6 kinase 1 (S6K) after 1 h of treatment was analysed by immunoblotting. Results: Metformin suppressed the increase in food consumption induced by intracerebroventricular ghrelin in a dose-dependent manner. Ghrelin increased phosphorylation of hypothalamic AMPK and its targets ACC and Raptor, which was associated with the reduced phosphorylation of mTOR. The mTOR substrate, S6K, was activated by intracerebroventricular ghrelin despite the inhibition of mTOR. Metformin treatment blocked ghrelin-induced activation of hypothalamic AMPK/ACC/Raptor and restored mTOR activity without affecting S6K phosphorylation. Metformin also reduced food consumption induced by the AMPK activator AICAR while the ghrelin-triggered food intake was inhibited by the mTOR activator L-leucine. Conclusion: Metformin could reduce food intake by preventing ghrelin-induced AMPK signalling and mTOR inhibition in the hypotalamus. Copyright © 2012 S. Karger AG, Basel.
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    Modulation of tumor necrosis factor-mediated cell death by fullerenes
    (2008)
    Harhaji, Ljubica (6507652139)
    ;
    Isakovic, Aleksandra (57202555421)
    ;
    Vucicevic, Ljubica (35333082000)
    ;
    Janjetovic, Kristina (35332184000)
    ;
    Misirkic, Maja (35332620200)
    ;
    Markovic, Zoran (34968401700)
    ;
    Todorovic-Markovic, Biljana (6602608361)
    ;
    Nikolic, Nadezda (12809125700)
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    Vranjes-Djuric, Sanja (12809584300)
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    Nikolic, Zoran (7006320528)
    ;
    Trajkovic, Vladimir (7004516866)
    Purpose. The fullerene (C60/C70 mixture-C 60/70) nanocrystalline suspension prepared by solvent exchange method using tetrahydrofyran (THF/nC60/70) and polyhydroxylated C 60/70 [C60/70(OH)n] were compared for their ability to modulate cytotoxicity of the proinflammatory cytokine tumor necrosis factor (TNF). Materials and Methods. TNF-induced cytotoxicity was assessed in L929 fibrosarcoma cells by crystal violet assay. The type of cell death (apoptosis/necrosis), production of reactive oxygen species, mitochondrial depolarization and caspase activation were determined by flow cytometry using the appropriate reporter dyes. Results. THF/nC60/70 augmented, while C60/70(OH) n reduced the cytotoxicity of TNF. The numbers of cells undergoing apoptosis/necrosis, as well as of those displaying the activation of apoptosis-inducing enzymes of caspase family, were respectively increased or reduced by THF/nC60/70 or C60/70(OH) n. The antioxidant N-acetylcysteine and mitochondrial permeability transition inhibitor cyclosporin A each partly blocked the cytotoxic action of TNF, indicating the involvement of oxidative stress and mitochondrial dysfunction in the TNF cytotoxicity. Accordingly, THF/nC60/70 or C60/70(OH)n potentiated or suppressed, respectively, TNF-triggered oxidative stress and mitochondrial depolarization. Conclusion. The ability of different fullerene preparations to modulate TNF-induced oxidative stress and subsequent cell death suggests their potential value in the TNF-based cancer therapy or prevention of TNF-dependent tissue damage. © 2007 Springer Science+Business Media, LLC.
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    Modulation of tumor necrosis factor-mediated cell death by fullerenes
    (2008)
    Harhaji, Ljubica (6507652139)
    ;
    Isakovic, Aleksandra (57202555421)
    ;
    Vucicevic, Ljubica (35333082000)
    ;
    Janjetovic, Kristina (35332184000)
    ;
    Misirkic, Maja (35332620200)
    ;
    Markovic, Zoran (34968401700)
    ;
    Todorovic-Markovic, Biljana (6602608361)
    ;
    Nikolic, Nadezda (12809125700)
    ;
    Vranjes-Djuric, Sanja (12809584300)
    ;
    Nikolic, Zoran (7006320528)
    ;
    Trajkovic, Vladimir (7004516866)
    Purpose. The fullerene (C60/C70 mixture-C 60/70) nanocrystalline suspension prepared by solvent exchange method using tetrahydrofyran (THF/nC60/70) and polyhydroxylated C 60/70 [C60/70(OH)n] were compared for their ability to modulate cytotoxicity of the proinflammatory cytokine tumor necrosis factor (TNF). Materials and Methods. TNF-induced cytotoxicity was assessed in L929 fibrosarcoma cells by crystal violet assay. The type of cell death (apoptosis/necrosis), production of reactive oxygen species, mitochondrial depolarization and caspase activation were determined by flow cytometry using the appropriate reporter dyes. Results. THF/nC60/70 augmented, while C60/70(OH) n reduced the cytotoxicity of TNF. The numbers of cells undergoing apoptosis/necrosis, as well as of those displaying the activation of apoptosis-inducing enzymes of caspase family, were respectively increased or reduced by THF/nC60/70 or C60/70(OH) n. The antioxidant N-acetylcysteine and mitochondrial permeability transition inhibitor cyclosporin A each partly blocked the cytotoxic action of TNF, indicating the involvement of oxidative stress and mitochondrial dysfunction in the TNF cytotoxicity. Accordingly, THF/nC60/70 or C60/70(OH)n potentiated or suppressed, respectively, TNF-triggered oxidative stress and mitochondrial depolarization. Conclusion. The ability of different fullerene preparations to modulate TNF-induced oxidative stress and subsequent cell death suggests their potential value in the TNF-based cancer therapy or prevention of TNF-dependent tissue damage. © 2007 Springer Science+Business Media, LLC.
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    Therapeutic improvement of glucoregulation in newly diagnosed type 2 diabetes patients is associated with a reduction of IL-17 levels
    (2013)
    Sumarac-Dumanovic, Mirjana (7801558773)
    ;
    Jeremic, Danka (37047187300)
    ;
    Pantovic, Aleksandar (36601215300)
    ;
    Janjetovic, Kristina (35332184000)
    ;
    Stamenkovic-Pejkovic, Danica (24382126100)
    ;
    Cvijovic, Goran (6507040974)
    ;
    Stevanovic, Darko (25226966200)
    ;
    Micic, Dragan (7006038410)
    ;
    Trajkovic, Vladimir (7004516866)
    We explored the effect of therapeutic glucoregulation on the blood levels of proinflammatory T helper (Th)17 cytokines interleukin (IL)-17 and IL-23, and Th1 cytokines interferon (IFN)-γ and IL-12 in newly diagnosed type 2 diabetes patients. The investigated group consisted of 23 subjects (17 men and 6 women, age 26-64). The cytokine serum levels, glycated hemoglobin (HbA1c) as a marker of glucoregulation, homeostasis model assessment index as a measure of insulin resistance (HOMA-IR), and body mass index (BMI) were determined before and after 12 weeks of therapy consisting of standard lifestyle modification and metformin (1000. mg b.i.d.). The levels of Th17 and Th1 cytokines before treatment did not correlate with age, BMI or HOMA-IR. The patients with poor glucoregulation (HbA1c. >. 7%, n= 12), compared to those with good glucoregulation (HbA1c. ≤. 7%, n= 11), had higher serum levels of Th17 and Th1 cytokines, but only the differences in IL-17 (median 21.2. pg/ml vs. 4.8. pg/ml) and IFN-γ 5 (0.6. pg/ml vs. 27.7. pg/ml) reached statistical significance (p= 0.003 and p= 0.012, respectively). The reduction of HbA1c values (from 8.6 to 5.9%, p= 0.000) observed upon treatment in patients with poor glucoregulation was associated with a significant decrease in the concentration of IL-17 (from 21.2 to 12.9. pg/ml, p= 0.020), but not IFN-γ (50.6 vs. 52.3, p= 0.349). These data indicate that therapeutic improvement of glucoregulation might contribute to a reduction of IL-17 levels in newly diagnosed type 2 diabetes patients. © 2013 Elsevier GmbH.
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    Publication
    Therapeutic improvement of glucoregulation in newly diagnosed type 2 diabetes patients is associated with a reduction of IL-17 levels
    (2013)
    Sumarac-Dumanovic, Mirjana (7801558773)
    ;
    Jeremic, Danka (37047187300)
    ;
    Pantovic, Aleksandar (36601215300)
    ;
    Janjetovic, Kristina (35332184000)
    ;
    Stamenkovic-Pejkovic, Danica (24382126100)
    ;
    Cvijovic, Goran (6507040974)
    ;
    Stevanovic, Darko (25226966200)
    ;
    Micic, Dragan (7006038410)
    ;
    Trajkovic, Vladimir (7004516866)
    We explored the effect of therapeutic glucoregulation on the blood levels of proinflammatory T helper (Th)17 cytokines interleukin (IL)-17 and IL-23, and Th1 cytokines interferon (IFN)-γ and IL-12 in newly diagnosed type 2 diabetes patients. The investigated group consisted of 23 subjects (17 men and 6 women, age 26-64). The cytokine serum levels, glycated hemoglobin (HbA1c) as a marker of glucoregulation, homeostasis model assessment index as a measure of insulin resistance (HOMA-IR), and body mass index (BMI) were determined before and after 12 weeks of therapy consisting of standard lifestyle modification and metformin (1000. mg b.i.d.). The levels of Th17 and Th1 cytokines before treatment did not correlate with age, BMI or HOMA-IR. The patients with poor glucoregulation (HbA1c. >. 7%, n= 12), compared to those with good glucoregulation (HbA1c. ≤. 7%, n= 11), had higher serum levels of Th17 and Th1 cytokines, but only the differences in IL-17 (median 21.2. pg/ml vs. 4.8. pg/ml) and IFN-γ 5 (0.6. pg/ml vs. 27.7. pg/ml) reached statistical significance (p= 0.003 and p= 0.012, respectively). The reduction of HbA1c values (from 8.6 to 5.9%, p= 0.000) observed upon treatment in patients with poor glucoregulation was associated with a significant decrease in the concentration of IL-17 (from 21.2 to 12.9. pg/ml, p= 0.020), but not IFN-γ (50.6 vs. 52.3, p= 0.349). These data indicate that therapeutic improvement of glucoregulation might contribute to a reduction of IL-17 levels in newly diagnosed type 2 diabetes patients. © 2013 Elsevier GmbH.

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