Browsing by Author "Harhaji, Ljubica (6507652139)"
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Publication Acidosis affects tumor cell survival through modulation of nitric oxide release(2006) ;Harhaji, Ljubica (6507652139) ;Popadic, Dusan (6602255798) ;Miljkovic, Djordje (7006524033) ;Cvetkovic, Ivana (56186289000) ;Isakovic, Aleksandra (57202555421)Trajkovic, Vladimir (7004516866)The influence of environmental pH on the production of tumoricidal free radical nitric oxide (NO) was investigated in mouse fibrosarcoma L929 and rat glioma C6 cell lines. A combination of IFN-γ and IL-1 induced a significant NO release and subsequent reduction of cell viability in tumor cell lines. Acidification of cell culture medium reduced tumor cell NO production in a pH-dependent manner. While the inhibitory effect of acidosis on NO production in C6 cells was associated with a further decrease in cell viability, it completely rescued L929 cells from NO-dependent apoptotic and necrotic death. Acidic pH diminished IFN-γ+ IL-1-induced expression of inducible NO synthase (iNOS) mRNA and protein, and abolished the activation of iNOS transcription factor IRF-1 in L929 cells. Moreover, extracellular acidosis significantly impaired cytokine-induced phosphorylation of MAP kinase p44/42 (ERK1/2) and subsequent expression of transcription factor c-Fos in L929 cells. Finally, mild acidosis (pH 6.8) augmented, while severe acidosis (pH 6.0) reduced, IFN-γ-induced iNOS activation/NO release and NO-dependent anticancer activity of rat and mouse macrophages. Taken together, our findings indicate that modulation of macrophage and tumor cell iNOS by an acidic microenvironment might influence the progression of NO-sensitive solid tumors. © 2005 Elsevier Inc. All rights reserved. - Some of the metrics are blocked by yourconsent settings
Publication Acidosis affects tumor cell survival through modulation of nitric oxide release(2006) ;Harhaji, Ljubica (6507652139) ;Popadic, Dusan (6602255798) ;Miljkovic, Djordje (7006524033) ;Cvetkovic, Ivana (56186289000) ;Isakovic, Aleksandra (57202555421)Trajkovic, Vladimir (7004516866)The influence of environmental pH on the production of tumoricidal free radical nitric oxide (NO) was investigated in mouse fibrosarcoma L929 and rat glioma C6 cell lines. A combination of IFN-γ and IL-1 induced a significant NO release and subsequent reduction of cell viability in tumor cell lines. Acidification of cell culture medium reduced tumor cell NO production in a pH-dependent manner. While the inhibitory effect of acidosis on NO production in C6 cells was associated with a further decrease in cell viability, it completely rescued L929 cells from NO-dependent apoptotic and necrotic death. Acidic pH diminished IFN-γ+ IL-1-induced expression of inducible NO synthase (iNOS) mRNA and protein, and abolished the activation of iNOS transcription factor IRF-1 in L929 cells. Moreover, extracellular acidosis significantly impaired cytokine-induced phosphorylation of MAP kinase p44/42 (ERK1/2) and subsequent expression of transcription factor c-Fos in L929 cells. Finally, mild acidosis (pH 6.8) augmented, while severe acidosis (pH 6.0) reduced, IFN-γ-induced iNOS activation/NO release and NO-dependent anticancer activity of rat and mouse macrophages. Taken together, our findings indicate that modulation of macrophage and tumor cell iNOS by an acidic microenvironment might influence the progression of NO-sensitive solid tumors. © 2005 Elsevier Inc. All rights reserved. - Some of the metrics are blocked by yourconsent settings
Publication 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. - Some of the metrics are blocked by yourconsent settings
Publication 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.
