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Browsing by Author "Ristic, Slobodan (35300292100)"

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    Publication
    Reversal of FLT3 mutational status and sustained expression of npm1 mutation in paired presentation, and relapse samples in a patient with acute myeloid leukemia
    (2012)
    Radojkovic, Milica (57197430605)
    ;
    Tosic, Natasa (15729686900)
    ;
    Colovic, Natasa (6701607753)
    ;
    Ristic, Slobodan (35300292100)
    ;
    Pavlovic, Sonja (7006514877)
    ;
    Colovic, Milica (21639151700)
    We report a case of de novo acute myeloid leukemia (AML) with unstable FLT3 gene mutations and stable NPM1 mutation. FLT3/D835 and NPM1 (Type A) mutations were detected upon diagnosis. During the relapse, the FLT3/D835 mutation changed to an FLT3/ITD mutation while the NPM1 (Type A) mutation was retained. Cytogenetic analyses showed the normal karyotype at diagnosis and relapse. Our findings raise interesting questions about the significance of these mutations in the leukemogenic process, about their stability during the evolution of the disease, and regarding the selection of appropriate molecular markers for the monitoring of minimal residual disease. © 2012 by the Association of Clinical Scientists, Inc.
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    Publication
    Reversal of FLT3 mutational status and sustained expression of npm1 mutation in paired presentation, and relapse samples in a patient with acute myeloid leukemia
    (2012)
    Radojkovic, Milica (57197430605)
    ;
    Tosic, Natasa (15729686900)
    ;
    Colovic, Natasa (6701607753)
    ;
    Ristic, Slobodan (35300292100)
    ;
    Pavlovic, Sonja (7006514877)
    ;
    Colovic, Milica (21639151700)
    We report a case of de novo acute myeloid leukemia (AML) with unstable FLT3 gene mutations and stable NPM1 mutation. FLT3/D835 and NPM1 (Type A) mutations were detected upon diagnosis. During the relapse, the FLT3/D835 mutation changed to an FLT3/ITD mutation while the NPM1 (Type A) mutation was retained. Cytogenetic analyses showed the normal karyotype at diagnosis and relapse. Our findings raise interesting questions about the significance of these mutations in the leukemogenic process, about their stability during the evolution of the disease, and regarding the selection of appropriate molecular markers for the monitoring of minimal residual disease. © 2012 by the Association of Clinical Scientists, Inc.
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    Publication
    The NO-modified HIV protease inhibitor as a valuable drug for hematological malignancies: Role of p70S6K
    (2015)
    Maksimovic-Ivanic, Danijela (6507584634)
    ;
    Mojic, Marija (24179387300)
    ;
    Bulatovic, Mirna (55008945300)
    ;
    Radojkovic, Milica (57197430605)
    ;
    Kuzmanovic, Milos (6602721300)
    ;
    Ristic, Slobodan (35300292100)
    ;
    Stosic-Grujicic, Stanislava (7004253020)
    ;
    Miljkovic, Djordje (7006524033)
    ;
    Cavalli, Eugenio (56545345800)
    ;
    Libra, Massimo (6603852432)
    ;
    Fagone, Paolo (8748540600)
    ;
    McCubrey, James (7004993472)
    ;
    Nicoletti, Ferdinando (55335677000)
    ;
    Mijatovic, Sanja (6508347659)
    Covalent attachment of NO to the first approved HIV protease inhibitor Saquinavir (Saq-NO) expands the therapeutic potential of the original drug. Apart from retained antiviral activity, the modified drug exerts strong antitumor effects and lower toxicity. In the present study, we have evaluated the sensitivity of different hematological malignancies to Saq-NO. Saq-NO efficiently diminished the viability of Jurkat, Raji, HL-60 and K562 cells. While Jurkat and Raji cells (established from pediatric patients) displayed abrogated proliferative potential, HL-60 and K652 cells (originated from adults) exposed to Saq-NO treatment underwent caspase dependent apoptosis. In addition, similar sensitivity to Saq-NO was observed in mononuclear blood cells obtained from pediatric patients with acute lymphoblastic leukemia (ALL) and adult patients with acute myeloid leukemia (AML). Western blot analysis indicated p70S6 kinase as a possible intracellular target of Saq-NO action. Moreover, the addition of a NO moiety to Lopinavir resulted in improved antitumor potential as compared to the parental compound, suggesting that NO-derived HIV protease inhibitors are a potential new source of anticancer drugs with unique mode of action. © 2015 Elsevier Ltd.
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    Publication
    The NO-modified HIV protease inhibitor as a valuable drug for hematological malignancies: Role of p70S6K
    (2015)
    Maksimovic-Ivanic, Danijela (6507584634)
    ;
    Mojic, Marija (24179387300)
    ;
    Bulatovic, Mirna (55008945300)
    ;
    Radojkovic, Milica (57197430605)
    ;
    Kuzmanovic, Milos (6602721300)
    ;
    Ristic, Slobodan (35300292100)
    ;
    Stosic-Grujicic, Stanislava (7004253020)
    ;
    Miljkovic, Djordje (7006524033)
    ;
    Cavalli, Eugenio (56545345800)
    ;
    Libra, Massimo (6603852432)
    ;
    Fagone, Paolo (8748540600)
    ;
    McCubrey, James (7004993472)
    ;
    Nicoletti, Ferdinando (55335677000)
    ;
    Mijatovic, Sanja (6508347659)
    Covalent attachment of NO to the first approved HIV protease inhibitor Saquinavir (Saq-NO) expands the therapeutic potential of the original drug. Apart from retained antiviral activity, the modified drug exerts strong antitumor effects and lower toxicity. In the present study, we have evaluated the sensitivity of different hematological malignancies to Saq-NO. Saq-NO efficiently diminished the viability of Jurkat, Raji, HL-60 and K562 cells. While Jurkat and Raji cells (established from pediatric patients) displayed abrogated proliferative potential, HL-60 and K652 cells (originated from adults) exposed to Saq-NO treatment underwent caspase dependent apoptosis. In addition, similar sensitivity to Saq-NO was observed in mononuclear blood cells obtained from pediatric patients with acute lymphoblastic leukemia (ALL) and adult patients with acute myeloid leukemia (AML). Western blot analysis indicated p70S6 kinase as a possible intracellular target of Saq-NO action. Moreover, the addition of a NO moiety to Lopinavir resulted in improved antitumor potential as compared to the parental compound, suggesting that NO-derived HIV protease inhibitors are a potential new source of anticancer drugs with unique mode of action. © 2015 Elsevier Ltd.

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