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Browsing by Author "Rankov, Aleksandra Divac (56253288300)"

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    SMAD4 gene promoter mutations in patients with thyroid tumors
    (2015)
    Nikolic, Aleksandra (57194842918)
    ;
    Ristanovic, Momcilo (56357953700)
    ;
    Zivaljevic, Vladan (6701787012)
    ;
    Rankov, Aleksandra Divac (56253288300)
    ;
    Radojkovic, Dragica (6602844151)
    ;
    Paunovic, Ivan (55990696700)
    As a key component of the transforming growth factor beta (TGFB) pathway, which regulates the expression of thyroid-specific genes, tumor suppressor SMAD4 is crucial for thyroid development and function. Aberrant expression of SMAD4 in thyroid tumor tissue was reported and mutations affecting the coding region have been detected, but a potential role of mutations in SMAD4 gene regulatory regions remains unexplored. The aim of this study was to analyze SMAD4 gene promoters in thyroid tumors. A total of 76 thyroidectomy specimens were studied, including 42 malignant and 34 benign tumors. The presence of mutations in four SMAD4 gene promoters was analyzed in thyroid tumor tissue and peripheral blood by PCR and DNA sequencing. The expression and intracellular localization of endogenous SMAD4 protein in selected tumor samples was studied by immunostaining and confocal microscopy. Of three novel variants detected, two were within promoter A (-. 204T/C and. 5C/T) and one in promoter D (-. 180delA). Unlike somatic mutations previously detected in the nearby region, germline mutation. 180delA in promoter D doesn't appear to affect SMAD4 expression in the thyroid tumor tissue. However, all newly detected SMAD4 promoter variants affect predicted binding sites of transcription factors involved in cell cycle regulation and should be further characterized functionally. Although not directly involved in carcinogenesis, detected variants may alter SMAD4 transcriptional regulation to some extent. Considering that dosage dependence is of great importance for the role of SMAD4 protein as a tumor suppressor, potential clinical significance of SMAD4 gene promoter mutations is worth further investigation. © 2015 Elsevier Inc.
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    Publication
    SMAD4 gene promoter mutations in patients with thyroid tumors
    (2015)
    Nikolic, Aleksandra (57194842918)
    ;
    Ristanovic, Momcilo (56357953700)
    ;
    Zivaljevic, Vladan (6701787012)
    ;
    Rankov, Aleksandra Divac (56253288300)
    ;
    Radojkovic, Dragica (6602844151)
    ;
    Paunovic, Ivan (55990696700)
    As a key component of the transforming growth factor beta (TGFB) pathway, which regulates the expression of thyroid-specific genes, tumor suppressor SMAD4 is crucial for thyroid development and function. Aberrant expression of SMAD4 in thyroid tumor tissue was reported and mutations affecting the coding region have been detected, but a potential role of mutations in SMAD4 gene regulatory regions remains unexplored. The aim of this study was to analyze SMAD4 gene promoters in thyroid tumors. A total of 76 thyroidectomy specimens were studied, including 42 malignant and 34 benign tumors. The presence of mutations in four SMAD4 gene promoters was analyzed in thyroid tumor tissue and peripheral blood by PCR and DNA sequencing. The expression and intracellular localization of endogenous SMAD4 protein in selected tumor samples was studied by immunostaining and confocal microscopy. Of three novel variants detected, two were within promoter A (-. 204T/C and. 5C/T) and one in promoter D (-. 180delA). Unlike somatic mutations previously detected in the nearby region, germline mutation. 180delA in promoter D doesn't appear to affect SMAD4 expression in the thyroid tumor tissue. However, all newly detected SMAD4 promoter variants affect predicted binding sites of transcription factors involved in cell cycle regulation and should be further characterized functionally. Although not directly involved in carcinogenesis, detected variants may alter SMAD4 transcriptional regulation to some extent. Considering that dosage dependence is of great importance for the role of SMAD4 protein as a tumor suppressor, potential clinical significance of SMAD4 gene promoter mutations is worth further investigation. © 2015 Elsevier Inc.
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    Src inhibitors pyrazolo[3,4-d]pyrimidines, si306 and pro-si306, inhibit focal adhesion kinase and suppress human glioblastoma invasion in vitro and in vivo
    (2020)
    Nešović, Marija (57218243131)
    ;
    Rankov, Aleksandra Divac (56253288300)
    ;
    Podolski-Renić, Ana (36669235200)
    ;
    Nikolić, Igor (23474764900)
    ;
    Tasić, Goran (14520096100)
    ;
    Mancini, Arianna (57194422143)
    ;
    Schenone, Silvia (7003607321)
    ;
    Pešić, Milica (36768679400)
    ;
    Dinić, Jelena (53986060400)
    Glioblastoma (GBM), as the most aggressive brain tumor, displays a high expression of Src tyrosine kinase, which is involved in the survival, migration, and invasiveness of tumor cells. Thus, Src emerged as a potential target for GBM therapy. The effects of Src inhibitors pyrazolo[3,4-d]pyrimidines, Si306 and its prodrug pro-Si306 were investigated in human GBM cell lines (U87 and U87-TxR) and three primary GBM cell cultures. Primary GBM cells were more resistant to Si306 and pro-Si306 according to the 3-(4,5-Dimethyl-2-thiazolyl)-2,5-diphenyl-2H-tetrazolium bromide (MTT) assay. However, the ability of all GBM cells to degrade the extracellular matrix was considerably compromised after Si306 and pro-Si306 applications. Besides reducing the phosphorylation of Src and its downstream signaling pathway components, both compounds decreased the phosphorylated form of focal adhesion kinase (FAK) and epidermal growth factor receptor (EGFR) expression, showing the potential to suppress the aggressiveness of GBM. In vivo, Si306 and pro-Si306 displayed an anti-invasive effect against U87 xenografts in the zebrafish embryo model. Considering that Si306 and pro-Si306 are able to cross the blood–brain barrier and suppress the spread of GBM cells, we anticipate their clinical testing in the near future. Moreover, the prodrug showed similar efficacy to the drug, implying the rationality of its use in clinical settings. © 2020 by the authors. Licensee MDPI, Basel, Switzerland.
  • Loading...
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    Publication
    Src inhibitors pyrazolo[3,4-d]pyrimidines, si306 and pro-si306, inhibit focal adhesion kinase and suppress human glioblastoma invasion in vitro and in vivo
    (2020)
    Nešović, Marija (57218243131)
    ;
    Rankov, Aleksandra Divac (56253288300)
    ;
    Podolski-Renić, Ana (36669235200)
    ;
    Nikolić, Igor (23474764900)
    ;
    Tasić, Goran (14520096100)
    ;
    Mancini, Arianna (57194422143)
    ;
    Schenone, Silvia (7003607321)
    ;
    Pešić, Milica (36768679400)
    ;
    Dinić, Jelena (53986060400)
    Glioblastoma (GBM), as the most aggressive brain tumor, displays a high expression of Src tyrosine kinase, which is involved in the survival, migration, and invasiveness of tumor cells. Thus, Src emerged as a potential target for GBM therapy. The effects of Src inhibitors pyrazolo[3,4-d]pyrimidines, Si306 and its prodrug pro-Si306 were investigated in human GBM cell lines (U87 and U87-TxR) and three primary GBM cell cultures. Primary GBM cells were more resistant to Si306 and pro-Si306 according to the 3-(4,5-Dimethyl-2-thiazolyl)-2,5-diphenyl-2H-tetrazolium bromide (MTT) assay. However, the ability of all GBM cells to degrade the extracellular matrix was considerably compromised after Si306 and pro-Si306 applications. Besides reducing the phosphorylation of Src and its downstream signaling pathway components, both compounds decreased the phosphorylated form of focal adhesion kinase (FAK) and epidermal growth factor receptor (EGFR) expression, showing the potential to suppress the aggressiveness of GBM. In vivo, Si306 and pro-Si306 displayed an anti-invasive effect against U87 xenografts in the zebrafish embryo model. Considering that Si306 and pro-Si306 are able to cross the blood–brain barrier and suppress the spread of GBM cells, we anticipate their clinical testing in the near future. Moreover, the prodrug showed similar efficacy to the drug, implying the rationality of its use in clinical settings. © 2020 by the authors. Licensee MDPI, Basel, Switzerland.

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