Kooperativer Bibliotheksverbund

Berlin Brandenburg

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  • 1
    In: International Journal of Oncology, 12/01/2004
    ISSN: 1019-6439
    E-ISSN: 1791-2423
    Source: CrossRef
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  • 2
    Language: English
    In: International Journal of Oncology, December 2004, Vol.25(6), pp.1795-1799
    Description: Valproic acid (VPA) as a differentiation inducing anti-neoplastic substance is currently tested in solid tumour and leukaemia patients. Previously, we were able to show that the anti-cancer activity of VPA was synergistically increased by interferon-α (IFN-α) in Be(2)-C neuroblastoma (NB) cells. Now, we studied the effects of VPA in combination with IFN-α on two other NB cell lines. UKF-NB-2 and UKF-NB-3 cell growth was synergistically inhibited by VPA and IFN-α. Cell cycle investigations revealed massive accumulation of cells in G0/G1-phase after a combined treatment with VPA and IFN-α. The VPA-induced accumulation of acetylated histones in NB cell nuclei that indicates inhibition of histone deacetylases was not further enhanced by the combination treatment with IFN-α. Most strikingly, VPA plus IFN-α synergistically inhibited growth of UKF-NB-3 xenograft tumours in nude mice and induced complete cures in two out of six animals, while single treatment merely inhibited tumour growth. The results of this study together with our previous report strongly encourage the clinical evaluation of VPA and IFN-α for NB patients.
    Keywords: Enzyme Inhibitors -- Pharmacology ; Interferon-Alpha -- Pharmacology ; Neuroblastoma -- Pathology ; Valproic Acid -- Pharmacology;
    ISSN: 1019-6439
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  • 3
    Language: English
    In: International Journal of Oncology, January 2002, Vol.20(1), pp.97-106
    Description: Valproic acid (VPA) has been shown to induce growth-arrest and differentiation of human neuroectodermal tumors similarly to several other fatty acids. In the present study, we show that continuous VPA treatment together with Interferon-α (INF-α) synergistically inhibited cell growth of a well-established model of neuroblastoma (NB) differentiation using the human N-myc amplified cell line BE(2)-C. Suppression of tumor growth was accompanied by morphological features of neuronal differentiation and inhibition of histone deacetylase activity. Furthermore, induction of differentiation was concomitant with altered expression of genes related to malignant phenotype such as down-regulation of N-myc, induction of bcl-2 and neural cell adhesion molecule. Production of inhibitors of angiogenesis like thrombospondin-1 and activin A was up-regulated in differentiated NB cells. Treatment with VPA alone decreased the ability of BE(2)-C cells to adhere to and penetrate human endothelium. All these effects of VPA were significantly enhanced when combined with INF-α which on its own had little or no effect. These results suggest that combination of VPA and INF-α may provide a novel therapeutic strategy for NB due to enhanced inhibition of tumor cell growth, induction of tumor differentiation and suppression of malignant biology by reduced angiogenic and decreased metastatic potentials.
    Keywords: Antineoplastic Agents -- Therapeutic Use ; Brain Neoplasms -- Drug Therapy ; Cell Differentiation -- Drug Effects ; Enzyme Inhibitors -- Therapeutic Use ; Interferon-Alpha -- Therapeutic Use ; Neuroblastoma -- Drug Therapy ; Valproic Acid -- Therapeutic Use;
    ISSN: 1019-6439
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  • 4
    In: International Journal of Oncology, 01/01/2002
    ISSN: 1019-6439
    E-ISSN: 1791-2423
    Source: CrossRef
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  • 5
    Language: English
    In: International Journal of Oncology, October 2005, Vol.27(4), pp.1029-1037
    Description: Acquisition of P-gp-mediated multidrug-resistance does not always correlate with observed malignant behavior of NB. To characterize alterations accompanying development of multidrug-resistance in NB we established two neuroblastoma cell sublines resistant to vincristine (UKF-NB-3rVCR10) and doxorubicin (UKF-NB-3rDOX20). UKF-NB-3rVCR10 and UKF-NB-3rDOX20 overexpressed functional P-gp and developed an increased malignant phenotype: presented constitutive phosphorylation of AKT, resistance to γ-irradiation, and had increased survival in serum-free medium. Inhibition of P-gp restored chemosensitivity but did not affect increased survival in serum-free medium and sensitivity to γ-irradiation. Inhibition of AKT had no influence on chemoresistance but restored sensitivity to serum starvation. Both resistant cell lines acquired additional chromosomal changes. UKF-NB-3rVCR10 cells acquired a missense P53 mutation in exon 5, an increased MYCN amplification, an enhanced adhesion to endothelium, a decreased NCAM expression, a distinctly higher clonogenicity, and an increased in vivo tumorigenicity. We conclude that acquisition of increased malignant behavior in neuroblastoma occurs concomitantly with multidrug-resistance and is P-gp-independent.
    Keywords: Drug Resistance, Multiple ; Drug Resistance, Neoplasm ; ATP Binding Cassette Transporter, Subfamily B, Member 1 -- Metabolism ; Neuroblastoma -- Pathology;
    ISSN: 1019-6439
    E-ISSN: 17912423
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  • 6
    Language: English
    In: International Journal of Oncology, November 2005, Vol.27(5), pp.1433-1440
    Description: Malignant peripheral nerve sheath tumors (MPNSTs) are aggressive soft tissue tumors arising sporadically although more frequently in patients with Neurofibromatosis type 1. Prognosis remains dismal as chemo- and radiotherapy have not been shown to be successful. The heparin-binding growth factor, Midkine (MK), is implicated in the tumorigenesis of benign and plexiform neurofibromas, and thereof arising MPNSTs. MK is mitogenic, anti-apoptotic, angiogenic and can promote tumorigenicity in several cell types. Thus, we investigated the role of MK in malignant biology and tumorigenicity in MPNSTs by stable transfection into MPNST cell lines. Overexpression of MK in the MPNST cell line, S462, increased cell viability and protected cells from apoptosis under serum deprivation, but did not induce proliferation. In addition, MK-transfected S462 cells were partially protected from vincristine-induced cell death. Conditioned medium of MK-transfected S462 cells was a potent mitogen for human umbilical venous endothelial cells. Furthermore, MK overexpression in S462 cells was accompanied by higher levels of VEGF mRNA. Yet, stable overexpression of MK in S462 as well as in ST88-14 cells was not sufficient to promote xenograft tumor growth in nude mice. However, increasing survival and enhanced angiogenic potency of MK-transfected S462 cells highlight the importance of developing specific inhibitors for MK as part of new therapeutic concepts against MPNSTs.
    Keywords: Apoptosis -- Physiology ; Cytokines -- Biosynthesis ; Neovascularization, Pathologic -- Pathology ; Nerve Sheath Neoplasms -- Genetics;
    ISSN: 1019-6439
    E-ISSN: 17912423
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  • 7
    Language: English
    In: International journal of oncology, February 2006, Vol.28(2), pp.439-46
    Description: The proteasome inhibitor bortezomib (Velcade) was recently approved for the treatment of therapy-refractive multiple myeloma and is under investigation for numerous other types of cancer. A phase I clinical trial in paediatric patients resulted in tolerable toxicity. Since the emergence of chemoresistance represents one of the major drawbacks in cancer therapy, we investigated the influence of bortezomib on multi-drug resistant human neuroblastoma cell lines characterised by P-glycoprotein expression and p53 mutation. Nanomolar concentrations of bortezomib inhibited the cell cycle and induced apoptosis in chemosensitive as well as in chemoresistant cell lines. In vivo growth of chemosensitive and chemoresistant neuroblastoma cell lines was inhibited to a similar extent. In addition, bortezomib inhibited vessel formation in neuroblastoma xenografts. These findings and the favourable toxicity profile of bortezomib in children make it reasonable to further pursue additional development of the drug for the treatment of neuroblastoma and other paediatric solid tumours.
    Keywords: Antineoplastic Agents -- Pharmacology ; Boronic Acids -- Pharmacology ; Neuroblastoma -- Prevention & Control ; Pyrazines -- Pharmacology
    ISSN: 1019-6439
    E-ISSN: 17912423
    Source: MEDLINE/PubMed (U.S. National Library of Medicine)
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  • 8
    In: International Journal of Oncology, 02/01/2006
    ISSN: 1019-6439
    E-ISSN: 1791-2423
    Source: CrossRef
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