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  • combination chemotherapy  (1)
  • invasion  (1)
  • 1
    ISSN: 1573-0646
    Keywords: harringtonine ; combination chemotherapy
    Source: Springer Online Journal Archives 1860-2000
    Topics: Chemistry and Pharmacology , Medicine
    Notes: Summary Harringtonine (HT) is a new antitumor agent reported to be active in patients with leukemia and lymphoma. The interaction of HT with various antitumor agents was studied in vitro using a human acute myelogenous leukemia cell line KG-1. For the analysis of the drug-drug interaction at the cellular level, Steel proposed the concept of an envelope of additivity. Using this concept, the effect of a two drug combination can be classified as supraadditive (enhancement of the effect), non-interactive (additive), subadditive, and protective (antagonistic). Combination of HT and cytosine arabinoside or HT and dexamethasone produced only additive effects. Combination of HT and methotrexate was subadditive. For HT plus adriamycin or HT plus 5-fluorouracil, data points indicated both subadditive and protective interaction. HT plus acivicin or HT plus L-asparaginase combinations were found to be protective of each other. None of the seven agents produced supraadditive interaction. These results may provide the basis for selecting sequential rather than concurrent combinations which include HT for the treatment of leukemia in man.
    Type of Medium: Electronic Resource
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  • 2
    ISSN: 1573-7276
    Keywords: differentiation ; invasion ; neuroblastoma ; N-myc ; vitamin D3 analogs
    Source: Springer Online Journal Archives 1860-2000
    Topics: Medicine
    Notes: The physiologically active metabolite of vitamin D3, 1,25-dihydroxycholecalciferol (D3), plays an important role in embryonic development and cell differentiation. Previously, we have demonstrated that D3 significantly induces differentiation and inhibits growth of LA-N-5 human neuroblastoma cells at concentrations of 24 nm and higher. In this study, we compared two D3 analogs, 20-epi-22oxa-25a,26a,27a-tri-homo-1,25-D3 (KH 1060) and 1,25-dihydroxy-22,24-diene, 24,26,27-trihomo (EB 1089), with D3 with respect to their effects on differentiation and growth inhibition. We report an inhibition of growth by 45–55% in cells treated with 0.24 nm EB 1089 and 0.24 nm KH 1060, similar to that seen in cells treated with 24 nM D3. At these concentrations, both EB 1089 and KH 1060 stimulate the differentiation of LA-N-5 neuroblastoma cells as shown by increased neurite outgrowth, decreased N-myc expression and decreased invasiveness in vitro. An increase in acetylcholinesterase activity, a functional measure of differentiation, was also exhibited. Previous reports have shown that treatment doses needed to achieve 24 nm serum concentrations of D3 in patients would result in hypercalcemia. EB 1089 and KH 1060 can cause the same in vitro effects on LA-N-5 human neuroblastoma cells at 1/100 of the concentration required of D3. These data suggest a potential clinical efficacy of EB 1089 and KH 1060 as biological response modifiers.
    Type of Medium: Electronic Resource
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