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Synthesis and Evaluation of Haloacetyl, alpha-Bromoacryloyl and Nitrooxyacetyl Benzo[b]furan and Benzo[b]thiophene Derivatives as Potent Antiproliferative Agents Against Leukemia L1210 and K562 Cells

  1. Author:
    Romagnoli, R.
    Baraldi, P. G.
    Carrion, M. D.
    Cara, C. L.
    Casolari, A.
    Hamel, E.
    Fabbri, E.
    Gambari, R.
  2. Author Address

    [Romagnoli, Romeo; Baraldi, Pier Giovanni; Carrion, Maria Dora; Cara, Carlota Lopez; Casolari, Alberto] Univ Ferrara, Dipartimento Sci Farmaceut, I-44100 Ferrara, Italy. [Fabbri, Enrica; Gambari, Roberto] Univ Ferrara, Dipartimento Biochim & Biol Mol, I-44100 Ferrara, Italy. [Hamel, Ernest] NCI, Screening Tecnol Branch, Dev Therapeut Program, Div Canc Treatment & Diag,NIH, Frederick, MD 21702 USA.;Romagnoli, R, Univ Ferrara, Dipartimento Sci Farmaceut, Via Fossato Mortara 17-19, I-44100 Ferrara, Italy.;rmr@unife.it
    1. Year: 2010
    2. Date: Aug
  1. Journal: Letters in Drug Design & Discovery
    1. 7
    2. 7
    3. Pages: 476-486
  2. Type of Article: Article
  3. ISSN: 1570-1808
  1. Abstract:

    Identification of novel and selective anticancer agents remains an important and challenging goal in pharmacological research. In search of new compounds with strong antiproliferative activity and simple molecular structure, we have synthesized three different series of compounds in which different substituents were linked to the 3-amino position of the 2-(3', 4', 5'-trimethoxybenzoyl)-benzo[b]furan or benzo[b]thiophene ring system. These substituents, corresponding to acetyl/haloacetyl, alpha-bromoacryloyl and nitrooxyacetyl moieties had different electrophilic properties. The benzoheterocycle parent structures were selected because of their reported bioactivities. Compounds bearing a methoxy group at the 6-position of the benzo[b]furan skeleton, were identified as potent antiproliferative agents against the human chronic myelogenous K562 and murine L1210 leukemia cell lines. Comparison of positional isomers indicated that moving the methoxy group from the 6- to the 5- or 7-position yielded inactive compounds. The effects of a selected series of compounds on cell cycle progression correlated well with their strong antiproliferative activity and inhibition of tubulin polymerization. The analysis of structure-activity relationships observed in the series of compounds described here may represent a platform for the design of more active molecules.

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External Sources

  1. WOS: 000280474100001

Library Notes

  1. Fiscal Year: FY2009-2010
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