Skip NavigationSkip to Content

Synthesis and Antitumor Molecular Mechanism of Agents Based on Amino 2-(3 ',4 ',5 '-Trimethoxybenzoyl)benzo[b]furan: Inhibition of Tubulin and Induction of Apoptosis

  1. Author:
    Romagnoli, R.
    Baraldi, P. G.
    Lopez-Cara, C.
    Cruz-Lopez, O.
    Carrion, M. D.
    Salvador, M. K.
    Bermejo, J.
    Estevez, S.
    Estevez, F.
    Balzarini, J.
    Brancale, A.
    Ricci, A.
    Chen, L. C.
    Kim, J. G.
    Hamel, E.
  2. Author Address

    [Romagnoli, R; Baraldi, PG; Lopez-Cara, C; Cruz-Lopez, O; Carrion, MD; Salvador, MK] Univ Ferrara, Dipartimento Sci Farmaceut, I-44100 Ferrara, Italy. [Bermejo, J] Univ La Laguna, Inst Canario Invest Canc, Inst Univ Bioorgan Antonio Gonzalez, Inst Prod Nat & Agrobiol CSIC, E-38206 Tenerife, Spain. [Estevez, S; Estevez, F] Univ Las Palmas Gran Canaria, Dept Bioquim, Unidad Asociada CSIC, Las Palmas Gran Canaria 35016, Spain. [Estevez, S; Estevez, F] Inst Canario Invest Canc, Las Palmas Gran Canaria 35016, Spain. [Balzarini, J] Catholic Univ Louvain, Rega Inst Med Res, Lab Virol & Chemotherapy, B-3000 Louvain, Belgium. [Brancale, A; Ricci, A] Cardiff Univ, Welsh Sch Pharm, Cardiff CF10 3XF, S Glam, Wales. [Chen, LC] VA Med Ctr, Dept Pathol, Long Beach, CA 90822 USA. [Kim, JG] Gwangju Inst Sci & Technol, Dept Informat & Commun, Kwangju 500712, South Korea. [Hamel, E] NCI, Screening Technol Branch, Dev Therapeut Program, Div Canc Treatment & Diag,NIH, Frederick, MD 21702 USA.;Romagnoli, R (reprint author), Univ Ferrara, Dipartimento Sci Farmaceut, I-44100 Ferrara, Italy;rmr@unife.it
    1. Year: 2011
    2. Date: Oct
  1. Journal: Chemmedchem
    1. 6
    2. 10
    3. Pages: 1841-1853
  2. Type of Article: Article
  3. ISSN: 1860-7179
  1. Abstract:

    Induction of apoptosis is a promising strategy that could lead to the discovery of new molecules active in cancer chemotherapy. This property is generally observed when cells are treated with agents that target microtubules, dynamic structures that play a crucial role in cell division. Small molecules such as benzo[b]furans are attractive as inhibitors of tubulin polymerization. A new class of inhibitors of tubulin polymerization based on the 2-(3',4',5'-trimethoxybenzoyl)benzo[b]furan molecular skeleton, with the amino group placed at different positions on the benzene ring, were synthesized and evaluated for antiproliferative activity, inhibition of tubulin polymerization, and cell-cycle effects. The methoxy substitution pattern on the benzene portion of the benzo[b]furan moiety played an important role in affecting antiproliferative activity. In the series of 5-amino derivatives, the greatest inhibition of cell growth occurred if the methoxy substituent is placed at the C6 position, whereas C7 substitution decreases potency. The most promising compound in this series is 2-(3', 4', 5'-trimethoxybenzoyl)-3-methyl-5-amino-6-methoxybenzo[b]furan (3h), which inhibits cancer cell growth at nanomolar concentrations (IC(50)=16-24 nm), and interacts strongly with tubulin by binding to the colchicine site. Sub-G(1) apoptotic cells in cultures of HL-60 and U937 cells were observed by flow cytometric analysis after treatment with 3h in a concentration-dependent manner. We also show that compound 3h induces apoptosis by activation of caspase-3, -8, and -9, and this is associated with cytochrome c release from mitochondria. The introduction of an alpha-bromoacryloyl group increased antiproliferative activity with respect to the parent amino derivatives.

    See More

External Sources

  1. DOI: 10.1002/cmdc.201100279
  2. WOS: 000296417000011

Library Notes

  1. Fiscal Year: FY2011-2012
NCI at Frederick

You are leaving a government website.

This external link provides additional information that is consistent with the intended purpose of this site. The government cannot attest to the accuracy of a non-federal site.

Linking to a non-federal site does not constitute an endorsement by this institution or any of its employees of the sponsors or the information and products presented on the site. You will be subject to the destination site's privacy policy when you follow the link.

ContinueCancel