| Literature DB >> 26599533 |
Pietro Rizza1, Michele Pellegrino1, Anna Caruso1, Domenico Iacopetta1, Maria Stefania Sinicropi2, Sylvain Rault3, Jean Charles Lancelot4, Hussein El-Kashef5, Aurelien Lesnard4, Christophe Rochais4, Patrick Dallemagne4, Carmela Saturnino6, Francesca Giordano1, Stefania Catalano1, Sebastiano Andò7.
Abstract
A series of unknown 3-(alkyl(dialkyl)amino)benzofuro[2,3-f]quinazolin-1(2H)-ones 4-17 has been synthesized as new ellipticine analogs, in which the carbazole moiety and the pyridine ring were replaced by a dibenzofuran residue and a pyrimidine ring, respectively. The synthesis of these benzofuroquinazolinones 4-17 was performed in a simple one-pot reaction using 3-aminodibenzofuran or its 2-methoxy derivative, as starting materials. From 3-(dipropylamino)-5-methoxybenzofuro[2,3-f] quinazolin-1(2H)-one (13), we prepared 3-(dipropylamino)-5-hydroxybenzofuro[2,3-f]quinazolin-1(2H)-one (18), referred to as DPA-HBFQ-1. The cytotoxic activities of all the synthesized compounds, tested in different human breast cancer cell lines, revealed that DPA-HBFQ-1 was the most active compound. In particular, the latter was able to inhibit anchorage-dependent and -independent cell growth and to induce apoptosis in estrogen receptor alpha (ERα)-positive and -negative breast cancer cells. It did not affect proliferation and apoptotic responses in MCF-10A normal breast epithelial cells. The observed effects have been ascribed to an enhanced p21(Cip1/WAF1) expression in a p53-dependent manner of tumor suppressor and to a selective inhibition of human topoisomerase II. In addition, DPA-HBFQ-1 exerted growth inhibitory effects also in other cancer cell lines, even though with a lower cytotoxic activity. Our results indicate DPA-HBFQ-1 as a good candidate to be useful as cancer therapeutic agent, particularly for breast cancer.Entities:
Keywords: 3-(Alkyl(dialkyl)amino)-benzofuro[2,3-f]quinazolin-1(2H)-one analogs; 3-(dipropylamino)-5-hydroxybenzofuro[2,3-f]quinazolin-1(2H)-one; Apoptosis; Dibenzofuran derivatives; One-pot reaction
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Year: 2015 PMID: 26599533 DOI: 10.1016/j.ejmech.2015.11.004
Source DB: PubMed Journal: Eur J Med Chem ISSN: 0223-5234 Impact factor: 6.514