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Design, synthesis and in vitro cell-based evaluation of the anti-cancer activities of hispolon analogs.
Balaji, Neduri V; Ramani, Modukuri V; Viana, Arabela G; Sanglard, Leticia P; White, Jason; Mulabagal, Vanisree; Lee, Crystal; Gana, Theophilus J; Egiebor, Nosa O; Subbaraju, Gottumukkala V; Tiwari, Amit K.
Afiliação
  • Balaji NV; Natsol Laboratories Private Limited, II Floor, Research & Development Building, Ramky Commercial Hub, J. N. Pharmacity, Visakhapatnam, India.
  • Ramani MV; Natsol Laboratories Private Limited, II Floor, Research & Development Building, Ramky Commercial Hub, J. N. Pharmacity, Visakhapatnam, India.
  • Viana AG; Department of Biomedical Sciences, CVMNAH, Tuskegee University, Tuskegee, AL, USA.
  • Sanglard LP; Department of Biomedical Sciences, CVMNAH, Tuskegee University, Tuskegee, AL, USA.
  • White J; Department of Biomedical Sciences, CVMNAH, Tuskegee University, Tuskegee, AL, USA.
  • Mulabagal V; Department of Chemical Engineering, Tuskegee University, Tuskegee, AL, USA.
  • Lee C; Department of Biomedical Sciences, CVMNAH, Tuskegee University, Tuskegee, AL, USA.
  • Gana TJ; Biopharmatech Consulting, Inc., Leesburg, VA, USA.
  • Egiebor NO; Department of Chemical Engineering, University of Mississippi, MS, USA.
  • Subbaraju GV; Natsol Laboratories Private Limited, II Floor, Research & Development Building, Ramky Commercial Hub, J. N. Pharmacity, Visakhapatnam, India.
  • Tiwari AK; Department of Biomedical Sciences, CVMNAH, Tuskegee University, Tuskegee, AL, USA.
Bioorg Med Chem ; 23(9): 2148-2158, 2015 May 01.
Article em En | MEDLINE | ID: mdl-25842364
ABSTRACT
Phytochemicals play an important role in cancer therapy. Hispolon and 26 of its analogs (9 known and 17 new) were synthesized and evaluated for their antiproliferative activities in a panel of six independent human cancer cell lines using the in vitro cell-based MTT assay. Among the hispolon analogs tested, compound VA-2, the most potent overall, produced its most significant effect in the colon cancer cell lines HCT-116 (IC50 1.4 ± 1.3 µM) and S1 (IC50 1.8 ± 0.9 µM) compared to its activity in the normal HEK293/pcDNA3.1 cell line (IC50 15.8±3.7 µM; p<0.01 for each comparison). Based on our results, VA-2 was about 9- to 11-times more potent in colon cancer cells and 2- to 3-times more potent in prostate cancer cells compared to HEK293/pcDNA3.1 cells. Morphological analysis of VA-2 showed significant reduction of cell number, while the cells' sizes were also markedly increased and were obvious at 68 h of treatment with 1 µM in HCT-116 (colon) and PC-3 (prostate) cancer cells. A known analog, compound VA-4, prepared by simple modifications on the aromatic functional groups of hispolon, inhibited prostate and colon cancer cell lines with IC50 values <10 µM. In addition, hispolon isoxazole and pyrazole analogs, VA-7 and VA-15 (known), respectively, have shown significant activity with the mean ICv values in the range 3.3-10.7 µM in all the cancer cell lines tested. Activity varied among the analogs in which aromatic functional groups and ß-diketone functional groups are modified. But the activity of analogs VA-16 to VA-27 was completely lost when the side chain double-bond was hydrogenated indicating the crucial role of this functionality for anticancer activity. Furthermore, many of the compounds synthesized were not substrates for the ABCB1-transporter, the most common cause of multidrug resistance in anti-cancer drugs, suggesting they may be more effective anticancer agents.
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Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Desenho de Fármacos / Catecóis / Antineoplásicos Limite: Animals / Humans Idioma: En Ano de publicação: 2015 Tipo de documento: Article

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Desenho de Fármacos / Catecóis / Antineoplásicos Limite: Animals / Humans Idioma: En Ano de publicação: 2015 Tipo de documento: Article