Multidrug resistance (MDR) is an important obstacle that limits the efficacy of chemotherapy in many types of cancer. In this study, 14 novel asymmetrical DHPs possessing pyridyl alkyl carboxylate substitutions at C3 and alkyl carboxylate groups at C5 in addition to a nitroimidazole or nitrophenyl moiety at C4 position were synthesized. Calcium channel blocking (CCB) activity was measured in guinea pig ileal longitudinal smooth muscle. Cytotoxicity was tested on 4 human cancer cell lines, while MDR reversal capacity was examined on P-glycoprotein overexpressing doxorubicin resistant MES-SA-DX5 and compared with non-resistant MES-SA cells. Compounds showed different CCB (IC50: 29.3 nM-4.75 μM) and cytotoxic activities (IC50: 6.4 to more than 100 μM). Several compounds having nitrophenyl moiety at C4, could significantly reverse resistance to doxorubicin at 0.5 and 1 μM. The most active ones were 7e and 7g containing ethyl carboxylate and isopropyl carboxylate at C5, respectively. CCB activity, which is considered an undesirable effect for these agents, of 7e and 7g were 33 and 20 times lower than nifedipine, respectively. In conclusion, the newly synthesized asymmetrical DHP compounds showed promising MDR reversal and antitumoral activities with low CCB effects and could be of therapeutic value in drug resistant cancer.

Reversal of multidrug resistance in cancer cells by novel asymmetrical 1,4-dihydropyridines / Omidreza, Firuzi; Katayoun, Javidnia; Elham, Mansourabadi; Saso, Luciano; Ahmad Reza, Mehdipour; Ramin, Miri. - In: ARCHIVES OF PHARMACAL RESEARCH. - ISSN 0253-6269. - 36:11(2013), pp. 1392-1402. [10.1007/s12272-013-0149-8]

Reversal of multidrug resistance in cancer cells by novel asymmetrical 1,4-dihydropyridines

SASO, Luciano;
2013

Abstract

Multidrug resistance (MDR) is an important obstacle that limits the efficacy of chemotherapy in many types of cancer. In this study, 14 novel asymmetrical DHPs possessing pyridyl alkyl carboxylate substitutions at C3 and alkyl carboxylate groups at C5 in addition to a nitroimidazole or nitrophenyl moiety at C4 position were synthesized. Calcium channel blocking (CCB) activity was measured in guinea pig ileal longitudinal smooth muscle. Cytotoxicity was tested on 4 human cancer cell lines, while MDR reversal capacity was examined on P-glycoprotein overexpressing doxorubicin resistant MES-SA-DX5 and compared with non-resistant MES-SA cells. Compounds showed different CCB (IC50: 29.3 nM-4.75 μM) and cytotoxic activities (IC50: 6.4 to more than 100 μM). Several compounds having nitrophenyl moiety at C4, could significantly reverse resistance to doxorubicin at 0.5 and 1 μM. The most active ones were 7e and 7g containing ethyl carboxylate and isopropyl carboxylate at C5, respectively. CCB activity, which is considered an undesirable effect for these agents, of 7e and 7g were 33 and 20 times lower than nifedipine, respectively. In conclusion, the newly synthesized asymmetrical DHP compounds showed promising MDR reversal and antitumoral activities with low CCB effects and could be of therapeutic value in drug resistant cancer.
2013
dihydropyridines; calcium channel blocking; cytotoxicity; cancer; multidrug resistance
01 Pubblicazione su rivista::01a Articolo in rivista
Reversal of multidrug resistance in cancer cells by novel asymmetrical 1,4-dihydropyridines / Omidreza, Firuzi; Katayoun, Javidnia; Elham, Mansourabadi; Saso, Luciano; Ahmad Reza, Mehdipour; Ramin, Miri. - In: ARCHIVES OF PHARMACAL RESEARCH. - ISSN 0253-6269. - 36:11(2013), pp. 1392-1402. [10.1007/s12272-013-0149-8]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/559088
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