In vitro synergistic anticancer activity of the combination of T-type calcium channel blocker and chemotherapeutic agent in A549 cells

Authors
Byun, Joon SeokSohn, Joo MiLeem, Dong GyuPark, ByeongyeonNam, Ji HyeShin, Dong HyunShin, Ji SunKim, Hyoung JaLee, Kyung-TaeLee, Jae Yeol
Issue Date
2016-02-01
Publisher
Pergamon Press Ltd.
Citation
Bioorganic & Medicinal Chemistry Letters, v.26, no.3, pp.1073 - 1079
Abstract
As a result of our continuous research, new 3,4-dihydroquinazoline derivative containing ureido group, KCP10043F was synthesized and evaluated for T-type Ca2+ channel (Ca(v)3.1) blockade, cytotoxicity, and cell cycle arrest against human non-small cell lung (A549) cells. KCP10043F showed both weaker T-type Ca2+ channel blocking activity and less cytotoxicity against A549 cells than parent compound KYS05090S [4-(benzylcarbamoylmethyl)-3-(4-biphenylyl)-2-(N,N',N'-trimethyl-1,5-pentanediamino)-3,4-dihydroquinazoline 2 hydrochloride], but it exhibited more potent G(1)-phase arrest than KYS05090S in A549 cells. This was found to be accompanied by the downregulations of cyclin-dependent kinase (CDK) 2, CDK4, CDK6, cyclin D2, cyclin D3, and cyclin E at the protein levels. However, p27(KIP1) as a CDK inhibitor was gradually upregulated at the protein levels and increased recruitment to CDK2, CDK4 and CDK6 after KCP10043F treatment. Based on the strong G(1)-phase cell cycle arrest of KCP10043F in A549 cells, the combination of KCP10043F with etoposide (or cisplatin) resulted in a synergistic cell death (combination index = 0.2-0.8) via the induction of apoptosis compared with either agent alone. Taken together with these overall results and the favorable in vitro ADME (absorption, distribution, metabolism, and excretion) profiles of KCP10043F, therefore, it could be used as a potential agent for the combination therapy on human lung cancer. (C) 2015 Elsevier Ltd. All rights reserved.
Keywords
CYCLE ARREST; LUNG-CANCER; PROLIFERATION; CISPLATIN; APOPTOSIS; TUMOR; TOPOISOMERASES; INHIBITION; THERAPY; DRUGS; CYCLE ARREST; LUNG-CANCER; PROLIFERATION; CISPLATIN; APOPTOSIS; TUMOR; TOPOISOMERASES; INHIBITION; THERAPY; DRUGS; Cell cycle arrest; Synergistic effect; T-type calcium channel; Human lung cancer; Apoptosis
ISSN
0960-894X
URI
https://pubs.kist.re.kr/handle/201004/124409
DOI
10.1016/j.bmcl.2015.12.010
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KIST Article > 2016
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