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Synthesis and antiproliferative evaluation of certain indolo[3,2-c]quinoline derivatives
Authors:Chih-Ming Lu  Yeh-Long Chen  Hui-Ling Chen  Chyi-An Chen  Pei-Jung Lu  Chia-Ning Yang  Cherng-Chyi Tzeng
Institution:1. Department of Medicinal and Applied Chemistry, College of Life Science, Kaohsiung Medical University, Kaohsiung City 807, Taiwan;2. Graduate Institute of Pharmaceutical Science, College of Pharmacy, Kaohsiung Medical University, Kaohsiung City 807, Taiwan;3. Institute of Clinical Medicine, National Cheng-Kung University, School of Medicine, 138 Sheng-Li Road, Tainan 704, Taiwan;4. Institute of Biotechnology, National University of Kaohsiung, 700 Kaohsiung University Rd, Kaohsiung, Taiwan
Abstract:The present report describes the synthesis and antiproliferative evaluation of certain indolo3,2-c]quinoline derivatives. For the C6 anilino-substituted derivatives, (11H-indolo3,2-c]quinolin-6-yl)phenylamine (6a) was inactive. Structural optimization of 6a by the introduction of a hydroxyl group at the anilino-moiety resulted in the enhancement of antiproliferative activity in which the activity decreased in an order of para-OH, 7a > meta-OH, 8a > ortho-OH, 9a. For the C6 alkylamino-substituted derivatives, 11a, 12a, 13a, 14a, and 15a exhibited comparable antiproliferative activities against all cancer cells tested and the skin Detroit 551 normal fibroblast cells. Three cancer cells, HeLa, A549, and SKHep, are very susceptible with IC50 of less than 2.17 μM while PC-3 is relatively resistant to this group of indolo3,2-c]quinolines. For the 2-phenylethylamino derivatives, compound 20a is active against the growth of HeLa with an IC50 of 0.52 μM, but is less effective against the growth of Detroit 551 with an IC50 of 19.32 μM. For the bis-indolo3,2-c]quinolines, N,N-bis-3-(11H-indolo3,2-c]quinolin-6-yl)aminopropyl]amine hydrochloride (25) is more active than its N-methyl derivative 26 and the positive Doxorubicin. Mechanism studies indicated 25 can induce caspase-3 activation, γ-H2AX phosphorylation, cleavage of poly(ADP-ribose)polymerase and DNA fragmentation. These results provide evidence that DNA, topo I, and topo II are the primary targets of indolo3,2-c]quinoline derivatives and that consequently inhibits proliferation and causes apoptosis in cancer cells.
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