Synthesis and screening of ursolic acid-benzylidine derivatives as potential anti-cancer agents

被引:68
作者
Dar, Bilal Ahmad [1 ]
Lone, Ali Mohd [1 ]
Shah, Wajaht Amin [1 ]
Qurishi, Mushtaq Ahmad [1 ]
机构
[1] Univ Kashmir, Dept Chem, Srinagar 190006, Jammu & Kashmir, India
关键词
Ursolic acid; Benzylidine; Cytotoxic activity; Claisen Schmidt condensation; Aromatic aldehydes; ANTI-AIDS AGENTS; OLEANOLIC ACID; ANTIFUNGAL ACTIVITY; CYTOTOXIC ACTIVITY; DOWN-REGULATION; IN-VITRO; CHALCONES; MECHANISM; APOPTOSIS; ACTIVATION;
D O I
10.1016/j.ejmech.2016.01.026
中图分类号
R914 [药物化学];
学科分类号
100701 ;
摘要
Ursolic acid present abundantly in plant kingdom is a well-known compound with various promising biological activities including, anti-cancer, anti-inflammatory, hepatoprotective, antiallergic and anti-HIV properties. Herein, a library of ursolic acid-benzylidine derivatives have been designed and synthesized using Claisen Schmidt condensation of ursolic acid with various aromatic aldehydes in an attempt to develop potent antitumor agents. The compounds were evaluated against a panel of four human carcinoma cell lines including, A-549 (lung), MCF-7 (breast), HCT-116 (colon), THP-1 (leukemia) and a normal human epithelial cell line (FR-2). The results from WITT assay revealed that all the compounds displayed high level of antitumor activities compared with the triazole analogs (previously reported) and the parent ursolic acid. However, compound 3b, the most active derivative was subjected to mechanistic studies to understand the underlying mechanism. The results revealed that compound 3b induced apoptosis in HCT-116 cell lines, arrest cell cycle in the G1 phase, caused accumulation of cytochrome c in the cytosol and increased the expression levels of caspase-9 and caspase-3 proteins. Therefore, compound 3b induces apoptosis in HCT-116 cells through mitochondrial pathway. (C) 2016 Elsevier Masson SAS. All rights reserved.
引用
收藏
页码:26 / 32
页数:7
相关论文
共 42 条
  • [1] Synthesis of [3β-acetoxy-urs-12-en-28-oyl]-1-monoglyceride and investigation on its anti tumor effects against BGC-823
    Bai, Kai-Kai
    Chen, Fen-Ling
    Yu, Zhou
    Zheng, Yun-Quan
    Li, Yong-Ning
    Guo, Yang-Hao
    [J]. BIOORGANIC & MEDICINAL CHEMISTRY, 2011, 19 (13) : 4043 - 4050
  • [2] Examination of growth inhibitory properties of synthetic chalcones for which antibacterial activity was predicted
    Batovska, Daniela
    Parushev, Stoyan
    Stambohyska, Bistra
    Tsvetkova, Iva
    Ninova, Mariana
    Najdenski, Hristo
    [J]. EUROPEAN JOURNAL OF MEDICINAL CHEMISTRY, 2009, 44 (05) : 2211 - 2218
  • [3] Antifungal activity and studies on mode of action of novel xanthoxyline-derived chalcones
    Boeck, P
    Leal, PC
    Yunes, RA
    Cechinel, V
    López, S
    Sortino, M
    Escalante, A
    Furlán, RLE
    Zacchino, S
    [J]. ARCHIV DER PHARMAZIE, 2005, 338 (2-3) : 87 - 95
  • [4] Anti-HIV-1 protease activity of compounds from Boesenbergia pandurata
    Cheenpracha, S
    Karalai, C
    Ponglimanont, C
    Subhadhirasakul, S
    Tewtrakul, S
    [J]. BIOORGANIC & MEDICINAL CHEMISTRY, 2006, 14 (06) : 1710 - 1714
  • [5] Choi YH, 2000, INT J ONCOL, V17, P565
  • [6] Plant substances as anti-HIV agents selected according to their putative mechanism of action
    Cos, P
    Maes, L
    Vanden Berghe, D
    Hermans, N
    Pieters, L
    Vlietinck, A
    [J]. JOURNAL OF NATURAL PRODUCTS, 2004, 67 (02): : 284 - 293
  • [7] Flavonoids: Old and new aspects of a class of natural therapeutic drugs
    Di Carlo, G
    Mascolo, N
    Izzo, AA
    Capasso, F
    [J]. LIFE SCIENCES, 1999, 65 (04) : 337 - 353
  • [8] In vitro antiplasmodial activity of prenylated chalcone derivatives of hops (Humulus lupulus) and their interaction with haemin
    Frölich, S
    Schubert, C
    Bienzle, U
    Jenett-Siems, K
    [J]. JOURNAL OF ANTIMICROBIAL CHEMOTHERAPY, 2005, 55 (06) : 883 - 887
  • [9] Grabley S, 2003, EXS, V93, P87
  • [10] Gupta Ranjan, 2005, Curr Drug Discov Technol, V2, P203, DOI 10.2174/157016305775202937