1. Academic Validation
  2. Design, synthesis, biological evaluation and preliminary mechanism study of novel benzothiazole derivatives bearing indole-based moiety as potent antitumor agents

Design, synthesis, biological evaluation and preliminary mechanism study of novel benzothiazole derivatives bearing indole-based moiety as potent antitumor agents

  • Eur J Med Chem. 2015:96:173-86. doi: 10.1016/j.ejmech.2015.04.018.
Junjie Ma 1 Guanglong Bao 1 Limei Wang 1 Wanting Li 1 Boxuan Xu 1 Baoquan Du 1 Jie Lv 1 Xin Zhai 2 Ping Gong 3
Affiliations

Affiliations

  • 1 Key Laboratory of Structure-Based Drug Design and Discovery, Shenyang Pharmaceutical University, Ministry of Education, 103 Wenhua Road, Shenhe District, 110016, PR China.
  • 2 Key Laboratory of Structure-Based Drug Design and Discovery, Shenyang Pharmaceutical University, Ministry of Education, 103 Wenhua Road, Shenhe District, 110016, PR China. Electronic address: leixinjia@126.com.
  • 3 Key Laboratory of Structure-Based Drug Design and Discovery, Shenyang Pharmaceutical University, Ministry of Education, 103 Wenhua Road, Shenhe District, 110016, PR China. Electronic address: gongpinggp@126.com.
Abstract

Through a structure-based molecular hybridization approach, a series of novel benzothiazole derivatives bearing indole-based moiety were designed, synthesized and screened for in vitro antitumor activity against four Cancer cell lines (HT29, H460, A549 and MDA-MB-231). Most of them showed moderate to excellent activity against all the tested cell lines. Among them, compounds 20a-w with substituted benzyl-1H-indole moiety showed better selectivity against HT29 Cancer cell line than Other compounds. Compound 20d exhibited excellent antitumor activity with IC50 values of 0.024, 0.29, 0.84 and 0.88 μM against HT29, H460, A549 and MDA-MB-231, respectively. Further mechanism studies indicated that the marked pharmacological activity of compound 20d might be ascribed to activation of procaspase-3 (apoptosis-inducing) and cell cycle arrest, which had emerged as a lead for further structural modifications. Furthermore, 3D-QSAR model (training set: q(2) = 0.850, r(2) = 0.987, test set: r(2) = 0.811) was built to provide a comprehensive guide for further structural modification and optimization.

Keywords

3D-QSAR; Antitumor activity; Benzothiazole; Indole-based moiety; Synthesis.

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