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  2. Design and discovery of silybin analogues as antiproliferative compounds using a ring disjunctive - Based, natural product lead optimization approach

Design and discovery of silybin analogues as antiproliferative compounds using a ring disjunctive - Based, natural product lead optimization approach

  • Eur J Med Chem. 2017 Jun 16:133:365-378. doi: 10.1016/j.ejmech.2017.03.033.
Elangovan Manivannan 1 Haneen Amawi 2 Noor Hussein 2 Chandrabose Karthikeyan 3 Aubry Fetcenko 2 N S Hari Narayana Moorthy 3 Piyush Trivedi 3 Amit K Tiwari 4
Affiliations

Affiliations

  • 1 School of Pharmacy, Devi Ahilya Vishwavidyalaya, Indore, MP 452001, India. Electronic address: drmanislab@gmail.com.
  • 2 Department of Pharmacology and Experimental Therapeutics, College of Pharmacy & Pharmaceutical Sciences, University of Toledo, OH, USA.
  • 3 School of Pharmaceutical Sciences, Rajiv Gandhi Proudyogiki Vishwavidyalaya, Airport Bypass Road, Gandhi Nagar, Bhopal, MP 462036, India.
  • 4 Department of Pharmacology and Experimental Therapeutics, College of Pharmacy & Pharmaceutical Sciences, University of Toledo, OH, USA. Electronic address: amit.tiwari@utoledo.edu.
Abstract

The present study reports the synthesis and Anticancer activity evaluation of twelve novel silybin analogues designed using a ring disjunctive-based natural product lead (RDNPL) optimization approach. All twelve compounds were tested against a panel of Cancer cells (i.e. breast, prostate, pancreatic, and ovarian) and compared with normal cells. While all of the compounds had significantly greater efficacy than silybin, derivative 15k was found to be highly potent (IC50 < 1 μM) and selective against ovarian Cancer cell lines, as well as other Cancer cell lines, compared to normal cells. Preliminary mechanistic studies indicated that the antiproliferative efficacy of 15k was mediated by its induction of Apoptosis, loss of mitochondrial membrane potential and cell cycle arrest at the sub-G1 phase. Furthermore, 15k inhibited cellular microtubules dynamic and assembly by binding to tubulin and inhibiting its expression and function. Overall, the results of the study establish 15k as a novel tubulin inhibitor with significant activity against ovarian Cancer cells.

Keywords

(E)-3-(3-(benzyloxy)phenyl)-1-phenylprop-2-en-1-one; Chemoprevention; Ring disjunctive natural product lead optimization; Silybin; Tubulin inhibitor.

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