1. Academic Validation
  2. Alkyne-azide cycloaddition analogues of dehydrozingerone as potential anti-prostate cancer inhibitors via the PI3K/Akt/NF-kB pathway

Alkyne-azide cycloaddition analogues of dehydrozingerone as potential anti-prostate cancer inhibitors via the PI3K/Akt/NF-kB pathway

  • Medchemcomm. 2017 Nov 2;8(11):2115-2124. doi: 10.1039/c7md00267j.
Chetan Kumar 1 Reyaz Ur Rasool 2 3 Zainab Iqra 3 Yedukondalu Nalli 1 Prabhu Dutt 1 Naresh K Satti 1 Neha Sharma 1 Sumit G Gandhi 4 Anindya Goswami 3 Asif Ali 1
Affiliations

Affiliations

  • 1 Natural Product Chemistry Division , India . Email: asifali@iiim.ac.in ; ; Tel: +91 191 2569222.
  • 2 Academy of Scientific & Innovative Research (AcSIR) , Anusandhan Bhawan, 2 Rafi Marg , New Delhi-110001 , India.
  • 3 Cancer Pharmacology Division , CSIR-Indian Institute of Integrative Medicine , Canal Road , Jammu-180001 , India . Email: agoswami@iiim.ac.in.
  • 4 Plant Biotechnology division , CSIR-Indian Institute of Integrative Medicine , Canal Road , Jammu , India.
Abstract

Herein, we report the isolation and synthetic modification of dehydrozingerone (DHZ, 1), a secondary metabolite present in the rhizome of Zingiber officinale. We synthesized O-propargylated dehydrozingerone, which was subsequently coupled by alkyne-azide cycloaddition (3-20) using click chemistry. The compounds (1-20) were evaluated for their in vitro cytotoxic activity in a panel of three Cancer cell lines. Among all the DHZ derivatives, 3, 6, 7, 8, 9 and 15 displayed potent cytotoxic potential with an IC50 value ranging from 1.8-3.0 μM in MCF-7, PC-3 and HCT-116 cell lines. Furthermore, compound 7 has proven to be the most potent cytotoxic compound in all the three distinct Cancer cell lines and also demonstrated significant anti-invasive potential in prostate Cancer. The mechanistic study of compound 7 showed that it not only suppressed the Akt/mTOR signalling which regulates nuclear transcription factor-NF-kB but also augmented the expression of anti-invasive markers E-cadherin and TIMP. Compound 7 significantly decreased the expression of pro-invasive markers vimentin, MMP-2 and MMP-9, respectively. This study underscores an efficient synthetic approach employed to evaluate the structure-activity relationship of dehydrozingerone (1) in search of potential new Anticancer agents.

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