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Identification of the Brucea javanica Constituent Brusatol as a EGFR-Tyrosine Kinase Inhibitor in a Cell-Free Assay

  • Chonticha Suwattanasophon
  • , Agnes Mistlberger-Reiner
  • , Jon Alberdi-Cedeño
  • , Marc Pignitter
  • , Veronika Somoza
  • , Jürgen König
  • , Thomanai Lamtha
  • , Panatda Wanaragthai
  • , Duangnapa Kiriwan
  • , Kiattawee Choowongkomon (Corresponding author)

Publications: Contribution to journalArticlePeer Reviewed

Abstract

Inhibitors of the tyrosine kinase (TK) activity of the epidermal growth factor receptor (EGFR) are routinely used in cancer therapy. However, there is a need to discover a new TK inhibitor. This study evaluated extracts from Brucea javanica and its components for their potential as novel EGFR-TK inhibitors. The cytotoxic effect of a g aqueous extract and its fractions was assessed by MTT assays with A549 lung cancer cells. The two fractions with the highest cytotoxicity were analyzed by LC/MS and 1H NMR. Brusatol was identified as the main constituent of these fractions, and its cytotoxic and pro-apoptotic activities were confirmed in A549 cells. To elucidate the inhibitory activity of brusatol against EGFR-TK, a specific ADP-GloTM kinase assay was used. In this assay, the IC50 value for EGFR-TK inhibition was 333.1 nM. Molecular dynamic simulations and docking experiments were performed to identify the binding pocket of brusatol to be located in the intracellular TK-domain of EGFR. This study demonstrates that brusatol inhibits EGFR-TK and therefore harbors a potential as a new therapeutic drug for the therapy of EGFR-depending cancers.

Original languageEnglish
Pages (from-to)28543-28552
Number of pages10
JournalACS Omega
Volume8
Issue number31
DOIs
Publication statusPublished - 28 Jul 2023

Funding

Financial support was provided by the National Research Council of Thailand (grant/award no. NRCT5-RSA63002-07), the Kasetsart University Research and Development Institutes (KURDI), Bangkok, Thailand [FF(KU)4.65)], and the Center for Advanced Studies in Nanotechnology for Chemical, Food and Agricultural Industries, KU Institute for Advanced Studies. University of Vienna provided financial support for consumables used in this project. The computational results presented have been achieved using the Vienna Scientific Cluster (VSC). The authors gratefully acknowledge the technical assistance of Sandra Auernigg-Haselmaier with the LC/MS and the NMR core facility of the Division of Pharmaceutical Chemistry at the University of Vienna for providing access to the NMR instruments.

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Austrian Fields of Science 2012

  • 301303 Medical biochemistry
  • 301206 Pharmacology

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