Literature DB >> 25448047

Mechanistic studies of cancer cell mitochondria- and NQO1-mediated redox activation of beta-lapachone, a potentially novel anticancer agent.

Jason Z Li1, Yuebin Ke2, Hara P Misra1, Michael A Trush3, Y Robert Li4, Hong Zhu5, Zhenquan Jia6.   

Abstract

Beta-lapachone (beta-Lp) derived from the Lapacho tree is a potentially novel anticancer agent currently under clinical trials. Previous studies suggested that redox activation of beta-Lp catalyzed by NAD(P)H: quinone oxidoreductase 1 (NQO1) accounted for its killing of cancer cells. However, the exact mechanisms of this effect remain largely unknown. Using chemiluminescence and electron paramagnetic resonance (EPR) spin-trapping techniques, this study for the first time demonstrated the real-time formation of ROS in the redox activation of beta-lapachone from cancer cells mediated by mitochondria and NQO1 in melanoma B16-F10 and hepatocellular carcinoma HepG2 cancer cells. ES936, a highly selective NQO1 inhibitor, and rotenone, a selective inhibitor of mitochondrial electron transport chain (METC) complex I were found to significantly block beta-Lp meditated redox activation in B16-F10 cells. In HepG2 cells ES936 inhibited beta-Lp-mediated oxygen radical formation by ~80% while rotenone exerted no significant effect. These results revealed the differential contribution of METC and NQO1 to beta-lapachone-induced ROS formation and cancer cell killing. In melanoma B16-F10 cells that do not express high NQO1 activity, both NOQ1 and METC play a critical role in beta-Lp redox activation. In contrast, in hepatocellular carcinoma HepG2 cells expressing extremely high NQO1 activity, redox activation of beta-Lp is primarily mediated by NQO1 (METC plays a minor role). These findings will contribute to our understanding of how cancer cells are selectively killed by beta-lapachone and increase our ability to devise strategies to enhance the anticancer efficacy of this potentially novel drug while minimizing its possible adverse effects on normal cells.
Copyright © 2014 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Beta-lapachone; Cancer cells; EPR; Mitochondrial electron transport chain; NQO1; ROS

Mesh:

Substances:

Year:  2014        PMID: 25448047     DOI: 10.1016/j.taap.2014.10.012

Source DB:  PubMed          Journal:  Toxicol Appl Pharmacol        ISSN: 0041-008X            Impact factor:   4.460


  15 in total

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Authors:  Hong Zhu; Megan E Kauffman; Jason Z Li; Soumyadeep Sarkar; Michael A Trush; Zhenquan Jia; Y Robert Li
Journal:  React Oxyg Species (Apex)       Date:  2016

2.  A Highly Sensitive Chemiluminometric Assay for Real-Time Detection of Biological Hydrogen Peroxide Formation.

Authors:  Hong Zhu; Zhenquan Jia; Michael A Trush; Y Robert Li
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Journal:  Br J Pharmacol       Date:  2016-09-02       Impact factor: 8.739

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Review 6.  Enhancing Oral Absorption of β-Lapachone: Progress Till Date.

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Journal:  Eur J Drug Metab Pharmacokinet       Date:  2017-02       Impact factor: 2.569

7.  Oxygen and Oxygen Toxicity: The Birth of Concepts.

Authors:  Hong Zhu; Kassim Traore; Arben Santo; Michael A Trush; Y Robert Li
Journal:  React Oxyg Species (Apex)       Date:  2016-01

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Authors:  Shashank Shrishrimal; Arpita Chatterjee; Elizabeth A Kosmacek; Paul J Davis; J Tyson McDonald; Rebecca E Oberley-Deegan
Journal:  Free Radic Biol Med       Date:  2020-03-25       Impact factor: 7.376

9.  Expressions of some antioxidant genes in SH-SY5Y cells treated with β-lapachone, morphine and electromagnetic field.

Authors:  Hamideh Mahmoudinasab; Mostafa Saadat
Journal:  Mol Biol Rep       Date:  2018-04-02       Impact factor: 2.742

10.  β-Lapachone suppresses the lung metastasis of melanoma via the MAPK signaling pathway.

Authors:  Ji-Ye Kee; Yo-Han Han; Dae-Seung Kim; Jeong-Geon Mun; Seong-Hwan Park; Hong-Seob So; Sung-Joo Park; Raekil Park; Jae-Young Um; Seung-Heon Hong
Journal:  PLoS One       Date:  2017-05-08       Impact factor: 3.752

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