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  4. Characterization of New Potential Anticancer Drugs Designed To Overcome Glutathione Transferase Mediated Resistance
 
research article

Characterization of New Potential Anticancer Drugs Designed To Overcome Glutathione Transferase Mediated Resistance

Johansson, Katarina
•
Ito, Mika
•
Schophuizen, Carolien M. S.
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2011
Molecular Pharmaceutics

Resistance against anticancer drugs remains a serious obstacle in cancer treatment. Here we used novel strategies to target microsomal glutathione transferase 1 (MGST1) and glutathione transferase pi (GSTP) that are often overexpressed in tumors and confer resistance against a number of cytostatic drugs, including cisplatin and doxorubicin (DOX). By synthetically combining cisplatin with a GST inhibitor, ethacrynic add, to form ethacraplatin, it was previously shown that cytosolic GST inhibition was improved and that cells became more sensitive to cisplatin. Here we show that ethacraplatin is easily taken up by the cells and can reverse cisplatin resistance in MGST1 overexpressing MCF7 cells. A second and novel strategy to overcome GST mediated resistance involves using GST releasable cytostatic drugs. Here we synthesized two derivatives of DOX, 2,4-dinitrobenzenesulfonyl doxorubicin (DNS-DOX) and 4-mononitrobenzenesulfonyl doxorubicin (MNS-DOX) and showed that they are substrates for MGST1 and GSTP (releasing DOX). MGST1 overexpressing cells are resistant to DOX. The resistance is partially reversed by DNS-DOX Interestingly, the less reactive MNS-DOX was more cytotoxic to cells overexpressing MGST1 than control cells. It would appear that, by controlling the reactivity of the prodrug and thereby the DOX release rate, selective toxicity to MGST1 overexpressing cells can be achieved. In the case of V79 cells, DOX resistance proportional to GSTP expression levels was noted. In this case, not only was drug resistance eliminated by DNS-DOX but a striking GSTP-dependent increase in toxicity was observed in the clonogenic assay. In summary, MGST1 and GSTP resistance to cytostatic drugs can be overcome and cytotoxicity can be enhanced in GST overexpressing cells.

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Type
research article
DOI
10.1021/mp2000692
Web of Science ID

WOS:000295347500027

Author(s)
Johansson, Katarina
Ito, Mika
Schophuizen, Carolien M. S.
Thengumtharayil, Sherin Mathew
Heuser, Vanina D.
Zhang, Jie
Shimoji, Miyuki
Vahter, Marie
Ang, Wee Han  
Dyson, Paul J.  
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Date Issued

2011

Published in
Molecular Pharmaceutics
Volume

8

Start page

1698

End page

1708

Subjects

glutathione transferase

•

drug resistance

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cytostatic drug

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S-Transferase

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Ethacrynic-Acid

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Oxidative Stress

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Gene-Expression

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Cancer-Cells

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Pi

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Inhibition

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Cisplatin

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Substrate

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Prodrug

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LCOM  
Available on Infoscience
December 16, 2011
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/73510
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