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Glutathione S-conjugates as prodrugs to target drug-resistant tumors.

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TLDR
This strategy, explored over the last two decades, has recently been successful using GST-activated nitrogen mustard and γGT-activated arsenic-based prodrugs confirming the potential of GSH-conjugates as anticancer drugs.
Abstract
Living organisms are continuously exposed to xenobiotics. The major phase of enzymatic detoxification in many species is the conjugation of activated xenobiotics to reduced glutathione (GSH) catalyzed by the glutathione-S-transferase (GST). It has been reported that some compounds, once transformed into glutathione S-conjugates, enter the mercapturic acid pathway whose end products are highly reactive and toxic for the cell responsible for their production. The cytotoxicity of these GSH conjugates depends essentially on GST and gamma-glutamyl transferases (γGT), the enzymes which initiate the mercapturic acid synthesis pathway. Numerous studies support the view that the expression of GST and γGT in cancer cells represents an important factor in the appearance of a more aggressive and resistant phenotype. High levels of tumor GST and γGT expression were employed to selectively target tumor with GST- or γGT-activated drugs. This strategy, explored over the last two decades, has recently been successful using GST-activated nitrogen mustard (TLK286) and γGT-activated arsenic-based (GSAO and Darinaparsin) prodrugs confirming the potential of GSH-conjugates as anticancer drugs.

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References
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Journal Article

Role of WHO.

TL;DR: This is a paid internship where interns work directly to assist the Director of Marketing and Communications on various tasks relating to upcoming GRA events.
Journal Article

Molecular epidemiology of the human glutathione S-transferase genotypes GSTM1 and GSTT1 in cancer susceptibility.

TL;DR: The mu (GSTM1 and theta) members of the glutathione S-transferase multigene family are candidate cancer susceptibility genes because of their ability to regulate the conjugation of carcinogenic compounds to excretable hydrophilic metabolites.
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The permeability transition pore complex: another view.

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Patent

A monoclonal antibody.

TL;DR: Monoclonal antibodies specific for CPDs or 6-4PPs are established and would contribute to understanding of molecular mechanisms of cellular responses to UV and DNA damage in many research fields including cancer research, photobiology, dermatology, ophthalmology, immunology, and cosmetology.
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