Abstract Aims: Cancer chemoresistance is often due to upregulation of antioxidant systems. Therapeutic targeting of these systems is however hampered by their redundancy. Here, we have performed a functional dissection of the antioxidant systems in different melanoma cases aimed at the identification of the most effective redox active drug. Results: We have identified two crucial antioxidant mechanisms: glutathione (GSH), the major intracellular redox buffer, and the cystine/cysteine cycle, which switches the extracellular redox state from an oxidized to a reduced state. The two mechanisms are independent in melanoma cells and may be substitutes for each other, but targeting both of them is lethal. Exposure to the pro-oxidant compound As(2)...
In 2011, the authors of the landmark paper Hallmarks of Cancer\u27 re-adapted their original work ...
Glutathione (GSH) is the predominant low-molecular-weight antioxidant with a ubiquitous distribution...
Sulfur-containing compounds play an essential role in maintaining redox balance in glioma cells. Chi...
Abstract Aims: Cancer chemoresistance is often due to upregulation of antioxidant systems. Therapeut...
The glutathione-dependent system is one of the key systems regulating cellular redox balance, and th...
Glutathione (L-γ-glutamyl-L-cysteinyl-glycine; GSH) in cancer cells is particularly relevant in the ...
Glutathione (L-γ-glutamyl-L-cysteinyl-glycine; GSH) in cancer cells is particularly relevant in the ...
The high number of somatic mutations in the melanoma genome associated with cumulative ultra violet ...
Glutathione (GSH) is implicated in drug resistance mechanisms of several cancers and is a key regula...
A fine balance in reactive oxygen species (ROS) production and removal is of utmost importance for h...
In 2011, the authors of the landmark paper Hallmarks of Cancer\u27 re-adapted their original work ...
Glutathione (GSH) is the predominant low-molecular-weight antioxidant with a ubiquitous distribution...
Glutathione (GSH) is the predominant low-molecular-weight antioxidant with a ubiquitous distribution...
The high number of somatic mutations in the melanoma genome associated with cumulative ultra violet ...
Melanoma is highly resistant to conventional chemotherapy. We have demonstrated that redox regulatio...
In 2011, the authors of the landmark paper Hallmarks of Cancer\u27 re-adapted their original work ...
Glutathione (GSH) is the predominant low-molecular-weight antioxidant with a ubiquitous distribution...
Sulfur-containing compounds play an essential role in maintaining redox balance in glioma cells. Chi...
Abstract Aims: Cancer chemoresistance is often due to upregulation of antioxidant systems. Therapeut...
The glutathione-dependent system is one of the key systems regulating cellular redox balance, and th...
Glutathione (L-γ-glutamyl-L-cysteinyl-glycine; GSH) in cancer cells is particularly relevant in the ...
Glutathione (L-γ-glutamyl-L-cysteinyl-glycine; GSH) in cancer cells is particularly relevant in the ...
The high number of somatic mutations in the melanoma genome associated with cumulative ultra violet ...
Glutathione (GSH) is implicated in drug resistance mechanisms of several cancers and is a key regula...
A fine balance in reactive oxygen species (ROS) production and removal is of utmost importance for h...
In 2011, the authors of the landmark paper Hallmarks of Cancer\u27 re-adapted their original work ...
Glutathione (GSH) is the predominant low-molecular-weight antioxidant with a ubiquitous distribution...
Glutathione (GSH) is the predominant low-molecular-weight antioxidant with a ubiquitous distribution...
The high number of somatic mutations in the melanoma genome associated with cumulative ultra violet ...
Melanoma is highly resistant to conventional chemotherapy. We have demonstrated that redox regulatio...
In 2011, the authors of the landmark paper Hallmarks of Cancer\u27 re-adapted their original work ...
Glutathione (GSH) is the predominant low-molecular-weight antioxidant with a ubiquitous distribution...
Sulfur-containing compounds play an essential role in maintaining redox balance in glioma cells. Chi...