Prolonged oxidative stress favors tumorigenic environment and inflammation. Oxidative stress may trigger redox adaptation mechanism(s) in tumor cells but not normal cells. This may increase levels of intracellular antioxidants and establish a new redox homeostasis. Nrf-2, a master regulator of battery of antioxidant genes is constitutively activated in many tumor cells. Here we show that, murine T cell lymphoma EL-4 cells show constitutive and inducible radioresistance via activation of Nrf-2/ERK pathway. EL-4 cells contained lower levels of ROS than their normal counterpart murine splenic lymphocytes. In response to radiation, the thiol redox circuits, GSH and thioredoxin were modified in EL-4 cells. Pharmacological inhibitors of ERK and N...
<div><p>Malignant carcinomas that recur following therapy are typically de-differentiated and multid...
The complex role of NRF2 in the context of cancer continues to evolve. As a transcription factor, N...
Cancer cells display a higher level of reactive oxygen species (ROS) mainly due to increased metabol...
Prolonged oxidative stress favors tumorigenic environment and inflammation. Oxidative stress may tri...
<div><p>Prolonged oxidative stress favors tumorigenic environment and inflammation. Oxidative stress...
<div><p></p><p>Ionizing radiation (IR)-induced oxidative stress in tumor cells is effectively manage...
Purpose: Tumor cells generally exhibit higher levels of reactive oxygen species (ROS), however, when...
Purpose: Tumor cells generally exhibit higher levels of reactive oxygen species (ROS), however, when...
The imbalance between reactive oxygen species (ROS) production and clearance causes oxidative stress...
The antioxidative response mediated by transcription factor NRF2 is thought to be a pivotal cellular...
Redox homeostasis is not only essential for the maintenance of normal physiological functions, but a...
Tumors contain a distinct small subpopulation of cells that possess stem cell-like characteristics. ...
Reactive oxygen species (ROS) are mutagenic and may thereby promote cancer. Normally, ROS levels are...
Malignant carcinomas that recur following therapy are typically de-differentiated and multidrug resi...
AbstractNuclear factor-erythroid 2 p45-related factor 2 (NRF2, also known as Nfe2l2) plays a critica...
<div><p>Malignant carcinomas that recur following therapy are typically de-differentiated and multid...
The complex role of NRF2 in the context of cancer continues to evolve. As a transcription factor, N...
Cancer cells display a higher level of reactive oxygen species (ROS) mainly due to increased metabol...
Prolonged oxidative stress favors tumorigenic environment and inflammation. Oxidative stress may tri...
<div><p>Prolonged oxidative stress favors tumorigenic environment and inflammation. Oxidative stress...
<div><p></p><p>Ionizing radiation (IR)-induced oxidative stress in tumor cells is effectively manage...
Purpose: Tumor cells generally exhibit higher levels of reactive oxygen species (ROS), however, when...
Purpose: Tumor cells generally exhibit higher levels of reactive oxygen species (ROS), however, when...
The imbalance between reactive oxygen species (ROS) production and clearance causes oxidative stress...
The antioxidative response mediated by transcription factor NRF2 is thought to be a pivotal cellular...
Redox homeostasis is not only essential for the maintenance of normal physiological functions, but a...
Tumors contain a distinct small subpopulation of cells that possess stem cell-like characteristics. ...
Reactive oxygen species (ROS) are mutagenic and may thereby promote cancer. Normally, ROS levels are...
Malignant carcinomas that recur following therapy are typically de-differentiated and multidrug resi...
AbstractNuclear factor-erythroid 2 p45-related factor 2 (NRF2, also known as Nfe2l2) plays a critica...
<div><p>Malignant carcinomas that recur following therapy are typically de-differentiated and multid...
The complex role of NRF2 in the context of cancer continues to evolve. As a transcription factor, N...
Cancer cells display a higher level of reactive oxygen species (ROS) mainly due to increased metabol...