The role of reactive oxygen species (ROS) in the metabolic reprogramming of cells adapted to hypoxia and the interplay between ROS and hypoxia in malignancy is under debate. Here, we examined how ROS levels are modulated by hypoxia in human cancer compared to untransformed cells. Short time exposure (20 min) of either fibroblasts or 143B osteosarcoma cells to low oxygen tension down to 0.5% induced a significant decrease of the cellular ROS level, as detected by the CellROX fluorescent probe (−70%). Prolonging the cells’ exposure to hypoxia for 24 h, ROS decreased further, reaching nearly 20% of the normoxic value. In this regard, due to the debated role of the endogenous inhibitor protein (IF1) of the ATP synthase complex in ca...
Funding Information: This research was partially funded by SERB, DST, Government of India, grant num...
There is an important and strong, but complex influence of the tumor microenvironment on tumor cells...
In the last two decades, IF1, the endogenous inhibitor of the mitochondrial F1Fo-ATPase (ATP synthas...
The role of reactive oxygen species (ROS) in the metabolic reprogramming of cells adapted to hypoxia...
IF1, the endogenous inhibitor protein of mitochondrial F1Fo-ATPase, has raised interest in cancer re...
none5noOn-line FIRST: Biochim Biophys Acta. 2018 Feb;1859(2):99-109. doi: 10.1016/j.bbabio.2017.10.0...
We have previously demonstrated that cells adapt to hypoxia using different metabolic reprogramming ...
New insights into cancer cell-specific biological pathways are urgently needed to promote developmen...
Controlling reactive oxygen species (ROS) at sustainable levels can drive multiple facets of tumor b...
Reactive oxygen species (ROS) are closely related to tumorgenesis. Under hypoxic environment, increa...
When cancer metastasizes from a primary tumor site to secondary site through the bloodstream or lymp...
AbstractEukaryotic organisms require oxygen homeostasis to maintain proper cellular function for sur...
Radiotherapy is a mainstay treatment for many types of cancer and kills cancer cells via generation ...
Mitochondria produce reactive oxygen species (mROS) as a natural by-product of electron transport ch...
Tumours are characterized by a metabolic rewiring that helps transformed cells to survive in harsh c...
Funding Information: This research was partially funded by SERB, DST, Government of India, grant num...
There is an important and strong, but complex influence of the tumor microenvironment on tumor cells...
In the last two decades, IF1, the endogenous inhibitor of the mitochondrial F1Fo-ATPase (ATP synthas...
The role of reactive oxygen species (ROS) in the metabolic reprogramming of cells adapted to hypoxia...
IF1, the endogenous inhibitor protein of mitochondrial F1Fo-ATPase, has raised interest in cancer re...
none5noOn-line FIRST: Biochim Biophys Acta. 2018 Feb;1859(2):99-109. doi: 10.1016/j.bbabio.2017.10.0...
We have previously demonstrated that cells adapt to hypoxia using different metabolic reprogramming ...
New insights into cancer cell-specific biological pathways are urgently needed to promote developmen...
Controlling reactive oxygen species (ROS) at sustainable levels can drive multiple facets of tumor b...
Reactive oxygen species (ROS) are closely related to tumorgenesis. Under hypoxic environment, increa...
When cancer metastasizes from a primary tumor site to secondary site through the bloodstream or lymp...
AbstractEukaryotic organisms require oxygen homeostasis to maintain proper cellular function for sur...
Radiotherapy is a mainstay treatment for many types of cancer and kills cancer cells via generation ...
Mitochondria produce reactive oxygen species (mROS) as a natural by-product of electron transport ch...
Tumours are characterized by a metabolic rewiring that helps transformed cells to survive in harsh c...
Funding Information: This research was partially funded by SERB, DST, Government of India, grant num...
There is an important and strong, but complex influence of the tumor microenvironment on tumor cells...
In the last two decades, IF1, the endogenous inhibitor of the mitochondrial F1Fo-ATPase (ATP synthas...