Warburg Meets Autophagy: Cancer-Associated Fibroblasts Accelerate Tumor Growth and Metastasis via Oxidative Stress, Mitophagy, and Aerobic Glycolysis

S Pavlides, I Vera, R Gandara, S Sneddon… - Antioxidants & redox …, 2012 - liebertpub.com
Significance: Here, we review certain recent advances in oxidative stress and tumor
metabolism, which are related to understanding the contributions of the microenvironment in …

[PDF][PDF] Warburg Meets Autophagy: Cancer-Associated Fibroblasts Accelerate Tumor Growth and Metastasis via Oxidative Stress, Mitophagy, and Aerobic Glycolysis

S Pavlides, I Vera, R Gandara, S Sneddon… - ANTIOXIDANTS & …, 2012 - researchgate.net
Significance: Here, we review certain recent advances in oxidative stress and tumor
metabolism, which are related to understanding the contributions of the microenvironment in …

Warburg meets autophagy: cancer-associated fibroblasts accelerate tumor growth and metastasis via oxidative stress, mitophagy, and aerobic glycolysis

S Pavlides, I Vera, R Gandara… - … & redox signaling, 2012 - pubmed.ncbi.nlm.nih.gov
Significance Here, we review certain recent advances in oxidative stress and tumor
metabolism, which are related to understanding the contributions of the microenvironment in …

Warburg meets autophagy: Cancer-Associated fibroblasts accelerate tumor growth and metastasis via oxidative stress, mitophagy, and aerobic glycolysis

S Pavlides, I Vera, R Gandara… - Antioxidants and …, 2012 - research.manchester.ac.uk
Significance: Here, we review certain recent advances in oxidative stress and tumor
metabolism, which are related to understanding the contributions of the microenvironment in …

[引用][C] Warburg Meets Autophagy: Cancer-Associated Fibroblasts Accelerate Tumor Growth and Metastasis via Oxidative Stress, Mitophagy, and Aerobic Glycolysis

S Pavlides, I Vera, R Gandara, S Sneddon… - Antioxidants & Redox …, 2012 - hero.epa.gov
Warburg Meets Autophagy: Cancer-Associated Fibroblasts Accelerate Tumor Growth and
Metastasis via Oxidative Stress, Mitophagy, and Aerobic Glycolysis | Health & Environmental …

Warburg meets autophagy: cancer-associated fibroblasts accelerate tumor growth and metastasis via oxidative stress, mitophagy, and aerobic glycolysis.

S Pavlides, I Vera, R Gandara, S Sneddon… - 1557 …, 2012 - escholar.manchester.ac.uk
SIGNIFICANCE: Here, we review certain recent advances in oxidative stress and tumor
metabolism, which are related to understanding the contributions of the microenvironment in …

Warburg meets autophagy: Cancer-Associated fibroblasts accelerate tumor growth and metastasis via oxidative stress, mitophagy, and aerobic glycolysis

S Pavlides, I Vera, R Gandara… - Antioxidants …, 2012 - research-repository.uwa.edu.au
Significance: Here, we review certain recent advances in oxidative stress and tumor
metabolism, which are related to understanding the contributions of the microenvironment in …

[HTML][HTML] Warburg Meets Autophagy: Cancer-Associated Fibroblasts Accelerate Tumor Growth and Metastasis via Oxidative Stress, Mitophagy, and Aerobic Glycolysis

S Pavlides, I Vera, R Gandara, S Sneddon… - Antioxidants & Redox …, 2012 - ncbi.nlm.nih.gov
Significance: Here, we review certain recent advances in oxidative stress and tumor
metabolism, which are related to understanding the contributions of the microenvironment in …

[引用][C] Warburg Meets Autophagy: Cancer-Associated Fibroblasts Accelerate Tumor Growth and Metastasis via Oxidative Stress, Mitophagy, and Aerobic Glycolysis

S Pavlides, I Vera, R Gandara, S Sneddon… - Antioxidants & Redox …, 2012 - cir.nii.ac.jp
Warburg Meets Autophagy: Cancer-Associated Fibroblasts Accelerate Tumor Growth and
Metastasis <i>via</i> Oxidative Stress, Mitophagy, and Aerobic Glycolysis | CiNii Research …

Warburg meets autophagy: cancer-associated fibroblasts accelerate tumor growth and metastasis via oxidative stress, mitophagy, and aerobic glycolysis

S Pavlides, I Vera, R Gandara, S Sneddon… - … and Redox Signaling, 2012 - eprints.gla.ac.uk
SIGNIFICANCE Here, we review certain recent advances in oxidative stress and tumor
metabolism, which are related to understanding the contributions of the microenvironment in …