Background: Clinical positron emission tomography imaging has demonstrated the vast majority of human cancers exhibit significantly increased glucose metabolism when compared with adjacent normal tissue, resulting in an acidic tumour microenvironment. Recent studies demonstrated reducing this acidity through systemic buffers significantly inhibits development and growth of metastases in mouse xenografts. Methods: We apply and extend a previously developed mathematical model of blood and tumour buffering to examine the impact of oral administration of bicarbonate buffer in mice, and the potential impact in humans. We recapitulate the experimentally observed tumour pHe effect of buffer therapy, testing a model prediction in vivo in mice. We p...
The external pH of solid tumors is acidic as a consequence of increased metabolism of glucose and po...
Human cancers exhibit the common phenotype of elevated glycolytic metabolism, which causes acidifica...
The rapid growth of cancer cells fueled by glycolysis produces large amounts of protons in cancer ce...
Background: Clinical positron emission tomography imaging has demonstrated the vast majority of huma...
BACKGROUND: Clinical positron emission tomography imaging has demonstrated the vast majority of huma...
Background: Clinical positron emission tomography imaging has demonstrated the vast majority of hum...
Malignant tumours are characterised by a low, acidic extracellular pH (pHe) which facilitates invasi...
Malignant tumours are characterised by a low, acidic extracellular pH (pHe) which facilitates invasi...
Malignant tumours are characterised by a low, acidic extracellular pH (pHe) which facilitates invasi...
BACKGROUND:The glycolytic nature of malignant tumors contributes to high levels of extracellular aci...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
AbstractMany studies have shown that the acidity of solid tumors contributes to local invasion and m...
International audience(1) Background: The acidosis of the tumor micro-environment may have profound ...
Many studies have shown that the acidity of solid tumors contributes to local invasion and metastasi...
The physical tumor microenvironment contributes significantly to carcinogenesis, cancer progression ...
The external pH of solid tumors is acidic as a consequence of increased metabolism of glucose and po...
Human cancers exhibit the common phenotype of elevated glycolytic metabolism, which causes acidifica...
The rapid growth of cancer cells fueled by glycolysis produces large amounts of protons in cancer ce...
Background: Clinical positron emission tomography imaging has demonstrated the vast majority of huma...
BACKGROUND: Clinical positron emission tomography imaging has demonstrated the vast majority of huma...
Background: Clinical positron emission tomography imaging has demonstrated the vast majority of hum...
Malignant tumours are characterised by a low, acidic extracellular pH (pHe) which facilitates invasi...
Malignant tumours are characterised by a low, acidic extracellular pH (pHe) which facilitates invasi...
Malignant tumours are characterised by a low, acidic extracellular pH (pHe) which facilitates invasi...
BACKGROUND:The glycolytic nature of malignant tumors contributes to high levels of extracellular aci...
License, which permits unrestricted use, distribution, and reproduction in any medium, provided the ...
AbstractMany studies have shown that the acidity of solid tumors contributes to local invasion and m...
International audience(1) Background: The acidosis of the tumor micro-environment may have profound ...
Many studies have shown that the acidity of solid tumors contributes to local invasion and metastasi...
The physical tumor microenvironment contributes significantly to carcinogenesis, cancer progression ...
The external pH of solid tumors is acidic as a consequence of increased metabolism of glucose and po...
Human cancers exhibit the common phenotype of elevated glycolytic metabolism, which causes acidifica...
The rapid growth of cancer cells fueled by glycolysis produces large amounts of protons in cancer ce...