To fully understand the glycolytic behavior of cancer cells, it is important to recognize how it is linked to pH dynamics. Here, we evaluated the acute effects of mild acidification and alkalization on cancer cell glucose uptake and glycolytic flux and investigated the role of hexokinase (HK). Cancer cells exposed to buffers with graded pH were measured for 18F-fluorodeoxyglucose (FDG) uptake, lactate production and HK activity. Subcellular localization of HK protein was assessed by western blots and confocal microscopy. The interior of T47D breast cancer cells was mildly alkalized to pH 7.5 by a buffer pH of 7.8, and this was accompanied by rapid increases of FDG uptake and lactate extrusion. This shift toward glycolytic flux led to the pr...
During the last few years, the understanding of the dysregulated hydrogen ion dynamics and reversedp...
Extracellular tumor acidosis largely results from an exacerbated glycolytic flux in cancer and cance...
<div><p>Aggressive cancers exhibit an efficient conversion of high amounts of glucose to lactate acc...
To adjust cell growth and proliferation to changing environmental conditions or developmental requir...
Introduction Aggressive cancers commonly ferment glucose to lactic acid at high rates, even in the p...
Cancer cells acquire an unusual glycolytic behavior to a large extent relative to an intracellular a...
Cell survival is conditional on the maintenance of a favourable acid-base balance (pH). Owing to int...
Dysregulated pH is a common characteristic of cancer cells, as they have an increased intracellular ...
Cancer cells have an unusual regulation of hydrogen ion dynamics that are driven by poor vascularity...
Introduction: The dysregulation of pH by cancerous cells of solid tumors is able to create a unique ...
Cancer cells exhibit increased glycolytic flux and adenosine triphosphate (ATP) hydrolysis. These pr...
Mechanisms underlying cancer progression are strongly influenced by the physico-chemical properties ...
Metabolism is a continuous source of acids. To keep up with a desired metabolic rate, tumors must es...
Cancer progression is strongly influenced by the physico-chemical properties of the tumor microenvir...
During the last few years, the understanding of the dysregulated hydrogen ion dynamics and reversed ...
During the last few years, the understanding of the dysregulated hydrogen ion dynamics and reversedp...
Extracellular tumor acidosis largely results from an exacerbated glycolytic flux in cancer and cance...
<div><p>Aggressive cancers exhibit an efficient conversion of high amounts of glucose to lactate acc...
To adjust cell growth and proliferation to changing environmental conditions or developmental requir...
Introduction Aggressive cancers commonly ferment glucose to lactic acid at high rates, even in the p...
Cancer cells acquire an unusual glycolytic behavior to a large extent relative to an intracellular a...
Cell survival is conditional on the maintenance of a favourable acid-base balance (pH). Owing to int...
Dysregulated pH is a common characteristic of cancer cells, as they have an increased intracellular ...
Cancer cells have an unusual regulation of hydrogen ion dynamics that are driven by poor vascularity...
Introduction: The dysregulation of pH by cancerous cells of solid tumors is able to create a unique ...
Cancer cells exhibit increased glycolytic flux and adenosine triphosphate (ATP) hydrolysis. These pr...
Mechanisms underlying cancer progression are strongly influenced by the physico-chemical properties ...
Metabolism is a continuous source of acids. To keep up with a desired metabolic rate, tumors must es...
Cancer progression is strongly influenced by the physico-chemical properties of the tumor microenvir...
During the last few years, the understanding of the dysregulated hydrogen ion dynamics and reversed ...
During the last few years, the understanding of the dysregulated hydrogen ion dynamics and reversedp...
Extracellular tumor acidosis largely results from an exacerbated glycolytic flux in cancer and cance...
<div><p>Aggressive cancers exhibit an efficient conversion of high amounts of glucose to lactate acc...