SummaryExtracellular acidification accompanies neoplastic transformation of tissues and increases with tumor aggressiveness [1, 2]. The intracellular signaling cascade triggered by this process remains poorly understood and may be linked to recently discovered proton-activated G protein-coupled receptors such as OGR1 and G2A [3, 4]. Here, we report that OGR1 and G2A are expressed in human medulloblastoma tissue and its corresponding neuronal cell line. We show that extracellular acidification activates phospholipase C, IP3 formation, and subsequent Ca2+ release from thapsigargin-sensitive stores in neurons. The number of responsive cells and the amount of Ca2+ released from stores correlated positively with the extent of extracellular acidi...
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...
Intracellular pH (pHi) and Ca(2+) regulate essentially all aspects of cellular activities. Their int...
SummaryExtracellular acidification accompanies neoplastic transformation of tissues and increases wi...
Extracellular acidification accompanies neoplastic transformation of tissues and increases with tumo...
Extracellular acidification is a hallmark of a number of debilitating pathologies including cancer, ...
Cells maintain intracellular pH (pHi) within a narrow range (7.1-7.2) by controlling membrane proton...
International audienceAcute or chronic metabolic complications such as diabetic ketoacidosis are oft...
Hypercalciuria is a common feature during metabolic acidosis and associates to nephrolithiasis and n...
Abstract The effect of sequential stimulation of different inositol (1,4,5)-trisphosphate (IP3)-link...
The mechanisms linking tumor microenvironment acidosis to disease progression are not understood. He...
Changes in intracellular pH (pHi) and cytosolic calcium concentration ([Ca2+]c) caused by the glutam...
The detection of H$^{+}$ concentration variations in the extracellular milieu is accomplished by a s...
Local acidification is a common feature of many disease processes such as inflammation, infarction, ...
Alterations in the (bio)chemical and physical microenvironment of cells accompany and often promote ...
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...
Intracellular pH (pHi) and Ca(2+) regulate essentially all aspects of cellular activities. Their int...
SummaryExtracellular acidification accompanies neoplastic transformation of tissues and increases wi...
Extracellular acidification accompanies neoplastic transformation of tissues and increases with tumo...
Extracellular acidification is a hallmark of a number of debilitating pathologies including cancer, ...
Cells maintain intracellular pH (pHi) within a narrow range (7.1-7.2) by controlling membrane proton...
International audienceAcute or chronic metabolic complications such as diabetic ketoacidosis are oft...
Hypercalciuria is a common feature during metabolic acidosis and associates to nephrolithiasis and n...
Abstract The effect of sequential stimulation of different inositol (1,4,5)-trisphosphate (IP3)-link...
The mechanisms linking tumor microenvironment acidosis to disease progression are not understood. He...
Changes in intracellular pH (pHi) and cytosolic calcium concentration ([Ca2+]c) caused by the glutam...
The detection of H$^{+}$ concentration variations in the extracellular milieu is accomplished by a s...
Local acidification is a common feature of many disease processes such as inflammation, infarction, ...
Alterations in the (bio)chemical and physical microenvironment of cells accompany and often promote ...
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...
Intracellular pH (pHi) and Ca(2+) regulate essentially all aspects of cellular activities. Their int...