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- W2266234028 abstract "Classically it is accepted that the reduced NAD formed during the oxidation of ~-glyceraldehyde-3-phosphate into 1,3-phospho-~-glycerate is reoxidized via the mitochondria1 shuttles or through the formation of lactate or alcohol, thus permitting the glycolysis to proceed. Little is known about the control the cell exerts on the destiny of the reducing equivalents, a phenomenon on which many functions of the cell depend. For instance, the regulation of the cell volume involves not only the existence of a cation pump, but also the activity of metabolic sequences leading to the formation of nitrogen derivatives such as taurine, amino acids, etc. (for a review see SCHOFFENIELS, 1967~; FLORKIN and SCHOFFENIELS, 1968). Aquatic Invertebrates are particularly well suited to study the factors controlling these phenomena since most of them are able to live in media of various concentrations. Since the osmotic pressure of the blood is lower in a dilute medium than in a concentrated one, the cells are subjected to an osmotic stress. If they were to behave as perfect osmometers, they would swell or shrink, as the case may be. However, when dealing with good euryhaline species, the volume change is negligible. The extent to which a cell shrinks or swells may indeed be taken as a good indication of the euryhaline ability of the species (LANGE, 1964). As shown by FLORKIN and his collaborators (see FLORKIN, 1956 ; FLORKIN and SCHOFFENIELS, 1965) the volume change is prevented through the control that the cell exerts on the concentration of osmotically active ions or molecules present in the intracellular fluid. Taurine" @default.
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- W2266234028 date "1968-01-01" @default.
- W2266234028 modified "2023-10-05" @default.
- W2266234028 title "The Control of Intracellular Hydrogen Transport by Inorganic Ions" @default.
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- W2266234028 doi "https://doi.org/10.3109/13813456809058710" @default.
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