Intraerythrocytic Adaptation to Anemia
John Torrance, PAUL H. JACOBS, Andrea Restrepo, J. W. Eschbach, Claude J. M. Lenfant, C. A. Finch
Abstract
John Torrance, PAUL H. JACOBS, Andrea Restrepo, J. W. Eschbach, Claude J. M. Lenfant, C. A. Finch
Abstract
The role of erythrocyte 2,3-diphosphoglycerate (2,3-DPG) in increasing the availability of hemoglobin oxygen in anemia was investigated. Measurements of 2,3-DPG and of oxygen dissociation (P50) were carried out on 57 normal subjects and 114 subjects with anemia. Twenty normal nonsmoking males had a mean hemoglobin of 15.3 g per 100 ml, a mean DPG of 4.83 mM and a mean P50 of 27.1 mm of mercury. Twenty normal nonsmoking females had a mean hemoglobin lower by 2.6 g per 100 ml, a DPG higher by 0.5 mM and a P50 increased by 0.4 mm of mercury DPG. P50 rose progressively with decreasing hemoglobin concentrations. For each gram of hemoglobin fall, there was a DPG increase of about 0.23 mM and a P50 increase of about 0.30 mm of mercury. Increases in adenosine triphosphate also occurred but, because of the smaller amount involved, had less effect on the oxygen dissociation curve. A rise in inorganic phosphate level had no demonstrable effect, but in vivo pH changes appear of considerable importance. It was calculated that DPG-induced changes in hemoglobin affinity for oxygen may compensate for up to half the oxygen deficit in anemia.
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The role of erythrocyte 2,3-diphosphoglycerate (2,3-DPG) in increasing the availability of hemoglobin oxygen in anemia was investigated. Measurements of 2,3-DPG and of oxygen dissociation (P50) were carried out on 57 normal subjects and 114 subjects with anemia. Twenty normal nonsmoking males had a mean hemoglobin of 15.3 g per 100 ml, a mean DPG of 4.83 mM and a mean P50 of 27.1 mm of mercury. Twenty normal nonsmoking females had a mean hemoglobin lower by 2.6 g per 100 ml, a DPG higher by 0.5 mM and a P50 increased by 0.4 mm of mercury DPG. P50 rose progressively with decreasing hemoglobin concentrations. For each gram of hemoglobin fall, there was a DPG increase of about 0.23 mM and a P50 increase of about 0.30 mm of mercury. Increases in adenosine triphosphate also occurred but, because of the smaller amount involved, had less effect on the oxygen dissociation curve. A rise in inorganic phosphate level had no demonstrable effect, but in vivo pH changes appear of considerable importance. It was calculated that DPG-induced changes in hemoglobin affinity for oxygen may compensate for up to half the oxygen deficit in anemia.
Key concepts: Hemoglobin, Oxygen–haemoglobin dissociation curve, Diphosphoglycerate, P50, Oxygen, Anemia, Medicine, Internal medicine