Energy Metabolism of Human Neutrophils during Phagocytosis
Open Access
- 1 September 1982
- journal article
- research article
- Published by American Society for Clinical Investigation in Journal of Clinical Investigation
- Vol. 70 (3) , 550-557
- https://doi.org/10.1172/jci110647
Abstract
Detailed quantitative studies were performed on the generation and utilization of energy by resting and phagocytosing human neutrophils. The ATP content was 1.9 fmol/cell, was constant during rest, and was not influenced by the presence or absence of glucose in the medium. The intracellular content of phosphocreatine was less than 0.2 fmol/cell. In the presence of glucose, ATP was generated almost exclusively from lactate produced from glucose taken up from the surrounding medium. The amount of lactate produced could account for 85% of the glucose taken up by the cells, and the intracellular glycosyl store, glycogen, was not drawn upon. The rate of ATP generation as calculated from the rate of lactate production was 1.3 fmol/cell/min. During phagocytosis, there was no measurable increase in glucose consumption or lactate production, and the ATP content fell rapidly to 0.8 fmol/cell. This disappearance of ATP was apparently irreversible since no corresponding increase in ADP or AMP was observed. It therefore appears that this phagocytosis-induced fall in ATP concentration represents all the extra energy utilized in human neutrophils in the presence of glucose. In the absence of glucose, the rate of ATP generation in the resting cell was considerably smaller, 0.75 fmol/cell per min, as calculated from the rate of glycolysis, which is sustained exclusively by glycogenolysis. Under this condition, however, phagocytosis induces significant enhancement of glycogenolysis and the rate of lactate production is increased by 60%, raising the rate of ATP generation to 1.2 fmol/cell per min. Nonetheless, the ATP content drops significantly from 1.9 to 1.0 fmol/cell. Neutrophils from patients with chronic granulomatous disease have the same rate of glycolysis and the same ATP content as normal cells, thus confirming that the defective respiration of these cells does not affect their energy metabolism.This publication has 30 references indexed in Scilit:
- 31P NMR spectroscopy of phorbol-myristate-acetate stimulated polymorphonuclear human leukocytesFEBS Letters, 1981
- Kinetics of fusion of the cytoplasmic granules with phagocytic vacuoles in human polymorphonuclear leukocytes. Biochemical and morphological studies.The Journal of cell biology, 1980
- Prenatal Diagnosis of Chronic Granulomatous DiseaseNew England Journal of Medicine, 1979
- Superoxide Production by Digitonin-Stimulated Guinea Pig GranulocytesJournal of Clinical Investigation, 1978
- Differences in Oxygen Metabolism of Phagocytosing Monocytes and NeutrophilsJournal of Clinical Investigation, 1978
- H2O2 Release from Human Granulocytes during PhagocytosisJournal of Clinical Investigation, 1977
- The Influence of Insulin on Glucose Permeability and Metabolism of Human GranulocytesEuropean Journal of Biochemistry, 1975
- Pyridine nucleotide-dependent superoxide production by a cell-free system from human granulocytes.Journal of Clinical Investigation, 1975
- A Modified Flow Microcalorimeter Adapted for the Study of Human Leucocyte PhagocytosisScandinavian Journal of Clinical and Laboratory Investigation, 1973
- The Energy Metabolism of Human‐Blood Polymorphonuclear CellsEuropean Journal of Biochemistry, 1972