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Biomedical subjects

H Odeberg

Publications and source records attributed to H Odeberg.

47 records · Page 3Linked to original sources

Cell production and cell function in human cyclic neutropenia.

In vitro studies have been done on haematopoietic cells from a patient with cyclic neutropenia characterized by severe depression of blood neutrophil levels every 21 days. Serial blood counts reveal periodic fluctuations in neutrophils, monocytes and reticulocytes. Agar culture of marrow cells shows normal concentration of colony forming cells. The percentage of colony forming cells in S phase is highly increased during profound neutropenia and normal during the recovery phase relating the granulocyte production to the peripheral neutrophil level. Studies of ingestion rate, bactericidal activity, lactate production and glucose oxidation during phagocytosis in isolated granulocytes show normal results. Also the ingestion rate in isolated monocytes is normal. Serial karyotype analyses of marrow cells during the neutrophil cycle display a normal pattern. Serum myeloperoxidase levels vary inversely with the peripheral neutrophil count indicating increased granulopoietic activity during profound neutropenia, which might be associated with non effective granulopoiesis during profound neutropenia, leading to a lack of granulocyte reserves in the marrow.

Adolescent↗

Antibacterial activity of cationic proteins from human granulocytes.

Human granulocytes contain several cationic proteins with a molecular weight of approximately 25,000, almost identical amino acid composition, and complete immunologic identity. These proteins possess a chymotrypsin-like protease activity at a neutral pH. The antibacterial activity of the cationic proteins has been studied. Bactericidal activities are found against both Gram-positive (Streptococcus faecalis and Staphylococcus aureus) and Gram-negative (Escherichia coli and Pseudomonas aeruginosa) organisms. Gram-positive bacteria are, however, the most sensitive. The pH-optimum is near neutrality, and the microbicidal activity shows an inverse relationship to the ionic strength, indicating an ionic interaction between the cationic proteins and the bacterial surface. The microbicidal effect of the cationic proteins is generally independent of the chymotrypsin-like activity of the same proteins since the activity against several bacterial species is heat stable while the chymotrypsin-like activity is heat labile. The surface properties of S. aureus that are determined by protein A do not seem to influence the susceptibility to cationic proteins. The properties of the Gram-negative envelope of E. coli that determine the susceptibility to the lytic action of serum do not influence the sensitivity to the action of cationic proteins. The present study shows that cationic proteins of human granulocytes represent one potential microbicidal mechanism that is independent of hydrogen peroxide and myeloperoxidase.

Blood Bactericidal Activity↗

Cationic proteins of human granulocytes. V. Interaction with plasma protease inhibitors.

Several cationic proteins of human granulocytes possess chymotrypsin-like and bactericidal activities. The heat-labile chymotrypsin-like activity is inhibited by serum, owing to complex formation with alpha2-macroglobulin and alpha1-antitrypsin. The molar affinity of the cationic proteins for alpha2-macroglobulin is much higher than that for alpha1-antitrypsin. The results indicate that the molar combining ratios are 1:1 for cationic protein to alpha1-antitrypsin and 2:1 for cationic protein to alpha2-macroglobulin. The proteolytic activity against fibrinogen and casein is inhibited by both alpha2-macroglobulin and alpha1-antitrypsin, whereas the activity against small molecular synthetic substrates is inhibited by alpha1-antitrypsin but not alpha2-macroglobulin. The heat-stable bactericidal action of the cationic proteins against Staphylococcus was also inhibited by serum, probably owing to complex formation with alpha2-macroglobulin and alpha1-antitrypsin.

Blood Proteins↗

Cationic proteins of human granulocytes. IV. Esterase activity.

The purfied antibacterial cationic proteins 1 to 7 (component 1 being the most cationic) of human neutrophil granulocytes have been assayed for enzyme activities. Components 1 to 4 and component 7 exhibited activities on tyrosine esters indicating a chymotrypsin-like activity with a neutral pH optimum. The inhibition of the esterase activity by diisopropyl fluorophosphate and phenylmethyl sulfonylfuoride also indicated the similarity to chymotrypsin, with a serine residue in the active center. In addition, the cationic proteins attacked complex substrates like casein and fibrinogen, suggesting a true proteolytic activity. Since the esterase activity of these proteins is heat-labile but the antibacterial activity against Staphylococcus aureus is heat-stable, it is concluded that the chymotrypsin-like activity is not essential for the microbicidal activity. There is evidence to suggest that the cationic proteins of human granulocytes are present in the cytoplasmic granules and exhibit antibacterial activity after release to the phagocytic vacuole and that, after extrusion from the cell, the proteins might be involved in the mediation of the inflammatory process due to enzyme and cationic activities.

Arginine↗