METALLIC COPPER‐INDUCED GRANULOCYTE EXUDATION IN THE STUDY OF GRANULOCYTOPOIESIS
Michael P. McGarry
Abstract
Michael P. McGarry
Abstract
C3H/HeHa mice implanted with rods of metallic copper (CR) or glass (GR) exudate neutrophil granulocytes and mononuclear cells into the site of rod implant (peritoneal cavity). Exudation in CR mice is substantially greater than in GR animals. In CR mice there is an impressive stimulation of myelopoiesis measured in the femoral marrow subsequent to the initial accumulation in the peritoneal cavity. Serum levels of colony stimulating activity (CSA), an in vitro myeloproliferative stimulating activity, are elevated in such animals, as are femoral marrow agarcolony forming cells (CFC). The procedures is useful to the study of myelopoiesis and myelopoietic regulatory mechanisms.
OpenAlex reports 7 citations for this work. Citation counts describe recorded attention and do not establish research quality.
A contribution statement is not available in the OpenAlex record.
Method details are not available in the OpenAlex metadata.
Findings are not separately available in the OpenAlex metadata.
Limitations are not available in the OpenAlex metadata.
Application details are not available in the OpenAlex metadata.
C3H/HeHa mice implanted with rods of metallic copper (CR) or glass (GR) exudate neutrophil granulocytes and mononuclear cells into the site of rod implant (peritoneal cavity). Exudation in CR mice is substantially greater than in GR animals. In CR mice there is an impressive stimulation of myelopoiesis measured in the femoral marrow subsequent to the initial accumulation in the peritoneal cavity. Serum levels of colony stimulating activity (CSA), an in vitro myeloproliferative stimulating activity, are elevated in such animals, as are femoral marrow agarcolony forming cells (CFC). The procedures is useful to the study of myelopoiesis and myelopoietic regulatory mechanisms.
Key concepts: Myelopoiesis, Granulocyte, Peritoneal cavity, Stimulation, Bone marrow, Peripheral blood mononuclear cell, Granulopoiesis, Haematopoiesis