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Biomedical subjects

N Young

Publications and source records attributed to N Young.

At least 127 records · Page 7Linked to original sources

Antithymocyte globulin reacts with many normal human cell types.

Antithymocyte globulin (ATG) is frequently effective therapy for aplastic anemia. Its mechanism of action is often assumed to be upon a lymphocyte inhibitor of hematopoiesis. However, specificity for T lymphocytes would not be anticipated from consideration of the method of preparing ATG. In fact, using flow microfluorometry and fluorescence immunohistochemistry, we have found that ATG binds to virtually all circulating lymphocytes, granulocytes, and platelets, as well as to bone marrow cells. Extensive absorption of ATG with either granulocytes or lymphocytes does not eliminate reactivity with the opposite cells, indicating that ATG recognizes some distinct antigens on each cell type. Treatment of cells with ATG blocks the binding of monoclonal antibodies directed against either lymphocyte differentiation or histocompatibility antigens. ATG also binds to visceral tissues, including thymus and testis cell membranes and the nuclear and cytoplasmic components of tonsil, kidney, liver, breast, lung, and intestine. In vitro cytotoxicity of ATG was demonstrated for both T and non- T lymphocytes and platelets. Despite its name, ATG is not specific for a particular cell type, and it would be premature to conclude that its effect is mediated through a specific lymphocyte population.

Antigen-Antibody Reactions↗

Platelet and leucocyte calmodulins: isolation and characterisation.

The calcium-dependent regulatory proteins, calmodulins, have been isolated from human blood platelets and guinea pig peritoneal polymorphonuclear leucocytes using the urea methanol procedure of Grand et al. [Biochem. J. 177, 521-529 (1978)]. The calmodulins were purified to homogeneity as indicated by polyacrylamide gel electrophoresis and both proteins comigrated with bovine brain calmodulin with mobilities corresponding to molecular weights of 16 000-17 000. The yield of calmodulin from platelets was higher on a wet weight basis than the yield from leucocytes but the former compared favourably with yields reported for brain and other tissues. Both calmodulin preparations significantly stimulated brain cyclic nucleotide phosphodiesterase, erythrocyte ghost Ca2+ ATPase and platelet phosphorylase kinase activities at the microgram level. Stimulation of Lubrol-solubilised brain adenylate cyclase was only marginally significant with platelet calmodulin and rarely demonstrable with the leucocyte preparations. Although biological activities of both proteins were retained during storage at -20 degrees C, higher-molecular-weight aggregates slowly formed which could not be dissociated during dodecylsulphate/mercaptoethanol denaturation.

2',3'-Cyclic-Nucleotide Phosphodiesterases↗

Gray-scale ultrasonic demonstration of nephrocalcinosis.

Nephrocalcinosis was diagnosed by means of gray-scale somography in a premature infant with severe bronchopulmonary dysplasia. The examination provided a way of localizing faint calcifications seen on a plain abdominal radiograph.

Humans↗

Oncogenicity of a nude mouse cell line transformed by a human papovavirus.

Primary cultures of NIH nude mouse (nu/nu) kidney cells were transformed with a human papovavirus (MMV). The transformed cell line expressed T-antigen, and MMV DNA was found to be associated with the cell DNA. When NIH nu/nu mice were inoculated with the transformed cells, they developed tumors at the injection site but failed to generate detectable levels of T-antibody. A control group of nu/+ littermates rejected the tumor inoculum but mounted an antibody response to T-antigen. It was proposed that nude mouse cells may be a suitable system to test oncogenicity of in vitro transformed cells.

Animals↗