Guinea pig T lymphocyte development analyzed by enzyme histocytochemistry, monoclonal antibodies, and flow cytometry. 1985

J M Elias, and J Chiba, and E M Shevach, and H P Godfrey

Studies of T (thymus-derived) lymphocyte ontogeny in the guinea pig have been hampered by the lack of suitable antigenic or other markers for various T cell subpopulations in this species. Monoclonal antibodies that recognize three distinct surface proteins of guinea pig T cells and react with all peripheral T cells have been used in combination with membrane alkaline phosphatase (AP) to characterize stages of guinea pig T cell development and to determine anatomical localization of different T cell subpopulations. Flow cytofluorographic analysis of thymus, spleen, and lymph node lymphocytes was used to characterize monoclonal antibody specificity. Cortical thymocytes in tissue sections expressed membrane AP activity and contained nuclear terminal deoxynucleotidyl transferase; medullary thymocytes reacted strongly with one of the monoclonal antibodies (8BE6), minimally with a second (5CD2), and not at all with a third (11AE3). In contrast, polyclonal rabbit antiguinea pig T cell antiserum reacted with both cortical and medullary thymocytes. Staining of tissue sections of lymph node and spleen revealed AP+ lymphocytes to be present peripheral to the mantle region of lymph node follicles and to be randomly scattered throughout the splenic red pulp. T cells reactive with monoclonal antibodies were located primarily in paracortical regions of lymph node and the central region around the periarteriolar regions of the spleen. Dual staining of frozen sections and cell suspension of guinea pig lymphoid tissues for AP activity and surface proteins unique to T cells showed that AP+ cells lacked T cell markers. Dual staining for AP activity and surface immunoglobulins or esterase activity showed that AP+ cells are not likely to be derived from either B cell or monocyte-macrophage lineages. AP+ cells in guinea pig secondary lymphoid tissue may represent a unique subset of lymphocytes of unknown function.

UI MeSH Term Description Entries
D007124 Immunoenzyme Techniques Immunologic techniques based on the use of: (1) enzyme-antibody conjugates; (2) enzyme-antigen conjugates; (3) antienzyme antibody followed by its homologous enzyme; or (4) enzyme-antienzyme complexes. These are used histologically for visualizing or labeling tissue specimens. Antibody Enzyme Technique, Unlabeled,Enzyme Immunoassay,Enzyme-Labeled Antibody Technique,Immunoassay, Enzyme,Immunoperoxidase Techniques,Peroxidase-Antiperoxidase Complex Technique,Peroxidase-Labeled Antibody Technique,Antibody Enzyme Technic, Unlabeled,Enzyme-Labeled Antibody Technic,Immunoenzyme Technics,Immunoperoxidase Technics,Peroxidase-Antiperoxidase Complex Technic,Peroxidase-Labeled Antibody Technic,Antibody Technic, Enzyme-Labeled,Antibody Technic, Peroxidase-Labeled,Antibody Technics, Enzyme-Labeled,Antibody Technics, Peroxidase-Labeled,Antibody Technique, Enzyme-Labeled,Antibody Technique, Peroxidase-Labeled,Antibody Techniques, Enzyme-Labeled,Antibody Techniques, Peroxidase-Labeled,Enzyme Immunoassays,Enzyme Labeled Antibody Technic,Enzyme Labeled Antibody Technique,Enzyme-Labeled Antibody Technics,Enzyme-Labeled Antibody Techniques,Immunoassays, Enzyme,Immunoenzyme Technic,Immunoenzyme Technique,Immunoperoxidase Technic,Immunoperoxidase Technique,Peroxidase Antiperoxidase Complex Technic,Peroxidase Antiperoxidase Complex Technique,Peroxidase Labeled Antibody Technic,Peroxidase Labeled Antibody Technique,Peroxidase-Antiperoxidase Complex Technics,Peroxidase-Antiperoxidase Complex Techniques,Peroxidase-Labeled Antibody Technics,Peroxidase-Labeled Antibody Techniques,Technic, Enzyme-Labeled Antibody,Technic, Immunoenzyme,Technic, Immunoperoxidase,Technic, Peroxidase-Antiperoxidase Complex,Technic, Peroxidase-Labeled Antibody,Technics, Enzyme-Labeled Antibody,Technics, Immunoenzyme,Technics, Immunoperoxidase,Technics, Peroxidase-Antiperoxidase Complex,Technics, Peroxidase-Labeled Antibody,Technique, Enzyme-Labeled Antibody,Technique, Immunoenzyme,Technique, Immunoperoxidase,Technique, Peroxidase-Antiperoxidase Complex,Technique, Peroxidase-Labeled Antibody,Techniques, Enzyme-Labeled Antibody,Techniques, Immunoenzyme,Techniques, Immunoperoxidase,Techniques, Peroxidase-Antiperoxidase Complex,Techniques, Peroxidase-Labeled Antibody
D008198 Lymph Nodes They are oval or bean shaped bodies (1 - 30 mm in diameter) located along the lymphatic system. Lymph Node,Node, Lymph,Nodes, Lymph
D008297 Male Males
D005434 Flow Cytometry Technique using an instrument system for making, processing, and displaying one or more measurements on individual cells obtained from a cell suspension. Cells are usually stained with one or more fluorescent dyes specific to cell components of interest, e.g., DNA, and fluorescence of each cell is measured as it rapidly transverses the excitation beam (laser or mercury arc lamp). Fluorescence provides a quantitative measure of various biochemical and biophysical properties of the cell, as well as a basis for cell sorting. Other measurable optical parameters include light absorption and light scattering, the latter being applicable to the measurement of cell size, shape, density, granularity, and stain uptake. Cytofluorometry, Flow,Cytometry, Flow,Flow Microfluorimetry,Fluorescence-Activated Cell Sorting,Microfluorometry, Flow,Cell Sorting, Fluorescence-Activated,Cell Sortings, Fluorescence-Activated,Cytofluorometries, Flow,Cytometries, Flow,Flow Cytofluorometries,Flow Cytofluorometry,Flow Cytometries,Flow Microfluorometries,Flow Microfluorometry,Fluorescence Activated Cell Sorting,Fluorescence-Activated Cell Sortings,Microfluorimetry, Flow,Microfluorometries, Flow,Sorting, Fluorescence-Activated Cell,Sortings, Fluorescence-Activated Cell
D006168 Guinea Pigs A common name used for the genus Cavia. The most common species is Cavia porcellus which is the domesticated guinea pig used for pets and biomedical research. Cavia,Cavia porcellus,Guinea Pig,Pig, Guinea,Pigs, Guinea
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D000911 Antibodies, Monoclonal Antibodies produced by a single clone of cells. Monoclonal Antibodies,Monoclonal Antibody,Antibody, Monoclonal
D013154 Spleen An encapsulated lymphatic organ through which venous blood filters.
D013194 Staining and Labeling The marking of biological material with a dye or other reagent for the purpose of identifying and quantitating components of tissues, cells or their extracts. Histological Labeling,Staining,Histological Labelings,Labeling and Staining,Labeling, Histological,Labelings, Histological,Stainings
D013601 T-Lymphocytes Lymphocytes responsible for cell-mediated immunity. Two types have been identified - cytotoxic (T-LYMPHOCYTES, CYTOTOXIC) and helper T-lymphocytes (T-LYMPHOCYTES, HELPER-INDUCER). They are formed when lymphocytes circulate through the THYMUS GLAND and differentiate to thymocytes. When exposed to an antigen, they divide rapidly and produce large numbers of new T cells sensitized to that antigen. T Cell,T Lymphocyte,T-Cells,Thymus-Dependent Lymphocytes,Cell, T,Cells, T,Lymphocyte, T,Lymphocyte, Thymus-Dependent,Lymphocytes, T,Lymphocytes, Thymus-Dependent,T Cells,T Lymphocytes,T-Cell,T-Lymphocyte,Thymus Dependent Lymphocytes,Thymus-Dependent Lymphocyte

Related Publications

J M Elias, and J Chiba, and E M Shevach, and H P Godfrey
October 1986, Mikrobiyoloji bulteni,
J M Elias, and J Chiba, and E M Shevach, and H P Godfrey
January 1987, Cancer detection and prevention. Supplement : official publication of the International Society for Preventive Oncology, Inc,
J M Elias, and J Chiba, and E M Shevach, and H P Godfrey
February 2005, Journal of immunological methods,
J M Elias, and J Chiba, and E M Shevach, and H P Godfrey
March 1988, Gan no rinsho. Japan journal of cancer clinics,
J M Elias, and J Chiba, and E M Shevach, and H P Godfrey
January 2001, Wiadomosci lekarskie (Warsaw, Poland : 1960),
J M Elias, and J Chiba, and E M Shevach, and H P Godfrey
August 1982, The American review of respiratory disease,
J M Elias, and J Chiba, and E M Shevach, and H P Godfrey
February 1988, Kekkaku : [Tuberculosis],
J M Elias, and J Chiba, and E M Shevach, and H P Godfrey
May 1993, Clinical and experimental allergy : journal of the British Society for Allergy and Clinical Immunology,
J M Elias, and J Chiba, and E M Shevach, and H P Godfrey
December 1985, Journal of immunology (Baltimore, Md. : 1950),
J M Elias, and J Chiba, and E M Shevach, and H P Godfrey
March 1995, Cytometry,
Copied contents to your clipboard!