PubMed HealthSearch

Biomedical subjects

K A Muirhead

Publications and source records attributed to K A Muirhead.

8 recordsLinked to original sources

Manipulation of human B cells to confer immortality.

Electroporation was used to deliver genomic DNA from a lymphoid tumor to activated/stimulated human peripheral blood lymphocytes to create immortalized lymphoid cell lines. Activation of the recipient lymphocytes was essential for efficient immortalization. A panel of human B cell transfectant clones, each phenotypically representing specific stages of differentiation, resulted from the transfection. Monoclonal antibody production was measured, and the level produced depended on the phenotype of the cells, with the more mature B cell transfectants secreting up to 10 micrograms/mL of immunoglobulin. The transfectants were stable with respect to their morphological appearance, growth rate, and antibody production. Chromosome analysis indicated that the transfectants displayed a normal karyotype, devoid of abnormalities. We have shown that electroporation is an effective method of immortalizing human lymphocytes at different stages of differentiation. The transfectants provide a panel of cells that can readily be studied with respect to their phenotypic/karyotypic stability, regulation, and production of immunoglobulin, lymphokines, and growth factors. These data demonstrate the feasibility of generating immortalized human B cells to provide an important resource for the study of B cell differentiation and immortalization.

Antibodies, Monoclonal

Radioactive cell membrane labelling.

Building upon earlier studies with fluorescent probes, the authors describe a new cell tracking compound, PKH95, with a radioactive signal, which has been developed specifically for high-sensitivity cell tracking and biodistribution studies.

Animals

Use of a photolabeling technique to identify nonviable cells in fixed homologous or heterologous cell populations.

Flow cytometric determination of viable versus nonviable cells in fixed samples can be accomplished by utilizing the irreversible binding of photoactivated ethidium monoazide (EMA). EMA is a positively charged molecule which is excluded by cells with intact membranes (viable cells), included by cells with damaged membranes, and can be photochemically crosslinked to nucleic acids using visible light. EMA fluorescence can be excited using a standard argon laser operating at 488 nm and is able to be distinguished from fluorescein and phycoerythrin. Fixation is important when analyzing cells from a potentially infectious origin. EMA is photochemically crosslinked and therefore unable to leak out of cells when removed from the extracellular media, unlike propidium iodide (PI) or other viability stains, which were heretofore commonly used. We demonstrate the usefulness of EMA in combination with fluoresceinated and phycoerythrin labeled monoclonal antibodies in immunophenotyping. The photoaffinity labeling technique allows for a quick and efficient means of identifying nonviable cells which cannot be distinguished on the basis of light-scattering properties.

Affinity Labels

An improved clonal excess assay using flow cytometry and B-cell gating.

In humans with B-cell malignancies, the presence of monoclonal B lymphocytes (clonal proliferation) can be detected by comparing the fluorescence intensity distributions of lymphocytes stained with anti-kappa and anti-lambda reagents. The sensitivity of previously described single-color immunofluorescence techniques to low levels of clonal excess is limited by background from cytophilic immunoglobulins on non-B cells and by the low proportion of circulating B cells in individuals with minimal disease. We have used two-color immunofluorescence and B-cell gating to develop an improved assay that avoids false positives due to non-B cells, without requiring restrictive light scatter gates that may exclude true positives. This method is sensitive to 0.2% monoclonal B cells admixed with fresh normal lymphocytes, to 0.6% monoclonal B cells admixed with normal lymphocytes that have been stored for up to 72 hours, and readily detects 1% monoclonal cells in patient specimens. The two color B-cell gated assay offers sensitivity equivalent to the single-color assay and improved specificity for detection of low levels of clonal excess.

B-Lymphocytes

Procedural guidelines for performing immunophenotyping by flow cytometry.

Flow cytometry is a rapidly expanding technology that is moving from the research laboratory into the clinical laboratory. Recent advances in availability and reproducibility of monoclonal antibody reagents specific for a wide range of cell types coupled with lower costs for increasingly automated flow cytometers with powerful and user friendly data analysis capabilities have made flow cytometry the method of choice for immunophenotyping in the clinical laboratory. However, there is great variability in the level and type of quality assurance procedures used from laboratory to laboratory. A subcommittee established by the National Committee for Clinical Laboratory Standards (NCCLS), composed of representatives from industry, academia, professional societies, and regulatory agencies, has drafted consensus procedures which address specific problems and suggested solutions for performance of immunophenotyping by flow cytometry. This paper is based on the authors' discussions with the NCCLS Committee but does not represent an official NCCLS position. The official NCCLS document on this subject (H42) is expected to be published in 1989.

Adult

Flow cytometric monitoring of human immunodeficiency virus-infected patients. Simultaneous enumeration of five lymphocyte subsets.

The utility of CD4 lymphocytes in monitoring disease progression and prognosis of human immunodeficiency virus (HIV)-infected patients is well established. We have modified a previously described antibody cocktail to provide complete lymphocyte subset analysis on 100-200-microL samples of whole blood. This method optimizes accuracy of CD4 lymphocyte assessments and provides simultaneous assessment of four other lymphocyte subtypes of interest in specimens with absolute lymphocyte counts as low as 300 X 10(6)/L. Lymphocytes are classified as Thelper (CD3+CD4+); Tsuppressor (CD3+CD8+); Tnull (CD3+CD4-CD8-, putative gamma delta T-cell receptor); B (CD19+CD20+); or natural killer (CD3-CD16+CD56+). The method positively discriminates against contamination of lymphocyte scatter gates by monocytes and unlysed erythrocytes and is compatible with a variety of cell preparation procedures. Increased accuracy of CD4 lymphocyte determinations and simultaneous identification of other lymphocyte subsets whose relationship to disease progression is under study make this an efficient and informative method for disease monitoring and evaluation of therapy in HIV-infected patients.

Antibodies, Monoclonal

Antiarthritic and immunoregulatory activity of spirogermanium.

Spirogermanium is a novel metal containing azaspirane compound with reported antitumor activity. The results of the present investigation demonstrate that spirogermanium also exhibits antiarthritic and immunoregulatory activities after p.o. administration to rats. Spirogermanium decreased hindleg inflammatory lesions of adjuvant arthritic rats when administered p.o. before or after the development of the arthritic lesions. After termination of spirogermanium administration, the adjuvant-injected hindleg lesions remained significantly suppressed for at least 2 weeks postdrug treatment; whereas, the uninjected, immune-mediated hindleg inflammation tended to increase postdrug treatment. In multiparameter ex vivo studies, untreated arthritic rats exhibited enhanced cyanine dye fluorescence in peripheral blood monocytes, enhanced interleukin (IL)-1 production by adherent spleen cells and depressed IL-2 and IL-3 production by splenic lymphocytes. Spirogermanium normalized these changes to various degrees, with the exception of the depressed IL-2 and IL-3 production. Spirogermanium administered to normal nonarthritic rats decreased mitogenic responses of spleen cells to Concanavalin A which was found to be caused, at least in part, by enhanced suppressor cell activity. The antiarthritic and immunoregulatory profile of spirogermanium appeared to be different from the profiles of the antiarthritic agents, auranofin and indomethacin.

Animals