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Biomedical subjects

D R Parks

Publications and source records attributed to D R Parks.

25 records · Page 2Linked to original sources

Rapid isolation of cloned isotype switch variants using fluorescence activated cell sorting.

We have used highly specific, directly fluorescein-conjugated heterologous (conventional) and monoclonal antibodies directed against mouse immunoglobulin isotypes in conjunction with the fluorescence activated cell sorter (FACS) to enrich and clone hybridoma cells producing new immunoglobulin heavy chain constant regions. Each variant retains the parental heavy chain variable region and the parental immunoglobulin light chain; thereby each variant binds the same dansyl (DNS) hapten. These isotype switch variants occur at frequencies of approximately 10-5 to 10-6. We were able to isolate the variants by first sorting for an approximate 1000-fold enrichment of the desired immunoglobulin-producing cells, growing these cells for five to nine days, followed by a second 1000-fold enrichment and direct cell cloning into 96 well culture trays. Clones were screened only 3-5 weeks after the original selection for secretion of dansyl-binding immunoglobulin of the selected isotype. Judicious combination of existing methods permits improved analytical techniques using the cell sorter. These include: first, "red" fluorescence staining of dead cells with ethidium bromide or propidium iodide and using the red fluorescence measurement to exclude dead cells from the green fluorescence selection; and second, the use logarithmic amplification of fluorescence signals, allowing for more succinct selection of fluorescence parameters for sorting.

Animals↗

Human trophoblast cell-surface antigens defined by monoclonal antibodies.

A series of monoclonal antibodies has been raised against the human choriocarcinoma cell-line, BeWo. Four antigens, Trop-1, -2, -3, and -4, are defined on normal and malignant trophoblast cells. Trop-1 and Trop-2 appear to be specifically expressed on syncytio- and cytotrophoblasts, whereas Trop-3 and Trop-4 are also detected on various tumor cell lines, normal lymphocytes, and monocytes. Anti-Trop-1 and anti-Trop-2 antibodies might prove useful for detection and isolation of fetal trophoblast cells circulating in pregnant women's blood and for diagnosis and therapy in patients having choriocarcinomas and other germ-cell neoplasms.

Antibodies, Monoclonal↗

Antigen-specific identification and cloning of hybridomas with a fluorescence-activated cell sorter.

Myeloma-spleen cell hybrids (hybridomas) producing antibody to mouse immunoglobulin allotypes have been labeled with fluorescent microspheres coupled with myeloma protein antigens. The ratio of specific to nonspecific microsphere binding by viable hybridoma cells was about 100:1. By using a modified fluorescence-activated cell sorter (FACS), selected hybridoma cells in a mixture have been sorted individually into media in microculture wells, where, with thymocyte feeder cells, they developed into clones producing a desired monoclonal antibody. Viable cells were selected by measurement of their light scattering and autofluorescence properties. Rare antibody-producing clones were obtained without laborious screening and repeated subculturing. This technique should expand the range of monoclonal antibodies readily obtained from hybridomas and greatly facilitate the process of obtaining desired hybridomas.

Animals↗

Identification of cell asymmetry and orientation by light scattering.

Light scattering from chicken red blood cells has been used as a model system to identify the asymmetry of cells. The histogram for forward angle light scattering for these cells is bimodal, the signal size being dependent on the cell orientation. A dual orthogonal scatter system is used to conclusively demonstrate this orientational variation in signal. A third scattering system, using a single incident beam with two orthogonal detectors, is used to further characterize the orientational variation of the scatter signal. In this third system it is shown that the signal in a detector set 90 degrees from the incident beam collects light reflected from the cell surface. The optical selection of cells in specific orientations using these systems may circumvent the need to physically orient cell in flow systems.

Animals↗

Two-color immunofluorescence using a fluorescence-activated cell sorter.

A technique for the analysis of fluorescein and rhodamine in a flow system using a single wavelength of excitation is described. Both optics and electronics are used to discriminate the fluorescein and rhodamine signals. This technique has been used to study the relationship between immunoglobulin M and immunoglobulin D on mouse splenic lymphocytes.

Cell Separation↗

Demonstration of B-cell maturation in X-linked immunodeficient mice by simultaneous three-colour immunofluorescence.

CBA/N mice carrying the X-linked immune deficiency gene (xid) have fewer splenic B cells than normal CBA mice and are unresponsive to a certain class of antigens. Studies of B-cell surface-marker expression and immune responsiveness have led to the commonly accepted idea that the B cells in adult xid mice are immature and resemble the B cells of young (1-3 week old) normal mice. That is, like young animals, xid mice lack cells in the most numerous of three IgM/IgD B-cell subpopulations (designated I in Fig. 1a, b) present in adult spleen. We now report, however, that this picture is an oversimplification and that in fact the B cells in adult xid mice differ from those present in either adult or young normal mice. Using quantitative three-colour fluorescence-activated cell sorter (FACS) analyses, we have compared the correlated expression of IgM, IgD and a newly discovered B-lymphocyte antigen (BLA-1) on splenic B cells in normal and xid mice. We show here (1) that most B cells in adult xid mice (as in normals) are BLA-1- whereas all B cells in young animals are BLA-1+; (2) that the major difference in the IgM/IgD B-cell subpopulations found between xid and normal mice is limited to the BLA-1- cells; and (3) that xid mice have increased numbers of BLA-1+ population III B cells.

Animals↗