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B B Knowles

Publications and source records attributed to B B Knowles.

At least 145 records · Page 8Linked to original sources

Monoclonal antibody defining a stage-specific mouse embryonic antigen (SSEA-1).

A monoclonal antibody derived by fusion of mouse myeloma cells with spleen cells from a mouse immunized with F9 teratocarcinoma cells is described. This antibody, which reacts with embryonal carcinoma cells of mouse and human origin and with some preimplantation stage mouse embryos, defines an embryonic stage-specific antigen. This stage-specific antigen (SSEA-1) is first detected on blastomeres of 8-cell stage embryos. Trophectodermal cells are transitorily positive; however, each cell in the inner cell mass eventually expresses this antigen.

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Complement-mediated antiserum cytotoxic reactions to human chromosome 7 coded antigen(s): immunoselection of rearranged human chromosome 7 in human-mouse somatic cell hybrids.

Immunoselection via complement-dependent lysis of human-mouse somatic cell hybrids containing chromosome 7, with antisera reactive to cell surface antigen(s) coded for by chromosome 7, has resulted in growth of somatic cell hybrids containing rearranged human chromosome 7s. Investigation of these hybrids has localized the gene(s) coding for the relevant cell surface antigen(s) to the short arm of human chromosome 7. The simian virus 40 integration site and the gene coding for human beta-glucuronidase appear to be localized to the long arm of chromosome 7 in this hybrid clone.

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Tumorigenicity of intraspecific somatic cell hybrids in nude mice.

Intraspecific somatic cell hybrids between normal mouse peripheral blood lymphocytes and a highly tumorigenic L-cell line (C1-1D) produced tumors in nude mice. While the hybrid cells were tumorigenic, the length of time necessary for tumor appearance and the size of the tumor varied. Correlation between the growth rate of the parenteral and hybrid cells in vitro or their plating efficiency in methyl cellulose with the rapidly of tumor growth in vivo was not found.

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Reactivity to SV40 T antigen in athymic (nude), anti-thymocyte serum-treated, and normal mice.

Antisera prepared in syngeneic mice by hyperimmunization with intact SV40-transformed mouse cells or with somatic cell hybrids between SV40-transformed human and normal mouse cells exhibit anti-SV40 tumor (T) antigen reactivity. Athymic mice bearing tumors formed by SV40-transformed mouse, human or mouse-human hybrids were not reactive with SV40 T antigen. Anti-thymocyte serum (ATS)-treated mice also lacked T antigen reactivity during suppressive treatment but developed antibody to T antigen after discontinuing ATS treatment and tumor regression. We conclude that that presence of growing tumors in the mouse is not necessary for the production of anti-SV40 T antigen antibodies but that helper thymus-derived cells are essential for the humoral response.

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Cell-mediated immunoselection against cell-surface antigens of somatic cell hybrids.

Cytotoxic lymphoid cells derived from in vivo immunization of mice across H2 barriers were utilized in in vitro cytotoxicity assays. The target cells were somatic cell hybrids derived from parental cells differing at the H2 locus. The hybrid cells surviving cytotoxicity were grown to confluent populations and the H2 antigens selected against were no longer demonstrable by indirect immunofluorescence. Comparative karyology of hybrid cells expressing both parental H2 types before immunoselection with hybrid cells surviving immunoselection revealed a decrease in the number of murine chromosomes number 17, suggesting that those cells surviving cytotoxicity had spontaneously lost these chromosomes prior to the selection event. The possibility of immunoconstruction of somatic cell hybrids on the basis of their cell-surface antigens is discussed.

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Immunosurgery of mouse blastocyst.

Mouse blastocysts with and without zonae pellucidae are susceptible to complement-dependent antibody cytotoxicity. Exposure of blastocysts to rabbit anti-mouse serum together with complement results in the death of all cells; however, when blastocysts are exposed to antiserum alone and then transferred to guinea pig complement, only the trophoblastic cells are killed. These results suggest that the mouse blastocyst is not permeable for certain antibodies. The inner cell masses can easily be separated from the remnants of trophoblastic cells and are then able to grow and differentiate in vitro. This method of immunosurgery can be used to obtain large quantities of pure inner cell masses in a relatively short period of time.

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The use of flow microbluorimetry in the analysis of the phenotype expression of mouse histocompatibility antigens.

Quantitation of the expression of cell surface antigens has hitherto been limited to analysis by either cytotoxicity tests or radioimmune assays (5, 15). We report here the use of a new methodology to analyze and quantitate the expression of mouse histocompabililty antigens (H-2 locus) in hybrid clones and parental cell types. The binding of fluorescein-tagged antibody is measured on a cell-to-cell basis in large viable cell populations using flow microfluorimetric techniques. These techniques have been used to measure hapten and immunoglobulin binding to lymphocyte populations (8, 9, 14). However, this is the first report in which these techniques have been used to examine the expression of the H-2 locus. The advantage of this approach is twofold: first, a large and statistically significant sample population may be analyzed one cell at a time, thus revealing the fine detail of heterogeneity in the expression of the cell surface markers within a population. Second, as has been demonstrated for analysis of specific components of the immune system, this method does permit fluorescence-activated sorting of cell types according to their different surface populations (8, 9, 14).

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