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Biomedical subjects

C Bron

Publications and source records attributed to C Bron.

83 records · Page 5Linked to original sources

Rabbit antiserum to human thymocyte membranes: specificity for normal and malignant T-lymphocytes.

An antiserum was obtained by immunization of rabbits with human thymocyte membrane fractions. After appropriate absorptions, the antiserum was shown to detect specifically a population of T-cells. When tested by complement-mediated cytotoxicity the antiserum lysed 95% of thymocytes, 65% of normal PBL and 45% of tonsillar lymphocytes. It was also cytotoxic for three different T-cell lines (MOLT-4, CCRF-CEM and CCRF-HSB-2). When peripheral or tonsillar lymphocytes were separated into populations enriched in B- and T-cells, the percentage of cells lysed by the antiserum correlated well with the proportion of E-rosetting cells. Treatment of PBL with the antiserum and complement resulted in an increase of SmIg-positive B-cells in the residual cell fraction, which could no longer form E-rosettes. Treatment of PBL with the antiserum alone completely inhibited the E-rosette formation. The cytotoxic index on PBL from patients with various lymphoid disorders always correlated with the proportion of T-cells as assessed by E-rosette formation. Finally, the absorptive capacity of thymocytes for the antiserum was ten times higher as compared to that of PBL or tonsil cells.

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Production of xenogeneic and allogeneic antisera specific for mouse thymus-derived lymphocytes.

Xeongeneic and allogeneic antisera were raised in rabbits and mice using purified mouse T cell-specific antigens. These antisera were shown to be reactive in complement and antibody-dependent cell-mediated cytotoxicity tests as well as in immunofluorescence, with 30% of mouse spleen cells, 80% of lymph node cells and 100% of thymocytes or various T lymphoblastoid cell lines labeled. No reaction could be detected with bone marrow cells or non-T cell lines. Both types of reagents bound to the same spleen lymphocyte subpopulations and competed for the same antigenic sites as anti-Thy-1.2 alloantiserum. These antisera raised with small amounts of immunogens did not require any absorption to be rendered specific for mouse T cells.

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Studies of mouse-brain-associated T-lymphocyte antigens.

Xeno- and alloantigens shared by mouse brain, thymocytes and thymus-derived lymphocytes were isolated from brain by butanol extraction, followed by Sephadex G-200 column chromatography and preparative polyacrylamide gel electrophoresis, both in the presence of SDS. The antigenic activity, as tested by inhibition of complement-mediated cytotoxicity using a xenogeneic antiserum directed against T cell-specific antigens (anti-MTLA), was enriched 50-fold during the purification procedure. Xenogeneic and allogeneic antisera which were specific for mouse T-lymphocytes, could be obtained by immunization of rabbits and mice with the partially purified antigens.

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