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H Stockinger

Publications and source records attributed to H Stockinger.

87 records · Page 5Linked to original sources

Monoclonal antibodies to human myelomonocyte differentiation antigens in the diagnosis of acute myeloid leukemia.

The immunological definition of malignant lymphatic cells has already been routinely applied by many laboratories over a number of years. Today it is clear and undisputed that the phenotypic data obtained in that way are often very useful and supporting. The immunological definition of non-lymphoid leukemias is not yet as far advanced. Additional surface markers for the recognition of poorly differentiated non-lymphoid cells are clearly needed. In this paper ten monoclonal antibodies to myeloid surface antigens are described. It is hoped that they are a useful addition to the presently available relatively small panel of well studied myeloid surface markers which are displayed by immature malignant blast cells.

Antibodies, Monoclonal↗

Exposure by desialylation of myeloid antigens on acute lymphoblastic leukemia cells.

The 3-fucosyl-N-acetyllactosamine structure, a sugar sequence contained in the human milk oligosaccharide lacto-N-fucopentaose III, is recognized by most of the granulocyte-specific monoclonal antibodies (MoAb) reported in the literature, including the six MoAb from our laboratory. Blast cells from patients with acute myeloblastic leukemia (AML) displayed a heterogeneous reaction pattern when they were exposed to MoAb against this moiety, and the proportion of reactive cells in individual cell samples was highly variable. The intensity of the reaction was strongly enhanced by neuraminidase treatment of AML blasts, and reactive structures were exposed on previously negative AML blast cells. Surprisingly, this granulocyte-associated antigen was exposed by desialylation not only on malignant myeloid precursor cells but also on common acute lymphoblastic leukemia cells. No such effect was seen when normal peripheral blood lymphocytes, lymphocytes from patients with chronic lymphatic leukemia, or blast cells from patients with B-cell acute lymphoblastic leukemia, acute erythroid leukemia, and acute megakaryoblastic leukemia were treated with neuraminidase.

Animals↗

Frequency analysis of cytotoxic T lymphocyte precursors in chimeric mice. Evidence for intrathymic maturation of clonally distinct self-major histocompatibility complex- and allo-major histocompatiblilty complex-restricted virus-specific T cells.

To study whether the thymic major histocompatibility complex (MHC) imposes a constraint on the receptor repertoire of maturating cytotoxic T lymphocyte (CTL) precursors, the restriction phenotypes of virus-specific CTL of MHC-compatible and of MHC-incompatible thymus- and bone marrow-grafted (A X B)F1 chimeric mice were compared. Dependent on the mode of in vitro sensitization, thymocytes or splenocytes of both types of chimeric mice generated Sendai virus-specific, self-MHC-or allo-MHC-restricted CTL. By applying the limiting-dilution technique, the CTL-precursor (CTL-P) frequencies of self-MHC-restricted and allo-MHC-restricted virus-specific T cells as well as of alloreactive T cells were determined. The data obtained revealed that independent of MHC differences between thymus and bone marrow, the frequencies of self-MHC-restricted and allo-MHC-restricted CTL-P were comparable, and in the same older of magnitude as those previously determined in conventionally reared mice. Self-MHC-restricted, virus-specific CTL-P were in a three- to fivefold excess over allo-MHC-restricted CTL-P. A segregation analysis revealed that clonally distinct CTL-P give rise to either self-restricted or allo-MHC-restricted, virus-specific CTL. Both sets were found not only in the spleen, but also in the thymus of chimeric mice, formally demonstrating the intrathymic differentiation pathway of self-MHC as well of allo-MHC-restricted CTL-P. These data reveal no major constraint of the thymic MHC on the capacity of T cells to recognize viral antigens either in the context of self-MHC or of allogeneic MHC products.

Animals↗

H-2 restriction as a consequence of intentional priming. Frequency analysis of alloantigen-restricted, trinitrophenyl-specific cytotoxic T lymphocyte precursors within thymocytes of normal mice.

An in vitro acute-depletion protocol was used to detect trinitrophenyl (TNP)-specific, allo-major histocompatibility complex (MHC)-restricted cytotoxic T lymphocytes (CTL) within thymocytes of inbred mice. After removal of alloreactivity, the negatively selected cells could be sensitized to become TNP-specific, allo-MHC-restricted cytotoxic T cells. A precursors frequency analysis revealed a three- to ninefold lower frequency of allo-MHC-restricted CTL precursors (CTL-P) as compared to self-MHC-restricted CTL-P. The specificity analysis of clonally distributed allo-MHC-restricted CTL-P excluded cross-reactivity as an explanation of allo-MHC restriction. These results provide direct evidence that thymic T cells are composed of a mixture of self-MHC- and allo-MHC-restricted immunocompetent T cells and that antigen-driven selection of precommitted T cells dictates the H-2-restriction phenotype, i.e., H-2 restriction is a consequence of priming.

Animals↗

Herpes-Simplex-virus-specific, H-2Dk-restricted T lymphocytes bear receptors for H-2Dd alloantigen.

Cytotoxic T lymphocytes generated in the course of an HSV-infection of CBA (H-2k) mice not only lyse syngeneic, virus-infected target cells but also cross-react with noninfected taraget cells expressing the Dd alloantigen. On the effector cell level, this alloreactivity is mediated by virus-specific CTL's that are restricted to H-2Dk determinants. On the prekiller cell level, the anti-HSV-reactive T cells exhibiting cross-reactivity for Dd alloantigen could be positively selected on H-2d spleen-cell monolayers. After differentiation into cytolytic effector cells, target cells expressing Dd alloantigens and syngeneic HSV-infected target were lysed with equal efficiency. The results imply that the phenomenon of H-2-restricted versus nonrestricted T-cell reactivity is not due to distinct T-cell subsets, but rather is dependent on the antigeneic determinants recognized.

Animals↗

H-2 restriction as a consequence of intentional priming: T cells of fully allogeneic chimeric mice as well as of normal mice respond to foreign antigens in the context of H-2 determinants not encountered on thymic epithelial cells.

Fully allogeneic chimeras were able to develop in vitro alloantigen-specific, as well as H-2-restricted, Sendai virus-specific cytotoxic T-lymphocyte (CTL) response. Depending on the immunization regimen used, Sendai virus-specific CTL responses were restricted to the H-2 antigens of either the stem cell donor or the thymus. Similarly, unprimed splenic T cells of normal mice were found to contain CTL-precursor cells that specifically reacted against Sendai virus or trinitrophenyl derivatives in the context of allogeneic major histocompatibility complex determinants that had not been encountered during their thymic differentiation. A frequency analysis of allogeneically versus syngeneically restricted virus-specific CTL precursors present in splenic T cells showed a ratio of about 1 to 6. These results provide evidence that H-2 restriction of trinitrophenyl- or Sendai virus-specific T cells is dictated by the complex type of the antigen-presenting cell and thus appears to be independent of the type of thymus in which the T cells have undergone maturation.

Animals↗

CD31.

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Amino Acid Sequence↗

CD87.

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Amino Acid Sequence↗

CD147.

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Amino Acid Sequence↗