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Cellular Immunology | 1983

Fetal calf serum-injected F1 mice spontaneously generate specific anti-parental cytotoxic T lymphocytes in in vitro culture☆

Nola M. Wilkinson; H Ishikawa; Eiro Kubota; Richard W. Dutton; Kazuhisa Saito

Spleen cells from adult (BALB/c x AKR/J)F1 mice primed in vivo with fetal calf serum (FCS) can spontaneously generate anti-parental AKR/J cytotoxic T cells (CTL) in a 5-day in vitro culture containing 5% FCS. This response is distinguished by the following features: (i) it is anti-parental but not anti-self, and (ii) it has specificity for the Kk parental determinant as shown by mapping studies on a variety of targets and antiserum-blocking experiments. Although specifically elicited by FCS and mediated by FCS-induced T-helper cells, it is ascertained that this cytotoxicity is not directed against Kk components modified by absorbed FCS as shown by cold-target competition studies. Further experiments involved a comparative investigation of the patterns of lysis of allogenically induced CTL, FCS-induced CTL, and natural killer (NK) cytotoxic activities on tumor cell targets. The resistance of BW 5147 tumor targets to NK- and FCS-induced lysis was found to be dramatically overcome by treatment with mitomycin C, and provides circumstantial evidence for a functional relationship between the FCS-induced anti-parental CTL effectors and NK cells based on the observed similarity in lytic patterns of these two effector types. With reference to the work of other authors, the possibility that hybrid resistance and its possible in vitro counterpart, F1 anti-parental CTL cytotoxicity, and NK activity are mediated by similar or common effector mechanisms is discussed.


Cellular Immunology | 1981

Inhibition of antibody-dependent cell-mediated cytotoxicity (ADCC) by antiserum raised against brain tissue

H Ishikawa; Richard W. Dutton; Gunther Dennert

Abstract Treatment of mouse spleen cells with a rabbit anti-mouse brain (RAMB) antiserum markedly suppressed antibody-dependent cell-mediated cytotoxicity (ADCC) on trinitrophenyl-coupled sheep erythrocyte targets. This inhibitory activity of RAMB antiserum was complement independent, absorbable with mouse brain tissue, and appeared to be separable from the anti-Thy-1 activity of this serum. Absorption studies indicated that various T- and B-lymphocyte cell lines as well as macrophage-like cell lines are not able to absorb the inhibitory activity of RAMB antiserum. In contrast, thymocytes and spleen cells, as well as the neural cell line, PC12, a chromocytoma derived from rat adrenal medulla, were capable of absorbing the inhibitory activity to some extent, suggesting that antigens characteristic for ADCC effector cells can be found on these cell populations.


Journal of Immunology | 1983

Modulation of F1 cytotoxic potentials by GvHR. Host- and donor-derived cytotoxic lymphocytes arise in the unirradiated F1 host spleens under the condition of GvHR-associated immunosuppression.

E Kubota; H Ishikawa; K Saito


Journal of Immunology | 1982

Modulation of F1 cytotoxic potentials by GvHR: suppression of cytotoxic T cell responses of F1 mice correlates with F1 inability to resist the proliferation of GvHR-inducing parental T lymphocytes.

H Ishikawa; E Kubota; N M Wilkinson; K Saito


Journal of Immunology | 1981

Evidence for a cloned hybridoma (HO-13-4-9) producing 2 kinds of antibody molecules different in specificity, one directed to Thy 1.2 gene products and the other to antigen on a subpopulation of Thy 1.1 thymocytes.

E Kubota; H Ishikawa; K Saito


Journal of Immunology | 1980

Characterization of the target antigen of F1 anti-parent cytotoxic lympholysis: analysis of the spontaneous in vitro F1 cytotoxic T lymphocytes.

H Ishikawa; Richard W. Dutton


Journal of Immunology | 1985

In vivo priming of mouse CTL precursors directed to product of a newly defined minor H-42 locus is under a novel control of class II MHC gene.

H Ishikawa; H Suzuki; T Hino; E Kubota; Kazuhisa Saito


Journal of Immunology | 1986

Cytotoxic T lymphocyte response to minor H-42a alloantigen in H-42b mice: clonal inactivation of the precursor cytotoxic T lymphocytes by veto-like spleen cells that express the H-42a antigen.

H Ishikawa; T Hino; H Kato; H Suzuki; Kazuhisa Saito


Journal of Immunology | 1984

Modulation of F1 cytotoxic potentials by GvHR: role and mode of action of non-MHC genes that determine the hybrid resistance to GvHR-associated suppression of F1 cytotoxic potential.

H Ishikawa; E Kubota; K Saito


Journal of Immunology | 1985

The target minor H antigen for F1 cytotoxic T lymphocytes induced by Igh-congenic parental spleen cells is coded for by gene linked to H-2.

H Ishikawa; E Kubota; H Suzuki; Kazuhisa Saito

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Kazuhisa Saito

National Institutes of Health

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Kazuhisa Saito

National Institutes of Health

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