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R W Dutton

Publications and source records attributed to R W Dutton.

At least 73 records · Page 4Linked to original sources

Analysis of histocompatibility requirements for proliferative and helper T cell activity. T cell populations depleted of alloreactive cells by negative selection.

T cell populations were prepared from donors immunized with hapten-carrier conjugates and were depleted of alloreactive cells by negative selection. This was accomplished by injection of the cells into H-2-disparate irradiated recipients and recovery from the thoracic duct after 18-40 h. The genetic requirements for the proliferative and helper activity of these populations was determined. The proliferative response to antigen presented on adherent, Thy-1-negative cells was determined, and a requirement for syngeneic antigen-presenting cells (APC) was demonstrated. The same T cells were assayed for their ability to give help to hapten primed B cells. It was shown that there was a requirement for syngeneic APC and for linked recognition of hapten and carrier determinants on the same molecule by the B cell and T cell. There was no requirement for the B cell to be H-2 compatible with the T cell. The requirement for linked recognition was taken as evidence that the responses in allogeneic combinations were not a result of positive allogeneic effects. Precisely comparable restrictions were found with positively selected cells.

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Production of Con A-induced helper T cell replacing factor requires a T cell and an Ia-positive non-T cells.

Evidence is presented that indicates that two cells are required for the production of Con A-induced, helper T cell replacing factor. The factor production involves both a T cell and an IA,IE/C-positive non-T cell. The T cell and the Ia-positive cell need not be H-2 compatible. Limiting dilution analyses suggested that the Ia-positive cell is limiting in normal spleen. A hypothesis is put forward that the activation of T cells by Con A may involve "gluing" normally specific, functional T cells to the Ia expressing cells with which they would normally interact in antigen-specific activation.

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Continuously proliferating allospecific T cells. I. Specificity of cooperation with allogeneic B cells in the humoral antibody response to sheep erythrocytes.

Allospecific mouse T cells, positively selected in one-way mixed lymphocyte culture were maintained for 3 yr in tissue culture by sequential restimulation. Such proliferating T cells were tested for their ability to induce a positive allogeneic effect: activating B cells in an in vitro primary humoral response to sheep erythrocytes. It was found that such T lymphocytes could function as helper cells. Helper activity was shown to be specific in that the B cells activated had to share major histocompatibility complex (H-2) antigens with the strain used for selection of the cell line. Intra H-2 mapping showed that antigens coded in the IAk subregion played an important role in the induction of the positive allogeneic effect. Supernatant factors could substitute for the allogeneic T cells in activation of the in vitro humoral response. However, such supernates exhibited no strain specificity. Therefore, the specificity seen in the positive allogeneic effect is presumably a consequence of the alloantigenic recognition receptors intrinsic to the T cells, and not to any biologically restricting properties of the allogeneic effect factor itself.

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Primary in vitro cytotoxic response of F1 T lymphocytes against parental antigens.

Spleen cells from adult female (AKR/J x BALB/(c)F1 mice can respond to mitomycin C-treated spleen from AKR/J mice and can generate effector CTL in a 5-day primary in vitro culture. The response is comparable in magnitude to the response to allogeneic H-2K or H-2D antigens. The response is T cell mediated and is directed to antigen(s) present only on the parental cells. The target cell must be homozygous at H-2Kk to be lysed and H-2Dk antigens do not serve as a target in this response. Spleen cells from (B10.BR x B10.D2) hybrids that have been stimulated with AKR/J lyse B10.Br as well as AKR/J target cells. Similar H-2k/d hybrid F1 anti-H-2k parent responses are seen in certain other strain combinations. A number of possible interpretations of these responses are discussed.

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Frequency of allogeneic helper T cells responding to whole H-2 differences and to an H-2K difference alone.

Limiting dilution analysis was used to determine the frequency of splenic T cells that are stimulated by alloantigen to give help in a primary antibody response to SRBC. Several haplotype combinations were tested. A semilogarithmic plot of the fraction of nonresponding culture as a function of the number of T cells added to excess B cells gave a straight line intercepting with the origin. Thus a single cell-type was limiting, which was required to help B cells respond to SRBC. The frequency of syngeneic precursors of T helper cells specific for SRBC ranged from 1/10,000 to 1/55,000 with a mean of about 1/20,000. Allohelpers generated by whole H-2 differences gave precursor frequencies that ranged from 1/1000 to 1/7000 with a mean of about 1/2500. Thus allohelpers to whole H-2 differences were approximately 8-fold more frequent than SRBC-specific helpers. When the stimulation was limited to the H-2K difference between the mutant B6.C-H-2ba and wild-type B6, frequencies of from 1/2600 to 1/7900 allohelpers were found with a mean of about 1/5000, approximately half the frequency of allohelpers to whole H-2 differences. Thus some, but probably not all, of the magnitude of allogeneic halp can be attributed to the high frequency of helper T cells that respond to a given alloantigen.

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Young F mice spontaneously generate cytotoxic T cells against parental targets.

Spleen cells from young (AKR/J female x BALB/c) or (BALB/c female x AKR/J)F1 mice can spontaneously generate effector cytotoxic T lymphocytes (CTL), in a 5-day primary in vitro culture, which lyse target cells from AKR/J and BALB/c but not allogeneic mice. These spontaneous CTL responses first appear when spleen cells are taken from F1 mice at 3 to 4 weeks of age, are maximum at about 5 weeks, and have declined by week 7. The fact that these spontaneous CTL responses are never detectable in the spleen cell cultures from any ages of parental AKR/J and BALB/c mice makes them unique properties of the F1 mice.

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Separation of helper and suppressor T lymphocytes. III. Positive and negative effects of mixed lymphocyte reaction-activated T cells.

Using a Ficoll velocity sedimentation gradient, we provide evidence to show that stimulatory and inhibitory activities induced in mixed lymphocyte culture belong to two distinct subpopulations of T cells. Slow- to medium-sedimenting, nonproliferating cells enhance the humoral response of normal cells to SRBC whereas fast-sedimenting cells inhibit that response. Cytotoxic lymphocytes are found in the same fractions as suppressor cells but appear to be differentiable from the latter in terms of maturation kinetics and specificity.

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Independent analysis of T helper and T killer cell function in young and old NZB mice.

With age, NZB mice lose their ability to develop a cytotoxic response after alloimmunization in vitro. This decline is shown to coincide with a diminution of T-helper cell activity as assessed by proliferation in mixed lymphocyte culture or in response to PHA. When cytotoxic T cell precursors are activated with the polyclonal activator Con A, there is no reduction in the number of cytotoxic effector T cells that develop. No autoreactive cytotoxic cells are seen in Con A-activated cultures. These findings are related to previous work on cell-mediated immunity in NZB and B/W mice.

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Alloantigen-induced T helper activity. I. Minimal genetic differences necessary to induce a positive allogeneic effect.

Addition of histoincompatible lymphocytes can influence the course of ongoing immune responses. Such allogeneic effects may either augment or diminish immune responses. We describe here the minimal genetic differences necessary to generate positive allogeneic effects (allohelp) in a humoral immune response. The antibody response to sheep erythrocytes of T cell-depleted mouse spleen cells was reconstituted by addition of syngeneic or allogeneic nylon wool column-passaged spleen T cells. T cells were pretreated with mitomycin C before culture to prevent development of allo-suppression and cytotoxic lymphocytes. Positive allogeneic effects were operationally defined as superior helper effects (to generate greater antibody forming cell responses) with T cells allogeneic rather than syngeneic to the responding B cells. Thus, addition of allogeneic T cells resulted in many more antibody forming cells than did equal numbers of syngeneic T cells, and fewer allogeneic than syngeneic T cells were necessary to generate comparable responses. With congenic, recombinant, and mutant mouse lines, genetic differences in the H-2 complex and those associated with Mls were each sufficient to provide positive allogeneic effects. With intra-H-2 recombinants, differences at either I or D were sufficient. A disparity at H-2K alone, as provided by the H-2 mutant B6.C-H-2ba against the parental line C57BL/6By, also induced helper effects. The significance of these results is discussed.

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Separation of helper and suppressor T lymphocytes. II. Ly phenotypes and lack of DNA synthesis requirement for the generation of concanavalin A helper and suppressor cells.

Using a Ficoll velocity sedimentation gradient, we have been able to fractionate concanavalin A (Con A)-induced helper and suppressor cells into separate pools. Cells activated by Con A to mediate helper activity are Ly1+, do not require DNA synthesis for induction, and remain as small cells after activation. Suppressor cells are Ly23+, are found in the blast cell fraction and their induction is not inhibitable by prior treatment with mitomycin C or irradiation, both of which inhibit DNA synthesis. The implications of such findings are discussed.

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Evidence that Con A induces cytotoxicity in the same subclass of T cells as does alloimmunization.

We have studied the induction of cytoxic activity in murine T cells by the T cell mitogen Con A. Here we report the results of experiments that indicate that this cytotoxicity develops in the same class of T cells potentially activatable to cytotoxicity by immunization with allogeneic cells. Cytotoxic activity does not result from activation of cells of the T-helper class by PHA, and extensive reduction of the proportion of cells of the T-helper class by in vivo treatment with ATS does not comparably reduce the cytotoxicity developed in response to Con A. The Con A-activated cytotoxic cell sediments as a large cell. Furthermore, spleen cell populations previously immunized to alloantigens in vivo develop greatly increased cytotoxicity specific for the alloantigen of the immunizing haplotype after culture with Con A in vitro.

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The humoral immune response of mouse bone marrow lymphocytes in vitro.

Mouse bone marrow (BM) small lymphocytes are shown to contain competent precursors for a primary haemolytic plaque forming cell (PFC) response to heterologous red blood cells and TNP in an in vitro culture system. Their response is dependent on T co-operative factors, which can be provided by irradiated spleen cells activated by concanavalin A or the supernatant of an allogeneic culture, added at the beginning or after 24 h of culture. The frequency of PFC precursors for the response to SRBC is found to be equal or higher in BM than spleen cultures. However, BM lymphocyte cultures stimulated by E. coli lipopolysaccharide show an increase of DNA synthesis but contain only few polyclonal PFC, in contrast to spleen.

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