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Biomedical subjects

M M Simon

Publications and source records attributed to M M Simon.

At least 145 records · Page 8Linked to original sources

Mechanism of recovery from acute virus infection. III. Subclass of T lymphocytes mediating clearance of lymphocytic choriomeningitis virus from the spleens of mice.

Spleen T lymphocytes from mice undergoing acute infection with lymphocytic choriomeningitis virus (LCM virus) were negatively selected by treatment with anti-Lyt or anti-L3T4 antibodies and complement. The subsets thus obtained were tested for their potential to lyse LCM virus-infected target cells in vitro and to confer on infected syngeneic recipients the ability to eliminate virus rapidly from their spleens. Both capacities were found to be associated with Lyt-1-2+, L3T4- cells. Previous studies had shown that LCM virus-specific cytotoxicity in vitro as well as reduction of replication of LCM virus in the adoptively immunized mouse requires compatibility at K and/or D of the major histocompatibility complex, and we conclude that clearance of LCM virus from the mouse's spleen is mediated by the subset of T lymphocytes that is functionally characterized as cytotoxic/suppressive.

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Recombinant human interleukin 2 directly provides signals for the proliferation and functional maturation of murine B lymphocytes.

In this study the effect of recombinant human interleukin 2 (rec.hIL-2) on the proliferation and maturation of B lymphocytes was investigated. It was found that the presence of rec.hIL 2 results in proliferation of mitogen (LPS)-activated B cell blasts. In addition, it is shown that highly enriched murine B cells can be induced by rec.hIL-2 to proliferate and to develop into antibody-secreting cells (PFC) in the presence of antigen (SRBC). When tested for its effect on B cell preparations enriched for resting (small) or activated (blasted) B lymphocytes, it was found that rec.hIL 2 provides signals for both B cell populations to develop into PFC. In contrast, induction of proliferation by the same lymphokine source was only seen in blasted B cells. The data indicate that IL 2 is involved in the generation of B effector cells by directly acting on their precursors thereby providing differentiation as well as proliferation signals.

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Recombinant human interleukin 2 acts as a B cell growth and differentiation promoting factor.

Human B cells appropriately activated by a B cell mitogen are rendered susceptible to human Interleukin 2 (IL-2) as demonstrated with recombinant human IL-2 (rec. h IL-2). They show increased proliferation and drastically enhanced immunoglobulin secretion. Susceptibility to IL-2 is accompanied with the expression of the IL-2 receptor (Tac antigen) on B cells. The data suggest that IL-2 is one of the lymphokines directly involved in the activation of B lymphocytes.

B-Lymphocytes↗

T-cell-mediated immune response in murine malaria: differential effects of antigen-specific Lyt T-cell subsets in recovery from Plasmodium yoelii infection in normal and T-cell-deficient mice.

For analysis of the role of immune T cells in protective immunity against murine malaria, Plasmodium yoelii-immune Lyt T-cell subsets were functionally characterized in vitro and in vivo. Selected Lyt2- and Lyt2+ T cells from P. yoelii-immune C57BL/10 mice differed in their capability to proliferate in response to P. yoelii antigen in vitro. Only the Lyt2- T-cell population produced T-cell growth factor upon restimulation, and none of the selected T-cell subsets produced detectable amounts of macrophage activating factor. Lyt2- but not Lyt2+ lymphocytes were capable of transferring protection to normal C57BL/10 mice. When transferred into T-cell-deficient C57BL/6-nu/nu mice, adoptive resistance to P. yoelii by Lyt2- lymphocytes was only demonstrable after prior reconstitution of recipients with normal T cells. These results suggest an interaction between P. yoelii-immune Lyt2- T cells and normal T lymphocytes via T-cell growth factor in the development of protective immunity to malaria.

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Immunoregulation by mouse T-cell clones. II. The same H-Y-specific T helper clone can provide help for the generation of cytotoxic lymphocytes and antibody-secreting cells.

Mouse H-Y-specific and I-Ab restricted T-cell clones have been established and compared for their helper effects in the differentiation of both T and B lymphocytes. The results demonstrate that three individual T-cell clones and one subclone could help in the antigen-driven induction of cytotoxic lymphocytes (CTL) from their precursor cells (CTL-P), and were able to activate B cells to develop into antibody-secreting cells (PFC) in the presence of SRBC, provided the cloned T cells were restimulated by H-Y antigen on antigen-presenting cells. In addition, antigen or lectin could induce the same H-Y-specific T-cell clones to secrete factor(s) expressing helper activities similar to that of the cloned T cells. Furthermore, it is shown that the T cell-derived soluble mediator(s) was distinct from T-cell growth factor (TCGF) and from immune interferon (IFN-gamma). The data reveal a new type of T cell with helper potential for the activation of CTL-P and B lymphocytes, and suggest the existence of distinct T helper cells which can provide help for both cytotoxic and antibody responses by virtue of different lymphokine activities.

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Immunoregulation by mouse T-cell clones. I. Suppression and amplification of cytotoxic responses by cloned H-Y-specific cytolytic T lymphocytes.

H-Y-specific and H-2Db-restricted, Lyt-1-2+ T-cell clones ( CTLL ) with graded specific cytotoxic activities on male C57BL/6 (B6) target cells ( 1E3 , ; 2C5 , ++; 2A5 , +, 3E6 , +/-) were tested for their capacity to inhibit the generation of H-Y-specific cytotoxic T lymphocytes (CTL) in vitro. Addition of irradiated lymphocytes of CTLL 1E3 and CTLL 3E6 but not those of CTLL 2A5 or CTLL 2C5 abolished the generation of CTL from in vivo primed H-Y-specific precursor cells (CTLP) when added to fresh mixed-lymphocyte cultures (MLC). Exogenous sources of T-cell growth factors (TCGF) did not overcome suppression. Rather the presence of TCGF resulted in a further enhancement of suppressive activities in CTLL 1E3 and 3E6 and the induction of similar activities in cells from CTLL 2A5 and 2C5 , which by themselves were not inhibitory. Moreover when added to similar MLC on Day 1 instead of Day 0, only irradiated cells of CTLL 3E6 but not those of the other three CTLL were suppressive. Induction of suppressive activities in H-Y-specific CTLL was independent of the appropriate male stimulator cells since it was also observed in MLC induced by irrelevant antigens (H-2, trinitrophenol). Furthermore at low cell numbers, irradiated lymphocytes from any of the CTLL consistently enhanced CTL activities generated from H-Y-specific CTLP. This augmenting activity, which was not TCGF, could be transferred by soluble mediators present in antigen-sensitized CTLL cultures. Thus, these data indicate (i) that cytotoxic effector cells can function as suppressor cells in the generation of CTL, (ii) that the cytotoxic activity of cloned CTL does not correlate with their capacity to suppress CTL responses, (iii) that the inhibition of CTL responses by CTLL is not due to simple consumption of T-cell growth factors produced in MLC, and (iv) that different CTL clones may interfere with the generation of CTL at different stages of their maturation. Moreover, the experiments suggest an antigen-independent enhancement of suppression by the interaction of CTL with lymphokines. Together with the augmenting activity evoked by cloned CTL the data provide strong evidence for the expression of multiple immunological functions by one particular subset of T cells and suggest that cytotoxic effector cells can differentially regulate the maturation and/or clonal expression of their precursor cells.

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Quantitative studies on T-cell functions in MRL/MP-Lpr/Lpr mice. I. Frequency analysis of precursor cells of proliferating, cytotoxic, and T-cell growth factor-secreting T lymphocytes reveals an increase in absolute numbers, with a concomitant decrease in percentage of immunocompetent cells.

A limiting dilution system has been applied to compare precursor frequencies of proliferating T lymphocytes (PTL-P), of T-cell growth factor-secreting T cells (TTCGF-P), and of cytotoxic T cells (CTL-P) in lymphocyte populations of aged, MRL/MP-lpr/lpr (MRL-lpr) mice and the congeneic strain MRL/MP- +/+ (MRL-n,), or the H-2k-compatible strains AKR/N and B10.BR responding to the mitogen concanavalin (ConA), to alloantigens (H-2) or to trinitrophenol (TNP)-modified syngeneic cells. In lymph node and spleen populations of 3- to 8-month-old MRL-lpr mice, the frequencies of H-2d- or ConA-reactive PTL-P and TTCGF-P, and of CTL-P sensitive to either H-2d, TNP, or ConA stimuli were between 5 to 30 times lower than in the corresponding populations of the other three strains. Furthermore, the frequencies of CTL-P progressively decreased in MRL-lpr mice from 3 to 8 months of age. In contrast, the absolute numbers of immunologically competent precursor T cells (PTL-P, TTCGF-P, CTL-P) was in general approximately 2- to 5-fold higher in MRL-lpr than in the control mice. However, these normal T cells do not seem to expand proportionally with the progressive lymphadenopathy in MRL-lpr mice since the number of T lymphocytes recovered from lymph nodes of the individual animals tested exceeded those of tissues from control mice by 30- to 300-fold. The results therefore suggest that mature T cells are progressively diluted out by abnormal lymphocytes in lymphocyte populations of aging MRL-lpr mice, thus causing a decrease of immune responses in vitro and possibly also affecting optimal cellular interactions in vivo.

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The growth of concanavalin-A activated, Lyt selected subsets in IL-2 containing supernatants.

The growth properties of Con A activated, Lyt selected splenic T lymphocytes were examined by limiting dilution analysis and clonally by single cell picking. Under the conditions used, a comparable frequency of Lyt 1+ and Lyt 2+ cells grew after Con A activation in the presence of Con A rat spleen supernatant. At a clonal level, however, the growth of these subsets differed qualitatively and quantitatively. While Lyt 2+ cells obtained clone sizes of several hundred cells, Lyt 1+ clone sizes were usually less than 100 cells, and many clones aborted their growth after a few days. Morphologically, the Lyt 1+ cell was smaller and usually showed fewer pseudopodial protusions as compared to the Lyt 2+ cell.

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Role of macrophages in malaria: O2 metabolite production and phagocytosis by splenic macrophages during lethal Plasmodium berghei and self-limiting Plasmodium yoelii infection in mice.

The role of splenic macrophages in resistance to lethal Plasmodium berghei or self-limiting Plasmodium yoelii was studied by testing their rate of phagocytosis and their production of O2 metabolites (H2O2 and O2-) upon nonspecific stimulation with zymosan. It was found that, compared with P. berghei, infection of mice with P. yoelii resulted in an earlier appearance and in higher numbers of adherent cells in the spleen. Furthermore, the capacity of macrophages to generate O2 metabolites was significantly higher in P. yoelii- than in P. berghei-infected mice. This difference in the production of O2 metabolites was more pronounced when calculated on a per spleen basis. On the other hand, phagocytosis by macrophages was similar in both types of infection. The data suggest that lethal and nonlethal malaria species differ in their capacity to induce the production of O2 metabolites by macrophages, thereby influencing the final course of disease.

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Limiting dilution analysis of alloreactive T helper cells: precursor frequencies similar to that of alloreactive cytotoxic T cells.

Precursor frequencies for alloreactive T helper cells involved in the generation of primary cytotoxic responses from thymocytes were determined in splenic T cells and selected Lyt-1 lymphocytes by limiting dilution analysis. T helper precursors at frequencies ranging from 1/5000 to 1/13,500 were found in individual experiments in unsensitized selected Lyt-1 populations reacting to H-2 alloantigens. After preactivation of Lyt-1 lymphocytes with antigen in limiting dilution, the frequencies of T helper cells were increased 2-3 fold when cultured in the absence and 10-50-fold when cultured in the presence of T cell growth factor. The frequencies for T helper precursors found in Lyt-1 cells were comparable to those of unselected T cells, indicating that a significant portion of T helper cells resides in the Lyt-123 population. Activation of T helper precursors with H-2 antigens or with H-2 and non-MHC (plus MLs) antigens resulted in similar frequencies, suggesting that the same T cell can respond to H-2 and non-MHC determinants. The data suggest that alloreactive T helper precursors exist at frequencies similar to that of CTL precursors. In addition, the results indicate that the induction of CTL by T helper cells is subject to regulation presumably by suppressive cells and that Lyt-1 inducer cells may be involved in the development of suppression for CTL responses.

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Lyt-phenotype conversion of cytotoxic T lymphocytes specific for the A and E class II major histocompatibility complex molecules.

The Lyt-1+ (high) Lyt-2+/- (low) primary cytotoxic T lymphocytes (CTL) specific for A(A alpha A beta) molecules and the Lyt-1+Lyt-2+ primary E(E alpha E beta)-specific CTL are both shown to become Lyt-1 Lyt-2+ effector cells after secondary in vitro stimulation. Thus CTL specific for class II major histocompatibility complex molecules exhibit the same Lyt-phenotype shift as class-I-specific CTL do. The data suggest that either both class-I-specific and class-II-specific CTL follow the same differentiation pathway or regulatory cellular interactions allow only Lyt-1-Lyt-2+ cells to differentiate to secondary CTL.

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Expression of Qat-4 and Qat-5 alloantigens on cytotoxic precursor and effector cells: different surface phenotypes of alloreactive and H-2 restricted cytotoxic T cells.

Monoclonal anti-Qat-4 and anti-Qat-5 antibodies, which define antigens expressed on peripheral T cell subsets, have been used to study the phenotypes of alloreactive and H-2-restricted cytotoxic effector cells and their precursors. Depletion of Qat-4+ or Qat-5% cells from the T cell pool prior to their sensitization in bulk cultures prevented the development of alloreactive and H-2-restricted cytotoxic activities in the selected populations. No reconstitution of cytolytic activities to normal levels was obtained when mixtures of Qat-4- and Qat-5- cells were sensitized in bulk cultures to H-2 or non-H-2 antigens. Sensitization of limiting numbers of Qat-4- or Qat-5- lymphocytes under optimal conditions for help (interleukin 2), with the appropriated antigens (H-2 or H-Y) did not result in the generation of cytotoxic T cells, indicating that the majority of all cytotoxic T lymphocyte (CTL) precursors are Qat-4+, Qat-5+. When CTL effector populations were treated with the antisera and complement (C) at their maximum CTL activity, it was found that H-2-restricted CTL were totally eliminated by anti-Qat-4 and considerably reduced by anti-Qat-5 antisera and C. In contrast, alloreactive CTL effector cells were insensitive to anti-Qat-4 and to anti-Qat-5 plus C. Although alloreactive CTL effector populations regained some Qat-4 antigens during further in vitro culture, it was shown that H-2-restricted CTL were at all times more sensitive to anti-Qat-4 than were alloreactive CTL. The findings suggest that during maturation of alloreactive and H-2-restricted CTL from their precursors, both alloantigens undergo differential quantitative variations in their expression that lead to different Qat-4,5 phenotypes of alloreactive and H-2-restricted CTL.

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Production of immune interferon is regulated by more than T cell subset: Lyt-1,2,3 and Qat-5 phenotypes of murine T lymphocytes involved in IFN-gamma production in primary and secondary mixed lymphocyte reaction.

Lymphocytes responsible for the production of IFN-gamma (immune interferon) in primary and secondary mixed lymphocyte reactions have been characterized with antisera specific for the Lyt-1,2,3 and Qat-5 alloantigens. A comparison was made between selected T cell subsets with respect to their ability to proliferate, generate cytolytic activity and produce IFN-gamma in response to H-2 alloantigens. The data indicate that (a) in primary mixed lymphocyte reactions, IFN-gamma is produced by Lyt-1+, Qat-5+ and by Lyt-123+, Qat-5+ T cells, (b) in secondary mixed lymphocyte reactions, an additional T cell subset, which is Lyt-23+, Qat-5-, participates in the generation of IFN-gamma and (c) the production of IFN-gamma does not correlate with either proliferation or the generation of cytotoxic lymphocytes.

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T-cell subsets induced in Listeria monocytogenes-immune mice. Ly phenotypes of T cells interacting with macrophages in vitro.

Interactions of peritoneal exudate T lymphocytes from listeria-immune mice with macrophages from normal mice in the presence of heat-killed listeriae result in the induction of interleukins. The data show that Ly 1+, 23- T cells specific for listeria antigens are essential for interleukin induction and make it likely that, in addition, Ly 1+, 23+ T cells are required for optimal responses.

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Interleukin 2 induction in Lyt 1+ 23- T cells from Listeria monocytogenes-immune mice.

Peritoneal exudate T lymphocytes from mice experimentally infected with the intracellular bacterium Listeria monocytogenes secreted high interleukin 2 activities after interaction with syngeneic normal macrophage presenting listerial antigen in vitro. L. monocytogenes-immune cells secreting IL 2 were radioresistant and bore the phenotype Thy 1(+) Lyt 1(+)23(-).

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Regulatory interactions between macrophages and T-cell subsets in Listeria monocytogenes-specific T-cell activation.

Peritoneal exudate T lymphocytes from Listeria monocytogenes-immune mice in the presence of the homologous antigen (heat-killed L. monocytogenes) and normal macrophages showed L. monocytogenes-specific proliferative responses. Proliferation was inhibited by macrophages from L. monocytogenes- or Corynebacterium parvum-pretreated mice as well as by exogenous prostaglandin E(2). Macrophage-dependent inhibition of T-cell proliferation-at least in part-could be reversed by addition of indomethacin. When selected L. monocytogenes-immune Lyt T-cell subsets were cultured in the presence of inhibitory macrophages, pretreatment with anti-Lyt 1 antiserum plus complement completely abrogated proliferation and pretreatment with anti-Lyt 2 and anti-Lyt 3 antisera plus complement markedly reduced proliferation. However, a mixture (1:1) of the two preselected Lyt T-cell subsets resulted in complete reconstitution of proliferative responses. In contrast, when L. monocytogenes-immune peritoneal exudate T lymphocytes were treated with anti-Lyt antisera plus complement after culture, only treatment with anti-Lyt 1 antiserum plus complement affected proliferation, suggesting regulatory interactions between Lyt 1(+)23(-) and Lyt 1(-)23(+) T cells during in vitro culture which result in proliferation within the Lyt 1(+)23(-) T-cell subset. After rigorous depletion of residual macrophages and in the presence of indomethacin, pretreatment with anti-Lyt 1 antiserum plus complement, but not with anti-Lyt 2 and 3 antisera plus complement, eliminated proliferation. The data presented indicate that interactions between macrophages and Lyt T-cell subsets regulate L. monocytogenes-specific T-cell activation.

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