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Subsets of T lymphocytes and lymphocyte cooperation. Modulation of the immunocellular response.

Recent advances in the characterization of T cell subsets suggests that the various subsets of T cells described in mice also occur in man. These various subsets of T cells can be detected by the use of appropriated antisera, co-cultivation of purified lymphoid cell preparations and differential sensitivity to radiation. Clinical applications from these new observations are now underway and it is hopeful that they should help to achieve a better understanding of the mechanisms responsible for autoimmunity, neoplasias and the various primary and secondary immunologic deficiencies.

Animals↗

Cytotoxic effects of antigen- and mitogen-induced T cells on various targets.

Mitogen-induced cytotoxicity was studied by culturing mouse spleen cells with an optimum mitogenic dose of concanavalin A (Con A) for 2 days and, after washing, assessing their ability to lyse tumor targets. We show that rapid lysis occurs only when the correct concentration of an agglutinating mitogen (phytohemagglutinin P (PHA) or Con A) is present in the assay. PHA is more efficient than Con A in revealing the cytotoxic effect. The Con A-induced effector cytotoxic cell is shown to be sensitive to anti-theta serum and complement. Cytotoxic T cells were also induced by H-2 different allo-immunization. These effector cells specifically lyse targets which bear the immunizing H-2 antigens in the absence of PHA. When PHA is present in the assay, they will also lyse syngeneic tumor targets nonspecifically. Since not all dividing T cells (e.g., T lymphomas, and T blasts induced by M locus different, H-2 similar mixed lymphocyte culture) lyse PHA-P815, we propose that this assay measures only a subset of effector T cells, namely, cytotoxic T cells, regardless of their antigen specificity. The tumor cells, P815 and EL4, are sensitive both to antigen-specific T cell-mediated lysis in the absence of PHA and to nonspecific, PHA-revealed lysis. Small lymphocytes, T cell blasts, and B cell blasts are sensitive to lysis by T cells which are directed against H-2 antigens on their surface, but are not very susceptible to nonspecific T cell lysis in the presence of PHA. The reason for this difference in susceptibility of tumor and normal cells to PHA-revealed nonspecific T cell lysis is not known but may have some relevance to in vivo tumor rejection.

Animals↗

Proliferative response of T lymphocytes to allogeneic tumor without generation of killer T lymphocytes in the presence of Ehrlich ascites tumor fluid.

The presence of cell-free Ehrlich ascites tumor fluid in an appropriate concentration was shown to permit a proliferative response, strictly dependent on the presence of Thy-1-positive lymphocytes, to proceed when introduced on the initiation of mixed lymphocyte-tumor reaction of C57BL/6 lymphocytes and Mitomycin-C-treated C3H/He myeloma cells, while it clearly inhibited the development of cytotoxic killer T lymphocytes toward the priming allogeic tumor cells. The fluid had no effect, however, when added to normally primed spleen cells at the onset of cytotoxicity test. Further investigation of the mechanism in vitro by ascitic tumor fluid selectively suppresses the generation of killer T lymphocyte activity to allogeneic target cells may lead to a better understanding of the suppressed T-cell responses observed in Ehrlich tumor-bearing animals, and additionally, may provide an intriguing information about the interactions between the distinct T-cell subsets responsible for proliferative response and generation of killer T lymphocytes.

Animals↗

Generation of T-cell function in organ culture of foetal mouse thymus. II. Mixed lymphocyte culture reactivity.

The generation of MLC reactive cells in organ cultures of embryonic mouse thymus is described. At least 4 days in culture are required before MLC reactive thymocytes are detectable in this system, which is in marked contrast to the short incubation period required for the expression of Thy-1 on T-cell precursors in other systems. Our data demonstrates the generation of T-cell subsets independent of influences from peripheral lymphoid organs, and in the absence of B cells or their products. One very important application of this technique is in the investigation of the mechanism of T-cell tolerance to self.

Animals↗

Distinctive functional properties of human blood L lymphocytes: a comparison with T lymphocytes, B lymphocytes, and monocytes.

Human blood lymphocytes with high affinity Fc receptors have been operationally named L lymphocytes because of membrane-labile IgG markers. L lymphocytes lack membrane-incorporated immunoglobulin and do not form rosettes with sheep red blood cells coated with IgM antibody and mouse complement. These lymphocytes are capable of binding IgG in normal human serum at 4 degrees C and will form rosettes with human lymphocytes coated with Ripley IgG. In this study, functional in vitro properties of isolated L lymphocytes were compared with T lymphocytes, B lymphocytes, and monocytes. To obtain these mononuclear populations, first, plastic adherent monocytes were harvested. T lymphocytes were then isolated by centrifugation of E rosette-forming cells, and other rosetting techniques were employed to isolate L and B lymphocytes by negative selection. The functional properties of L lumphocytes were completely unlike those of T cells, B cells, or monocytes. L lymphocytes did not proliferate in response to mitogens, soluble antigens, or cell surface antigens. Moreover, this population could not replace monocytes in helping T lymphocytes respond to concanavalin A and pokeweed mitogen. Once T cells were supplemented with monocytes, however, the addition of L lymphocytes to the culture greatly enhanced the T lymphocytes proliferative response to phytohemagglutinin, concanavalinA, purified protein derivative (PPD), and streptokinase/streptodornase. L lymphocytes were not a subset of B cells. They did not spontaneously develop surface Ig in culture, and pokeweek mitogen could not induce them to transform and generate cytoplasmic Ig detectable by immunofluorescence. Mixtures of B cells and T cells responded to pokeweed mitogen better than do T cells alone. In contrast, enhanced reactivity with L and T cell combinations was not observed. Another sharp difference between these two populations was the stimulator capacity of each in mixed lymphocyte culture. When B and L lymphocytes were carefully monocyte-depleted, only B cells were effective stimulators of autologous and allogeneic lymphocytes. In comparison with T cells, B cells, and monocytes, L lymphocytes were the only effective killers of human blood lymphocytes sensitized with IgG. L lymphocytes, then, have cytotoxic potential, but cannot proliferate in response to various stimulants or become antibody-producing cells. These findings suggest that L lymphocytes comprise a third lymphocyte population.

Antigen-Antibody Reactions↗

Two functionally distinct subpopulations of human T cells that collaborate in the generation of cytotoxic cells responsible for cell-mediated lympholysis.

A human thymus-dependent differentiation antigen, TH2 was defined by a rabbit anti-human T cell serum absorbed with autologous B lymphoblasts and leukemic cells bearing T cell markers from a patient with chronic lymphocytic leukemia. Anti-TH2 reacted specifically with thymus-derived lymphoid cells and exhibited two distinct profiles of reactivity with normal peripheral T cells as detected by indirect immunofluorescence on a FACS I. Isolation of strongly reactive, TH2+, from weakly reactive, TH2- T cells by fluorescence-activated cell sorting revealed that the TH2+ subset contained most of the killer activity in cell-mediated lympholysis (CML), but had a diminished response in MLC and a suboptimal or negligible proliferative response to soluble antigens (mumps, PPD, tetanus toxoid). In contrast, the TH2- subset contained markedly less killer activity but amplified cytotoxicity by TH2+ cells and exhibited a proliferative response to both alloantigen and soluble antigens that was often significantly greater than the response by unseparated T cells. The relevance of these findings to previously described human T cell subsets and to functional subpopulations of murine T cells is discussed.

Absorption↗

Functional depletion of T- and B-memory cells and other lymphoid cell subpopulations-during trypanosomiasis.

T. brucei infection in mice causes generalized immunosuppression with multiple changes in the cells of the lymphoid tissue. Loss of B cell responsiveness to antigens and mitogens, and the induction of suppressive T-cells and macrophages, have been previously reported (Hudson, Byner, Freeman & Terry, 1976; Corsini, Clayton, Askonas & Ogilvie, 1977; Jayawardena & Waksman, 1977). In this study, purified B- or T-cell populations from infected mice have been tested functionally in vitro or in vivo by transfer into syngeneic irradiated hosts to separate the cells from trypanosomes or their products. B-memory cells for thymus dependent (DNP-KLH) and thymus independent (DNP-Ficoll) antigens are depleted or lose their potential to respond to the antigen during T. brucei infection. Similarly, purified T-helper cells, and T-cells reactive to allogeneic target cells in mixed lymphocyte reactions are functionally defective. By 16 days of infection all these responses are less than 10% of the normal level. The loss of B-cell function follows the peak parasitaemia and is accompanied by increases in the serum levels of both IgM and IgG. Enhanced Ig production and decline in B-cell potential also occur in T-deprived mice and in CBA/N mice which lack a subset of T-independent B-cells. Cells affecting delayed hypersensitivity reactions retain their activity throughout trypanosome infection and so far provide the only exception to the general decline in immune potential.

Animals↗

Con A-inducible suppression of MLC: evidence for mediation by the TH2 + T cell subset in man.

Human peripheral lymphoid cells pretreated with Concanavalin A for 48 hr can markedly suppress the proliferative response of untreated autologous lymphoid cells in MLC. Isolation studies with Sephadex G-200 anti-F(ab')2 affinity chromatography, nylon adherence, and E rosetting indicate that the Con A-induced suppressor cell is a T cell. Further fractionation into TH2+ and TH2- cell subsets with an equine-anti TH2 serum show that both subsets can be activated by Con A to an equivalent degree. After activation only the TH2+ subset can suppress autologous responder cells in MLC. The TH2- subset, which comprises 80% of peripheral human T cells, although induced by Con A to proliferate, cannot itself suppress the MLC response. Nevertheless, the TH2- subset can be shown to modulate the generation of suppressor TH2+ cells at 24 hr but not at 48 hr. These studies support the notion that the Con A-induced suppressor cell is confined to a distinct T cell subset in man and that T-T interactions are important in the overall expression of the immune response.

Adult↗

DRw antisera react with activated T cells.

Nylon wool-purified T cells appear to be nonreactive in a lymphocytotoxicity assay with HLA-DRw antisera and complement before cell activation. However, after activation in mixed lymphocyte culture, responder cells express determinants that are strongly reactive with DRw alloantisera after 6 days and gradually disappear by 16 to 18 days. Restimulation of the primed cells resulted in re-expression of the blast determinants. Mitogenic stimulation with Con A or purified PHA (HA-17) also resulted in temporary expression of these determinants; reactivity usually conformed to DRw genetic restriction; however, occasional extra reactions occurred that were variable depending on the method of activation (i.e., MLC, Con A, or HA-17). The results suggest the presence of additional allospecificities within some of the DRw antisera that react with "Ia-like" antigens on activated cells from unique subsets of T cells. Whether these DRw antisera contain antibodies against T cells or agains activation or differentiation T cell antigens is not as yet clear.

Adult↗

Surface properties and in vitro functional capacities of human T lymphocyte subsets separated by linear density gradients.

Human lymphocytes derived from various central and peripheral sources were separated on linear density gradients (LDG). Cells from individual density fractions were tested in parallel for: the capacity to form nonimmune rosettes with neuraminidase-treated SRBC, the number of surface-associated HTLA, and in vitro proliferative responses to mitogenic lectins and alloantigens. Heterogeneous density distribution profiles were obtained for all sources of human T cells and revealed an organ specificity. The various T cell density classes obtained from identical organs as well as the identical density classes of different sources revealed to some extent differences in their surface marker patterns and/or their in vitro reactivities. On the basis of the combined techniques at least two major subsets among thymocytes were identified that differed in both surface properties and functional capacities. Density classes of T cells from all peripheral sources were distinguished from thymocytes by a homogeneous lowered HTLA expression. Whereas clear-cut differences in the in vitro functional capacity were observed between the two thymocyte subsets, less striking but still significant differences were found to exist among the various density classes of peripheral T cells.

Animals↗

Local xenogeneic graft-vs-host reaction: a practical assessment of T cell function among cancer patients.

The local xenogeneic graft-vs-host reaction (XGVHR) was used as a practical bioassay to assess T lymphocyte function and immunocompetence among cancer patients. Positive XGVHR was found in 99.5% of normal donors, 70% of cancer patients with early stage disease, and 30% of cancer patients with metastatic disease (p less than 0.001). A minimum of 4.5 x 10(6) immunocompetent T lymphocytes are necessary in order to elicit a positive XGVHR. Negative reactions among cancer patients are characterized by the lack of edema fluid accumulation and the appearance of the most basophils at the test site. This suggests that insufficient amounts of lymphokines are being released by the incompetent T lymphocytes, whereas the host is capable of mounting a rejection reaction as evidenced by the appearance of the basophils. Preliminary evidence suggests that the immunologic defect detected by the XGVHR cannot be corrected by monocyte depletion. The identification of putative suppressor T cell subsets may bear immunotherapeutic implications in the future.

Animals↗

Casein-induced experimental amyloidosis. V. The response of lymphoid organs to T and B mitogens.

Functional and morphologic studies were performed on the lymphoid organs of inbred CBA/J mice receiving chronic casein administration. In the spleen, this regimen produces marked reticuloendothelial proliferation between 8 and 16 injections (preamyloid phase) and amyloid deposition between 16 and 24 injections. No amyloid was found in the thymus, lymph nodes, and bone marrow of these animals. Phytohemagglutinin and concanavalin A lymphocyte responses as measured by 3-H-thymidine incorporation were reduced in the spleen and lymph node of preamyloid animals but demonstrated partial recovery during the amyloid phase. Phytohemagglutinin and concanavalin A stimulation of thymic cells was significantly increased during both stages of amyloid induction, although the histologic studies revealed a marked involution of the thymic cortex. Lipopolysaccharide stimulation of spleen cells was normal in preamyloid and amyloid animals whereas in lymph node and bone marrow lipopolysaccharide responses were significantly decreased. The findings suggest a selective removal of subsets of T cell populations in the spleen and thymus and migration of B cells from bone marrow to the spleen during experimental amyloidosis.

Amyloidosis↗

Immunological activities of rat lymphocytes. I. Mitogenic responses and surface markers of lymphocytes from normal, thymectomized and B rats.

Lymphocytes from the peripheral blood, thoracic duct, spleen and lymph nodes of normal, thymectomized (TX) and thymectomized lethally irradiated marrow reconstituted (TXBM or B rats) Lewis rats were studied for their ability to proliferate in vitro in the presence of Con A or PHA. At the same time the lymphoid tissues of these animals were examined for the presence of B cells or T cells by immunofluorescence staining with antiserums to rat immunoglobulins or rat brain antigens (ARBS), respectively. The specificity of ARBS fort T cells was first established in both cytotoxicity and immunofluoresecnce studies with thymocytes as well as pruified T and B cells. In various lymphoid tissues from TX and B rats, cells carrying brain antigens were found which were unable to respond to Con A and PHA. Thymectomy has a lesser effect on the response to Con A that to PHA; this was particularly true in the thoracic duct where, following thymectomy, lymphocytes continued to respond to Con A but lost their ability to respond to PHA. This suggests that the response to PHA and Con A may belong to different cells' subsets but that the ability to respond to either one of these mitogens may be impaired in cells carrying known T cell markers.

Animals↗

Ala-1: murine alloantigen of activated lymphocytes. II. T and B effector cells express ala-1.

Ala-1 (activated lymphocyte antigen-1) is a murine alloantigen expressed only on activated peripheral T and B lymphocytes. The presence or absence of Ala-1 on specific functional lymphocyte subsets was determined by treating the relevant cell population with anti-Ala-1 and complement, and assaying for residual functional activity. By this method, Ala-1 was shown to be on in vivo primed killer T cells cytotoxic for allogeneic tumor cells. It was also found on helper T cells generated in vivo to sheep red blood cells, and on IgM and IgG plaque-forming cells (PFC) to sheep red blood cells. In contrast, splenic precursors of helper cells and of IgM PFC to sheep red blood cells were completely resistant to treatment with anti-Ala-1 and complement. These findings indicate that effector cells can be distinguished from their nonactivated precursors by their expression of Ala-1.

Animals↗

Adherent cell function in murine T lymphocyte antigen recognition. II. Definition of genetically restricted and nonrestricted macrophage functions in T cell proliferation.

The mechanisms by which adherent cells, presumably of mononuclear phagocytic lineage, influence in vitro antigen-specific activation of murine T lymphocytes was examined. Two distinct functions for macrophages could be discerned. One macrophage function is dependent on a soluble factor produced by cultured adherent cells and is most easily studied with complex multideterminant antigens. This factor is neither antigen-specific nor MHC-restricted in its action in that PEC, regardless of haplotype, produce factor in the absence of antigen. A second function, antigen-specific T cell activation, is seen when antigens of more restricted heterogeneity are used, such as those under the control of Ir genes. This latter activity demands identity or partial identity between the antigen-presenting cell and the primed T cell, thus suggesting an additional specific, genetically restricted function for macrophages in in vitro antigen recognition. Whether these adherent cell functions are mediated by all or distinct subsets of cells was not established.

Animals↗

Human tumor-lymphocyte interaction in vitro. VI. Specificity of primary and secondary autologous lymphocyte-mediated cytotoxicity.

A T-cell-enriched lymphocyte subset of samples from 15 tumor patients was tested for primary cytotoxicity against autologous tumor cell preparations and against 1-3 different allogeneic tumor cell preparations from biopsy material. Allogeneic cytotoxicity occurred in only 1 of 10 patients with autologous reactivity. The lymphocytes of 14 patients were cultured with autologous cells from biopsy material for 6 days. These lymphocytes killed autologous targets, but only 1 patient's lymphocytes were cytotoxic against 1 of the 4 allogeneic tumors tested. Cocultivation with allogeneic cells from biopsy specimens generated cytotoxicity toward the sensitizing allogeneic cells in 3 of 9 test combinations. In 2 of 3 instances the effectors were also active against the autologous tumor cells. Cytotoxicity in primary and secondary tests occurred thus only rarely against allogeneic targets. This indicated either the presence of individual tumor-related antigens on the cells from biopsy material or reflected the histocompatibility restriction of T-cell-mediated cytotoxicity.

Antigens, Neoplasm↗