Search PubMedSearch

SEARCH · Search PubMed

Results for “lymphocyte”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 37 records · Page 2Linked to original sources

The Fc receptor on thymus-derived lymphocytes. III. Mixed lymphocyte reactivity and cell-mediated lympholytic activity of Fc- and Fc+ T lymphocytes.

The involvement of Fc- and Fc+ T cells, separated on the fluorescence-activated cell sorter, in proliferative and cytotoxic responses to alloantigens was examined. The cytotoxic lymphocytes generated by in vivo exposure to allogeneic tumor cells were shown to express the Fc receptor. The proliferative responses to alloantigen exposure in mixed lymphocyte cultures was equivalent in intensity for unseparated T cells, the Fc+ T-cell fraction, and the Fc- T-cell fraction isolated from nonsensitized spleen cells. In contrast, the cytotoxic responses generated by the Fc- T-cell fraction (less than 1% Fc+) were much weaker than the cytotoxic responses generated by the Fc+ T-cell fraction (80-90% Fc+), and the responses of the Fc+ T-cell fraction were generally weaker than, or equal to the responses of unseparated T cells (Fc- T less than Fc+ T less than or equal to unseparated T). Mixtures of the Fc- and Fc+ T-cell fractions mounted stronger cytotoxic responses than the sum of the responses of either fraction alone. Examination of the Ly phenotypes of the synergizing populations revealed that the CL precursor activity (Ly-2+ T cells) resided in the Fc- T-cell population, and that the amplifier T-cell activity (Ly-1+ T cells) resided in the Fc+ T-cell population. The data are discussed in terms of T-cell heterogeneity, differentiation, and intercellular interaction.

Animals

Generation of cytolytic T lymphocytes in vitro. VIII. failure of anti-RS antisera to inhibit the generation of cytolytic T lymphocytes or cytolytic T lymphocyte activity.

Antibody reactive with "recognition structures" (RS) of mouse lymphoid cells for alloantigens (anti-RS) was prepared by immunization of F1 hybrid mice with parentalstrain lymphoid cells or with antibody produced in one parental strain against alloantigens of the other parental strain. Such antisera prevented generation of the "product of antigenic recognition" (PAR) that is produced within a few hours in cultures prepared with a mixture of lymphoid cells from genetically disparate mice. However, treatment of responding lymphoid cells with anti-RS sera and complement did not inhibit generation of cytolytic T lymphocytes (CTL) in mixed lymphocyte cultures (MLC). Treatment of cells obtained from MLC with anti-RS sera and complement failed to inhibit cytolytic activity of such cells for specific alloantigens.

Animals

Augmented mitotic response of human peripheral lymphocytes in the presence of lymphocytes from nude mice: detection of a small number of functional human lymphocytes in the explanted host.

In the present paper, authors showed a method to detect a small number of functional human peripheral lymphocytes (HPL) in the presence of lymphoid cells of nude mouse (n-ML). HPL was mixed with n-ML to give a total number of 5 X 10(4) cells and cultured in vitro in the presence of PHA for 5 days. HPL responded will to PHA while n-ML did not, as assessed by 3H-TdR incorporation in the presence of the mitogen. Synergistic response between these two cell population was observed. Five--ten folds enhancement was shown by mixing 5 X 10(3) HPL and 4.5 X 10(4) n-ML (10% of HPL) and 500 HPL became detectable by comixing with n-ML, while 5,000 HPL was the lowest limit to be detected in a single cell culture with this mitogen. The results seem to indicate that this method could detect functional HPL as small number as one percent of the cell mixture. On the other hand, xenogeneic mixed lymphocyte reaction was observed when the percentage of HPL exceeded 40%. Mitomycin-C treatment of either HPL or n-ML revealed that a major part of cells incorporating 3H-TdR was HPL which could be activated by the stimulation with xenogeneic murine nucleated cells and that a smaller part of murien B cells were also stimulated by the HPL.

Animals

K cell activity of normal and chronic lymphocytic leukaemia lymphocytes: association with lymphocytes bearing receptors for human C3b.

Blood lymphocytes of patients with chronic lymphocytic leukaemia (CLL) and of normal individuals were depleted of EAC3b- or EAC3d-rosette-forming cells (RFC), respectively and assayed for K-cell activity in a system measuring antibody-dependent-cell-mediated cytotoxicity (ADCC). K-cell activity was found to be associated with a cell population bearing receptors for C3b.

Antibody-Dependent Cell Cytotoxicity

Studies on cell surface antigens of mouse leukemic and normal lymphocytes. IV. Functional studies on mouse T lymphocyte subpopulations. B. Lyt phenotype of cytotoxic T lymphocytes and their precursors in B6-Lyt-1.1 mice.

Lyt phenotype of in vitro generated alloreactive cytotoxic T lymphocytes (CTL) and their precursors in B6-Lyt-1.1 (Thy-1.2, Lyt-1.1, Lyt-2.2) congenic strain of mice was studied. The generation of CTL in vitro was completely abrogated by pretreatment of responder cells with antisera to Thy-1.2, Lyt-1.1 and Lyt-2.2 antigens and complement. Mixing of anti-Lyt-1.1-pretreated cells with anti-Lyt-2.2-pretreated cells did not restore CTL generation indicating that both Lyt antigens are expressed on the same precursor cell population. The effect of anti-Lyt sera was specific because the generation of CTL was prevented only when cells from strains possessing appropriate Lyt alleles were pretreated. CTL were eliminated by lysis with anti-Thy-1.2 serum and strongly reduced by anti-Lyt-1.1 and anti-Lyt. 2.2 sera. Nevertheless, a small but significant proportion of CTL was insensitive to lysis with anti-Lyt sera. These data indicate that a phenotype of precursor cells and of majority of CTL is Thy-1.2+ Lyt-1.1+ Lyt-2.2+.

Animals

Adenylate cyclase in thymus-derived and bone marrow-derived lymphocytes from normal donors and patients with chronic lymphocytic leukemia.

Lymphocytes were purified from peripheral blood of normal donors and patients with chronic lymphocytic leukemia (CLL) by Ficoll-Hypaque centrifugation. Adenylate cyclase activity, expressed as picomoles [(32)P]cyclic AMP generated per milligram protein per minute, was 57+/-4 in normals and 26+/-4 in CLL patients. Enzyme activity, expressed as picomoles [(32)P]cyclic AMP generated per 10(6) lymphocytes per minute, was 2.09+/-0.19 for normal lymphocytes and 1.10+/-0.16 for CLL lymphocytes. The differences between normal and CLL peripheral lymphocytes are highly significant (P < 0.001) with either method of calculating activity. Cyclic AMP levels (picomoles per 10(6) lymphocytes) also differed significantly: 1.38+/-0.29 for normals and 0.45+/-0.08 for CLL lymphocytes. Adenylate cyclase was assayed in lymphocytes enriched for bone marrow-derived (B) cells by removing E-rosetted thymus-derived (T) cells, and enriched for T cells by harvesting E-rosetted lymphocytes or by removing B cells with nylon wool absorption. Solutions to simultaneous equations gave the following calculated enzyme activities for pure B- and T-cell subpopulations (in picomoles [(32)P]cyclic AMP generated per milligram mg protein per minute): normal B, 196+/-22; normal T, 30+/-10; CLL B, 34+/-6; CLL T, 19+/-4. Thus. normal B-lymphocyte adenylate cyclase exceeds normal T-lymphocyte activity by more than sixfold, whereas in the case of CLL the enzyme activity in B lymphocytes is markedly reduced to levels comparable to T lymphocytes. The responses of lymphocytes to stimulation with the hormones prostaglandin E(1) and isoproterenol, and with NaF, were assessed. Compared with normal lymphocytes, enzyme activities were reduced in CLL lymphocytes incubated with these agents, but to a degree paralleling the reduced basal activities. Thus, the ratios between stimulated and basal adenylate cyclase levels in Ficoll-Hypaque-purified, normal lymphocytes were 2.3+/-0.1 after incubation with 10 muM isoproterenol, and 3.9+/-0.2 with 10 mM NaF, values which did not differ significantly from those obtained with CLL lymphocytes. When the enzyme activities calculated for purified T- and B-lymphocyte subpopulations were used to derive the stimulation ratios, the responses of normal and CLL T and B cells to these agents were also indistinguishable. The simplest explanation for these findings is a reduced number of normally responsive enzyme sites on the surface membranes of CLL lymphocytes, although alternative explanations are possible.

Adenylyl Cyclases

Studies of anti-lymphocyte antibody of patients with active SLE. I. Cause of loss of suppressor T-lymphocyte function.

Effect of anti-lymphocyte antibody of active systemic lupus erythematosus (SLE) on lymphocyte function was examined. Lymphocytes from normal individuals treated with anti-lymphocyte antibody and complement exhibited marked inhibition of response to concanavalin A (Con A), while the response of lymphocytes to phytohaemagglutinin M (PHA-M) and pokeweed mitogen (PWM) was slightly affected. In mixed lymphocyte culture response, both stimulator and responder cells were insensitive to anti-lymphocyte antibody. Treatment of sensitized lymphocytes with anti-lymphocyte antibody and complement caused a dose-dependent suppression of blastogenic response to purified protein derivatives (PPD). No effect, however, was noted on migration-inhibitory factor (MIF)-producing cells. In PWM-driven Ig synthesis, T lymphocytes lacking the anti-lymphocyte antibody-reactive T-cell subset enhanced PWM-driven Ig synthesis of autologous B lymphocytes. Con-A-induced suppressor function of lymphocytes was abolished by the treatment with anti-lymphocyte antibody and complement. The present study demonstrated that lymphocytes from normal individuals after treatment with anti-lymphocyte antibody and complement showed similar immunological reactivities with lymphocytes from active SLE, indicating that those anti-lymphocyte antibodies could play an important role in defective suppressor cell function.

Antibody-Dependent Cell Cytotoxicity

Glucocorticoids administered in vivo inhibit human suppressor T lymphocyte function and diminish B lymphocyte responsiveness in in vitro immunoglobulin synthesis.

The effects of corticosteroid given in vivo on human lymphocyte subpopulation function were investigated using an in vitro system of pokeweek mitogen-stimulated immunoglobulin production. Peripheral blood lymphocytes were obtained from normal volunteers before and 4 h after the intravenous administration of methylprednisolone. Unfractioned peripheral blood lymphocytes showed a consistent decrease (mean congruent with 50%) in immunoglobulin and total protein synthesis after steroid administration. Utilizing separated thymus-derived (T) and bone marrow-derived (B) lymphocyte fractions, the pathophysiology of this alteration in immunoglobulin production was elucidated. B lymphocytes obtained after steroid treatment showed a markedly diminished immunoglobulin response (20% of normal) to normal T lymphocytes and to normal T cells that had been irradiated to remove suppressor T lymphocyte function. All major classes of immunoglobulin (IgG, IgM, and IgA) were affected. T lymphocytes procured after steroid administration were capable of providing normal amounts of T cell help for B cells in immunoglobulin production. However, suppressor T lymphocyte activity, observed with normal T lymphocytes at high T to B cell ratios, was absent from the post-steroid T lymphocytes. This loss of suppressor T lymphocyte function was not due to the presence of excess help as irradiated pre- and poststeroid T cells provided equal amounts of helper activity. On recombining the poststeroid treatment B cells, which are hyporesponsive in immunoglobulin synthesis, with the posttreatment T lymphocytes, which lack suppressor activity, diminished amounts of immunoglobulin were produced which correlate well with the effects observed with unseparated cells. Thus, corticosteroids have differential effects on the lymphocyte populations involved in immunoglobulin biosynthesis. B cell responsiveness is diminished, suppressor T lymphocyte activity is removed, and helper T lymphocyte function is unaffected.

Adult

Altered lymphocyte functions in rats bearing syngeneic Moloney sarcoma tumors. I. Mitogen responses, mixed lymphocyte reactions (MLR) and mixed lymphocyte-tumor reactions (MLTR).

Impairment of mitogen responses to Con A and LPS and of MLR and MLTR was detected in the spleens of rats bearing syngeneic Moloney sarcoma tumors. Depressed responses of both T cell and Ig+ cell populations were observed. During the observation period of 6 to 10 days post-tumor inoculation when maximal T cell-mediated cytotoxicity was observed in spleen and draining lymph node cells, spleen cells showed marked impairment in response to stimuli mentioned above. By contrast, draining lymph node cell activity was either unaltered or somewhat elevated above the level of activity measured in normal control populations. Data presented in this and an accompanying paper strongly indicate that macrophages are activated as immunosuppressor cells in tumor-bearing rats.

Animals

N-Acetyl-beta-D-glucosaminidase activity in normal and chronic lymphocytic leukaemic lymphocytes.

N-Acetyl-beta-D-glucosaminidase (EC 3.2.1.30) activity was measured fluorimetrically in: (a) lymphocytes from 20 normal donors, (b) enriched B and T lymphocyte populations prepared by E rosette sedimentation from 8 normal subjects, (c) lymphocytes from 15 untreated B cell chronic lymphocytic leukaemic patients. The pH profiles and optima (4.7) were similar in all preparations. Normal B lymphocytes had higher activity than normal T lymphocytes and both these preparations and normal unfractionated lymphocytes had significantly higher activity than chronic lymphocytic leukaemic lymphocytes. The apparent Michaelis constants were similar in normal unfractionated, B enriched and T enriched lymphocytes, whereas a reduced affinity for the enzyme was observed in the leukaemic lymphocytes. The difference in enzyme content between normal and chronic lymphocytic leukaemic lymphocytes cannot therefore be explained on the basis of a high B cell percentage in patients with chronic lymphocytic leukaemia.

Acetylglucosaminidase