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Recruitment of effector lymphocytes by initiator lymphocytes. Recruited lymphocytes are immunospecific and include graft-versus-host-reactive lymphocytes.

We have shown previously that initiator T lymphocytes (ITL), sensitized in vitro against fibroblast antigens, recruit effector T cells in vivo. After injection into hind footpads of syngeneic recipients, sensitized ITL migrated to the draining popliteal lymph nodes (PLN) and activated a trapping mechanism by which circulating lymphocytes were recruited in the PLN. This paper reports experiments designed to test the immunospecificity of these recruited T lymphocytes (RTL). We found that immunospecific RTL were depleted from other lymphoid organs during recruitment in the PLN. However, immunospecific ITL were not depleted from spleens during PLN recruitment. Thus ITL and RTL are functionally distinguishable. We show that specific GVH reactive lymphocytes were also lost from spleens and distal lymph nodes during trapping of RTL in the PLN. Thus, the trapping phase of the recruitment response is immunospecific, as are the sensitization and effector phases. The trapped RTL are antigen-specific, and include the pool of GVH-reactive-lymphocytes committed to the same alloantigen. Thus, it appears that GVH-reactive cells respond to syngeneic ITL sensitized against allogeneic fibroblasts.

Animals

[Immunologic phenotype of lymphocytes in chronic B-cell lymphocytic leukemia. II. Studies of immunologic phenotype of peripheral blood and lymph node lymphocytes in patients with chronic lymphocytic leukemia or leukemic forms of lymphoplasmacytoid lymphoma].

UNLABELLED: In a group of 16 patients with chronic lymphocytic leukaemia and leukaemic forms of the lymphoma lymphoplasmocytoides immunophenotypes of peripheral blood and lymph node lymphocytes were studied. CONCLUSIONS: 1) immunophenotype heterogeneity observed in a minority of patients in lymph-nodes or peripheral blood seems to be connected with the co-existence of leukaemic and normal reactive B-cells, 2) SIgG+ cells seem to represent activated B lymphocytes producing and secreting autoantibodies, 3) circulating peripheral T lymphocytes do not reflect the distribution of T cell subpopulations in lymph-nodes.

Adult

[Immunologic phenotype of lymphocytes in chronic B-cell lymphocytic leukemia. I. B- and T-lymphocytes in chronic lymphocytic leukemia].

This article contains the review and the critical discussion of studies of T and B lymphocytes in chronic B-cell lymphocytic leukaemia. It is not explicitly known now, which stage of differentiation of lympho-haemopoietic cells undergoes malignant transformation in CLL-B. Basing on VDJ recombination activity it is supposed that some cases derive from the stem cell, others--from B lineage cells.

Antigens, CD

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

The role of dendritic cells as stimulators of minor lymphocyte-stimulating locus-specific T cell responses in the mouse. I. Differential capacity of dendritic cells to stimulate minor lymphocyte-stimulating locus-reactive T cell hybridomas and the primary anti-minor lymphocyte-stimulating locus mixed lymphocyte reaction.

The response of T cells to minor lymphocyte-stimulating locus (Mls) determinants remains poorly understood with respect to the antigenic determinants responsible for T cell stimulation and the types of APC capable of stimulating the response. In this report, we demonstrate that highly purified dendritic cells (DC) as well as B cells have the capacity to stimulate Mls-specific responses. Unseparated spleen cells, purified DC, resting B cells, and activated B cells were compared for their capacity to stimulate several Mls-reactive T cell hybridomas. Whereas the entire panel of Mls-reactive T cell hybridomas was stimulated strongly by unseparated spleen cells and activated B cells, the hybridomas responded only weakly to purified DC or resting B cells. Activation of resting B cells with either B cell stimulatory factor-1 (1 day pre-treatment) or LPS/dextran (2 or 3 day pre-treatment) greatly augmented their Mls-stimulatory capacity. In contrast, the Mls-stimulatory capacity of DC was not augmented by a 1-day pre-treatment with either B cell stimulatory factor-1 or supernatant from the DC-induced primary anti-Mls-MLR. In the primary anti-Mls-MLR, both purified DC and LPS/dextran-stimulated B blasts were found to elicit vigorous T cell proliferative responses. Much weaker responses were elicited by unseparated spleen cells. The stimulation of the primary anti-Mls-MLR by purified DC was further confirmed by producing Mls-specific T cell clones which were preferentially stimulated by DC. Autologous (Mlsb) DC were found to markedly enhance the primary anti-Mls-MLR response to small numbers of Mlsa B blasts. Thus, DC possess other "accessory cell" properties that augment the primary anti-Mls-MLR despite the predicted low level of Mls determinant expression on DC based on the results obtained with Mls-reactive hybridomas. Possible accessory cell properties of DC relevant to this phenomenon are discussed.

Animals

Separation of T lymphocytes from normal individuals and patients with B lymphocyte chronic lymphocytic leukaemia.

Previous studies have shown that lymphocytes from patients with chronic lymphocytic leukaemia have a diminished response to mitogens which stimulate T cells. Chronic lymphocytic leukaemia is most often a disease of accumulating B cells so that T lymphocytes are diluted by large numbers of leukaemic cells. Direct comparison with the responses of normal lymphocytes to mitogenic stimulation is therefore suspect. To circumvent this difficulty, a method of isolating T cells from normal individuals and patients with chronic lymphocytic leukaemia was developed. Lymphocytes containing an average of 16.1 per cent B cells from normal individuals were applied to IgG-anti-IgG-coated Degalan bead columns and held at 4 degrees for 2 hours. The eluted cells contained less than 2 per cent B cells. When chronic lymphocytic leukaemic lymphocytes, containing an average of 68.6 per cent B cells, were applied to IgG-anti-IgG columns, the eluted cells contained 36.4 per cent B cells. To improve the purification of T lymphocytes, columns of uncoated Degalan beads were used to remove non-specifically adherent cells. Eluted lymphocytes were then applied to IgG-anti-IgG columns. This resulted in the recovery of purified populations of T cells with less than 2 per cent contamination with B cells. Patients with chronic lymphocytic leukaemia were found to have lymphocytes with either a normal density or a low density of surface immunoglobulins. B cells were successfully removed from lymphocyte suspensions in all cases of chronic lymphocytic leukaemia with a normal density of lymphocyte surface immunoglobulins. In the three cases of chronic lymphocytic leukaemia with low density surface immunoglobulins, separation by this method was unsuccessful. However, an enriched T-cell population was obtained when leukaemic lymphocytes which had lost all detectable surface immunoglobulins were passed through a column coated with heat-aggregated IgG.

Animals

Lymphocyte transformation induced by autologous cells. IV. Human T-lymphocyte proliferation induced by autologous or allogeneic non-T lymphocytes.

An autologous mixed lymphocyte reaction was demonstrated between T and non-T lymphocytes. Sheep erythrocyte rosetting was used to separate human lymphocytes into T and non-T lymphoid preparations. Non-T lymphocytes stimulated the proliferation of autologous T lymphocytes. The cell in this preparation that was most stimulatory had the characteristics of a K lymphocyte. The allogeneic mixed lymphocyte reaction was also shown to reflect the proliferation of T lymphocytes stimulated by allogeneic non-T lymphocytes. Proliferation of T lymphocytes in the allogeneic mixed lymphocyte culture probably reflects a response to both foreign histocompatibility determinants and determinants present on non-T lymphocytes. It is suggested that the proliferative response of T lymphocytes to autologous non-T lymphocytes may be a step in the process by which T lymphocytes regulate immunity.

Blood

Antigen presentation by B lymphocytes to CD4+ T lymphocytes in vivo: importance for B lymphocyte and T lymphocyte activation.

B lymphocytes, like macrophages and dendritic cells, can present antigen to CD4+ T cells. Antigen presentation by B cells is essential for the generation of an in vivo T cell dependent antibody response, and repeated antigen presentation by B cells to T cells is necessary to induce B cell clonal expansion. Presentation of antigen by resting B cells to unprimed T cells tolerizes T cells, while anti-IgD antibody activates B cells and allows B cell antigen presentation that productively activates T cells. However, activation is not all that is required for B cells to productively present antigen to T cells.

Animals

Plasminogen-dependent fibrinolytic activity in normal human lymphocytes: diminished lymphocyte plasminogen activator in chronic lymphocytic leukemia.

Discrepancies in correlations between fibrinolytic activity and metastatic potential of malignant cells has resulted in speculation on the putative role of plasminogen activators (PA) in cancer. In this report we have compared lymphocyte PA from 40 patients with chronic lymphocytic leukemia (CLL) to normal human B- and T-lymphocytes. Lymphocytes were isolated from peripheral blood by Ficoll-Hypaque centrifugation. The B- and T-cells were further separated on nylon wool columns. Cell PA activity and cell membrane PA were determined using 3H-fibrin-coated plates with added human plasminogen. Lymphocytes did not lyse 3H-fibrin in the absence of plasminogen. Plasminogen-dependent fibrinolytic activities of normal B- and T-lymphocytes were comparable. The addition of protease inhibitors with trypsin or plasmin specificity to lymphocytes significantly inhibited normal PA, thus substantiating the serine protease spectrum of lymphocyte PA. Examination of lymphocytes from greater than 95% of patients with chronic lymphocytic leukemia revealed a marked decrease in lymphocyte and cell membrane PA as compared to normals. No correlation between Stage of CLL and lymphocyte PA was observed. Likewise, an inhibitor of PA in CLL lymphocytes was not detected. The function of PA in normal B-lymphocyte physiology and the potential pathogenetic role of diminished PA in CLL lymphocytes remain to be explored.

Fibrinolysis

The role of lymphocyte function-associated antigen 1 (LFA-1) in the adherence of T lymphocytes to B lymphocytes.

The functional role of the LFA-1 molecule in the interaction between helper T lymphocytes and B lymphocytes was investigated using lymphocytes from patients with leukocyte adhesion deficiency, an inherited immunodeficiency characterized by a defective leukocyte expression of the LFA-1, Mac-1 (CR3) and p150,95 molecules. The ability of LFA-1- T lymphocytes to provide antigen-specific help for HLA-identical LFA-1+ B lymphocytes was reduced while their antigen-specific activation was normal. Antigen-independent conjugate formation between resting, nonactivated LFA-1- T lymphocytes and LFA-1+ B lymphocytes was impaired while LFA-1- B lymphocytes bound LFA-1+ T lymphocytes normally. Conjugate formation of activated LFA-1- T lymphocytes was mostly mediated by the CD2-LFA-3 adhesion pathway while the ICAM-1 molecule, a ligand of LFA-1, had no function. These results demonstrate that LFA-1 plays a major role in the cognate interaction between helper T lymphocytes and B lymphocytes that cannot be mediated instead by CD2 or other molecules on resting T lymphocytes.

Antibodies, Viral

Adaptive differentiation of murine lymphocytes. I. Both T and B lymphocytes differentiating in F1 transplanted to parental chimeras manifest preferential cooperative activity for partner lymphocytes derived from the same parental type corresponding to the chimeric host.

The concept of adaptive (selective) differentiation preducts that early differentiation of lymphocytes is conditioned by the environment in which such differentiation takes place. These processes appear to involve selection of lymphocytes according to their self-recognition between interacting lymphocytes is, at least in part, controlled by major histocompatibility complex-linked genes, then adaptive differentiation is also controlled by these genes. In these studies, we have tested the capacities of helper T lymphocytes and hapten-specific B lymphocytes primed in the environments of various combinations of bone marrow chimeras prepared between two parental strains (i.e. A/J and BALB/c) and their corresponding F1 hybrid (CAF1) to interact with primed B and T lymphocytes derived from conventional parent and F1 donors as well as all of the corresponding bone marrow chimera combinations. The results demonstrate clearly that (a) F1 transplanted to F1 chimeric lymphocytes display no restriction in terms of cooperative activity with all of the various partner cell combinations; (b) parent transplanted to F1 chimeric lymphocytes manifest effective cooperative activity only for partner cells from F) or parental donors corresponding to the haplotype of the original bone marrow donor, thereby behaving phenotypically just like conventional parental lymphocytes; and (c) F1 transplanted to parent chimeric lymphocytes display restricted haplotype preference in cooperating best with partner lymphocytes sharing the H-2 haplotype, either entirely or codomimantly, of the parental chimeric host. The implications of these findings for understanding certain controlling mechanisms for lymphocyte differentiation are discussed.

Animals

Chromatin proteins from human lymphocytes: a gel electrophoretic comparison between normal, mitogen-stimulated, cell-line, and chronic lymphocytic leukemia lymphocytes.

Cell-line lymphocytes contained considerably more nonhistone chromatin protein than normal lymphocytes. The overall electrophoretic pattern of the nonhistone chromatin proteins from nonreplicating cell types with predominantly condensed chromatin (normal lymphocytes and chronic lymphocytic leukemia lymphocytes) was similar, as it was between replicating cell types with predominantly decondensed chromatin (mitogen-stimulated normal lymphocytes and cell-line lymphocytes), although all four cell types differed qualitatively. A "heavy" chromatin fraction from cell-line lymphocytes could be distinguished from a "light" fraction and had a pattern similar to that from cells of the condensed chromatin type. Normal lymphocytes contained two acid-soluble chromatin polypeptieds not found in cell-line lymphocytes.

Cell Fractionation

Lymphocyte adhesion to endothelial cells in vitro: models for the study of normal lymphocyte recirculation and lymphocyte emigration into chronic inflammatory lesions.

Lymphocytes preferentially leave the bloodstream to enter secondary lymphoid organs or sites of inflammation by first adhering to, and then migrating through, the walls of specialized postcapillary venules known as high endothelial venules. To study the initial adhesion event between lymphocytes and endothelial cells, two different in vitro assays have been developed. In the first, lymphocytes are incubated on frozen sections of lymphoid organs or other tissues. Under certain conditions, lymphocytes specifically bind to the endothelial cells of high endothelial venules in such sections. The results of monoclonal antibody inhibition studies have suggested that endothelial cells at various lymphoid organs, and at certain inflammatory lesions, may express organ-specific ligands on their surface, which bind to corresponding organ-specific "homing receptors" on the lymphocytes. The second assay measures the adhesion of lymphocytes to confluent monolayers of viable, cultured endothelial cells. Because pretreatment of such cell monolayers with a number of cytokines produced at inflammatory sites stimulates an increase in the adhesiveness of the cells for lymphocytes, it has been suggested that such cytokine-induced increases in endothelial cell adhesiveness may be important in the induction of lymphocyte traffic into such lesions. Unlike the homing receptor type of binding described above, the cytokine-induced increase in lymphocyte-endothelial cell adhesion is presumably non-tissue-specific. Results of monoclonal antibody inhibition studies in this system have suggested that at least two ligand-receptor interactions may be involved. Monoclonal antibodies to the lymphocyte function-associated antigen-1 greatly inhibited the adhesion of T cells to untreated endothelial cells, but had little or no inhibitory effect on T-cell adhesion to cytokine-treated endothelial cells.

Animals

Mixed lymphocyte reactivity of human lymphocytes primed in vitro. I. Secondary response to allogenic lymphocytes.

In order to study the mixed lymphocyte culture reactivity of human lymphocytes primed in vitro, a nucleopore culture chamber technique allowing human lymphocytes to be cultured for a period of at least two weeks has been developed. During the primary culture period in nucleopore chambers, human lymphocytes were sensitized against mitomycin-treated allogenic stimulating cells. It was shown that the stimulated lymphocytes underwent a blastogenic reaction and the results suggest a reversion to the state of small, resting, primed lymphocytes. In vitro primed lymphocytes displayed allogenic memory. This was characteristic of a secondary response, which is shown by the following: 1) acceleration, the peak of thymidine incorporation occurring on day 4,2) specificity, the accelerated response was observed only when the primed lymphocytes were confronted with the cell used for priming. Contact with a third party cell did not produce this kind of activation. 3) Amplitude; the peak DNA synthesis response was greater than that of unprimed lymphocytes cultivated for the same length of time.

Cell Survival

[In vitro stimulation of peripheral blood lymphocytes with allogeneic lymphocytes (mixed lymphocyte culture, MLC) or phytomitogens in patients with Hashimoto's thyroiditis (author's transl)].

To investigate the role of peripheral blood lymphocytes in thyroid auto-immunity, the in vitro responsiveness to allogeneic lymphocytes (MLC) or phytomitogens was examined in the lymphocytes from patients with Hashimoto's thyroiditis. The MLC responses of 16 patients were compared with those of age- and sex-matched normal controls. All possible combinations between lymphocytes from the patients and controls were mixed in both one-way and two-way MLC. From the results of one-way MLC, the stimulatory capacity and responding capacity of lymphocytes from the patients and controls were calculated respectively as follows: : formula: (see text) To the same allogeneic stimulation of Nm (mitomycin-treated stimulating lymphocytes from controls), lymphocytes from the patients (H) exhibited a lower response (P greater than 0.05) than did those from the controls (compare (1) with (3)). Phytomitogen-response was simultaneously studied for residual cells of MLC. Lymphocytes from the patients showed a significantly decreased (P less than 0.01) response to phytohemagglutinin-p and concanavalin A in comparison with the response of normal lymphocytes. From these results, it was suggested that cell-mediated immunity in vivo was impaired in Hishimoto's thyroiditis.

Adolescent

Interactions between B lymphocyte subpopulations. Augmentation of the responses of resting B lymphocytes by activated B lymphocytes.

Mouse B lymphocytes were fractionated from normal T lymphocyte-depleted spleen cell populations using discontinuous percoll gradients and were stimulated with rabbit F(ab')2 anti-mouse mu-specific antibodies (anti-mu) plus the supernatant of Con A-stimulated rat spleen cells (SN) as a source of lymphokines. The responses of small (mean volume 120 mu 3), dense (greater than 1.087 specific gravity), resting (least spontaneous thymidine incorporation) B lymphocytes were augmented by irradiated (4000 rad), larger (mean volume greater than 170 mu 3), less dense (less than 1.081 specific gravity), activated (greater spontaneous thymidine incorporation) B lymphocytes. Proliferation was augmented 2- to 4-fold and polyclonal antibody-forming cell responses three- to sixfold. Maximal augmentation of the responses of 5 X 10(4) resting B cells was obtained with 10(4) activated B cells. Augmenting activity was specific for activated B lymphocytes in that responses were not augmented by irradiated thymocytes, T lymphoblasts, macrophages, or additional supernatant. B lymphocytes activated in vitro by LPS or anti-mu also had augmenting activity. Augmentation of responses was maximal only when activated B lymphocytes were added simultaneously with anti-mu. The interaction between activated and resting B lymphocytes did not appear to be genetically restricted. Interestingly, the augmenting activity of activated B cells could be reconstituted by a combination of supernatant and cell membranes from these cells but not by either alone, suggesting that two components are required, one soluble and the other membrane-bound. Thus, a functional interaction has been demonstrated between B lymphocyte subpopulations which differ in their state of activation, and this interaction appears to involve a novel mechanism of action.

Adjuvants, Immunologic

Recruitment of effector lymphocytes by initiator lymphocytes. In vivo migration of in vitro sensitized initiator T lymphocytes.

We previously found that mouse T lymphocytes sensitized in vitro against allo- or syngeneic fibroblasts, upon injection into syngeneic recipients, do not themselves differentiate into effector cells, but recruit effector T lymphocytes within the draining lymph nodes. As a result of sensitization, these initiator lymphocytes acquire a trypsin-sensitive membrane property which is necessary for recruitment. We now report studies on the in vivo migratory behavior of initiator lymphocytes following sensitization. We injected 51Cr-labeled initiator lymphocytes into recipient footpads and found significantly increased migration of sensitized cells to the draining popliteal lymph node (PLN) during the first day. By amputation of the foot at various times, we showed that migration during the first 12-24 hours was critical for subsequent recruitment. Trypsin treatment of initiator lymphocytes abolished this accelerated migration. Lymphocytes triggered nonspecifically by Con A migrated to the PLN like antigen-sensitized cells. We also compared the migration of injected lymphocytes from the footpad to the PLN in graft-versus-host and host-versus-graft reactions, and found these reactions to differ both from each other and from recruitment in terms of lymphocyte migration. These findings are discussed in terms of the physiology of the cell-mediated immune response and the notion of peripheral sensitization.

Animals

Antioxidant enzymes in lymphocytes from normal subjects and patients with chronic lymphocytic leukaemia: increased glutathione peroxidase activity in CLL B lymphocytes.

The activities of several enzymes that protect against oxidative injury were determined in blood lymphocytes from patients with B chronic lymphocytic leukaemia (CLL) and from normal subjects. Similar glutathione reductase (GR), catalase and glucose-6-phosphate dehydrogenase (G6PD) activities were found in normal and CLL lymphocytes. Higher glutathione peroxidase (GP) activity was found in CLL lymphocytes. This activity in CLL B lymphocytes was 2-fold higher than that of normal B lymphocytes, and 3-fold higher than that of T lymphocytes from either source. Several disease processes have been associated with decreased glutathione peroxidase activity. Our finding with CLL B lymphocytes is believed to be the first example of an increased GP activity in a disease. It may reflect either the expansion of a rare type of B cell population or be an expression of the malignant process.

B-Lymphocytes