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Biomedical subjects

L Chess

Publications and source records attributed to L Chess.

At least 91 records · Page 5Linked to original sources

Functional analysis of human T cell subsets defined by monoclonal antibodies. IV. Induction of suppressor cells within the OKT4+ population.

In this report, we explored the functional heterogeneity within the OKT4+ subset of human T cells. Evidence was obtained that although in vitro pokeweed mitogen-activated OKT4+ cells can function as radioresistant helper cells, these activated OKT4+ cells could also exert potent feedback suppression. Despite the induction of suppressor cells after pokeweed mitogen activation, the OKT4+ population maintains its original OKT3+, OKT4+, nd OKT8- surface phenotype. The suppressor cells contained within the activated OKT4+ population were found to be radiosensitive. Importantly, the suppression mediated by activated OKT4+ cells required the presence of radiosensitive cells contained within the resting OKT4+ population. Taken together, these results suggest that the OKT4+ subset of human T cells contains cells that can be activated to differentiate into suppressor cells independent of OKT8+ cells.

Antibodies↗

Plasma cell dyscrasia and peripheral neuropathy: identification of the myelin antigens that react with human paraproteins.

In some cases of polyneuropathy and plasma cell dyscrasia, the monclonal antibodies react with human peripheral nerve myelin. To identify the myelin antigens involved, we separated the proteins of human central and peripheral nerve myelin by polyacrylamide gel electrophoresis, transferred the proteins onto nitrocellulose sheets, and used an immunoenzymatic technique to detect the reactive antigens. Serum IgM but not IgG from three patients with neuropathy and complement-fixing anti-human myelin IgM paraproteins immunostained a protein of approximately 100,000 daltons in human peripheral nerve myelin and a protein or closely migrating proteins of similar size in human central nervous system myelin. In a fourth patient, both IgM and IgG immunostained the antigen. Immunostaining was specific for the paraprotein light chain type, and absorption of the patients' sera with human peripheral nerve myelin eliminated the reaction with the central nervous system proteins. No reaction was seen with rabbit peripheral nerve myelin or with membranes prepared from human myotubes, human T cells, or human fibroblasts. Control sera from six patients with neuropathy and IgM paraproteins that did not react with myelin, from four patients with IgM paraproteins but no neuropathy, and from three normal subjects did not immunostain myelin.

Antibodies, Monoclonal↗

Dissection of distinct human immunoregulatory T-cell subsets by a monoclonal antibody recognizing a cell surface antigen with wide tissue distribution.

A monoclonal antibody, PVR-11, was obtained after hybridization of X63Ag8.653 murine myeloma cells with spleen cells from a mouse immunized with human lymphocytes. It recognizes a 175,000- to 185,000-dalton surface antigen present on approximately 80% of normal human peripheral T lymphocytes, 50% of non-T non-B cells, and less than 10% of B cells as determined by complement-dependent microcytotoxicity. It is also present on various leukemia T cells, on some but not all T lymphoblastoid cell lines, and on a small fraction of some B lymphoblastoid cell lines. Some B-cell chronic lymphocytic leukemia cells also express the PVR-11 antigen. Functional analysis of normal human T lymphocytes demonstrated that the PVR-11-depleted T-cell subset contains the precursors of both cytotoxic and suppressor cells but lacks helper cells. On the other hand, cytotoxic effector T cells express the PVR-11 antigen. These results demonstrate that antigenic determinants with relatively wide tissue distribution can dissect functionally distinct human immunoregulatory T-cell subsets.

Antibodies↗

Complement-fixing antiperipheral nerve myelin antibodies in patients with inflammatory polyneuritis and with polyneuropathy and paraproteinemia.

Serum from patients with peripheral neuropathies was tested for antiperipheral nerve myelin antibodies by complement fixation. Antibody activity was detected in 5 of 20 patients with acute or chronic remitting polyneuritis and in 4 of 20 patients with polyneuropathy and paraproteinemia but not in patients with other types of neuropathy, neurologic disease, or immunologic disease. In three patients with IgM paraproteinemia, the complement-fixing activity resided in the IgM fraction; in one patient with chronic inflammatory polyneuritis, antibody activity resided in the IgG fraction. In the inflammatory polyneuropathies, antibody titers did not always correlate with disease activity. Sera from patients with remitting polyneuropathies reacted with either human or rabbit peripheral nerve myelin, but sera from patients with paraproteinemia reacted only with human myelin.

Animals↗

Functional analysis of human T cell subsets defined by monoclonal antibodies. III. Regulation of helper factor production by T cell subsets.

In the present report we extended our previous studies demonstrating that obligatory T-T interactions are important in regulating human immune responses in vitro. Functionally distinct human T cell subsets were isolated by complement-mediated lysis using the monoclonal antibodies OKT4 and OKT8. Evidence was obtained that during allogeneic interactions, OKT4+, but not OKT8+, responder T cells are required to generate helper factor(s) capable of polyclonally activating human B cells independent of additional T cell help. Importantly, the alloantigen-induced helper factor(s) production and/or release was found to be suppressed by addition of graded numbers of radiosensitive OKT8+ cells. On the other hand, no evidence was obtained that supernatant derived from alloactivated OKT8+ cells could counterbalance the helper activity generated in the presence of supernatant from alloactivated OKT4+ cells. Furthermore, OKT8+ cells, known to suppress PWM-driven B cell differentiation in the presence of OKT4+ cells, do not suppress B cell differentiation induced by preformed helper factor even in the presence of OKT4+ cells. These data further underscore the importance of functional T-T interactions in immunoregulation in vitro and support the idea that the target of suppression of B cell differentiation, induced either by alloantigen-triggered helper factor or PWM, are OKT4+ cells and not B cells themselves.

Antibodies↗

Functional analysis of human T cell subsets defined by monoclonal antibodies. II. Collaborative T-T interactions in the generation of TNP-altered-self-reactive cytotoxic T lymphocytes.

In previous reports we have demonstrated that human T cells, responding to soluble and alloantigens, release helper factor(s) that amplify primary in vitro hapten-altered-self-reactive CTL responses. In the present studies, we have employed complement-fixing monoclonal antibodies (OKT4 and OKT8) that recognize functionally distinct human T cell subsets to investigate the role of T-T interaction in the generation of these killer cells. In all experiments, purified OKT4+ responder T cells were deficient in cytotoxic activity, whereas responder populations containing OKT8+ T cells generated substantial cytotoxicity; demonstrating that TNP-altered-self-reactive CTL precursors are contained within the OKT8+ T cell subset. Further, optimal cytotoxic responses were obtained from responder populations containing both OKT4+ and OKT8+ T cells, suggesting that cooperative interaction between these subsets may result in an amplification of killer cell activity. This interpretation was supported by the following observations: (1) the amplifying effect of soluble antigen required the presence of both OKT4+ and OKT8+ responders; (2) during MLC, OKT4+ but not OKT8+ responder T cells generate helper factor(s) that amplify TNP-altered-self-reactive CTL responses; (3) helper factor(s) bypass the requirement for direct OKT4-OKT8 T cell interaction, triggering a CTL response that is proportional to the percentage of OKT8+ T cells present within the responder population. In additional studies, we determined that the TNP-altered-self-reactive effector CTL maintain the OKT3+, OKT4-, OKT8+ surface phenotype displayed by the CTL precursor.

Antibodies↗

High molecular weight antigens present on human T cells.

A series of eight high molecular weight (140,000-220,000) glycoproteins on human peripheral T cells were recognized by radioimmunoprecipitation with a rabbit antiserum. The pattern of antigens present on each of eight human T cell lines studied was unique, and no line displayed the range of antigens present on peripheral T cells. The pattern of bands on peripheral T cells changed after allogeneic or lectin stimulation. Adsorption/elution experiments with antiserum showed that some of these proteins were antigenically related, and at least three different groups of proteins were present. Two of these groups could be partially distinguished by their ability to bind to ricin or lentil lectin and by their reactivity with two additional rabbit antisera. On some cell lines, it was found that proteins bound by lentil lectin but not ricin were precursors of higher molecular weight material recognized by ricin. Taken together, the data suggest that these proteins may be the products of a multigenic or multiallelic system, probably equivalent to the murine Ly 5 antigens.

Antigens, Surface↗

MLC-derived human helper factor(s) that promote B cell differentiation: induction, functional characterization, and role of Ia antigens.

Utilizing a PFC assay to quantitate the polyclonal activation of human peripheral blood B lymphocytes, we have investigated the induction and functional activity of MLC-derived human helper factor(s). Our data demonstrate that highly purified responder T cells, but not B or null cells, are required for the elaboration of MLC helper factor(s) that trigger the in vitro differentiation of B lymphocytes into PFC. Helper factor can trigger B cell maturation in the absence of helper T cells, since complement- (C) mediated lysis of the small (less than 5%) fraction of T cells present in anti-F(ab)2 immunoabsorbent column purified B cell population eliminates the PWM induced, but not the helper factor-induced PFC response. Responder T cells required for helper factor production do not bear surface membrane Ia, since alpha p23,30 + C treatment of this population does not affect helper factor generation. In contrast, alpha p23,30 + C treatment of the allogeneic stimulator cell population eliminates helper factor production. Taken together, these results demonstrate that interaction between Ia-bearing stimulator cells and Ia- responder T cells is required for the production of MLC-derived helper factor. In additional experiments, we determined that alpha p23,30, in the absence of C, totally abrogates the PFC response triggered by MLC helper factors. This result suggests an important role for Ia antigens in the functional activity of preformed helper factor molecules.

Antibodies↗

Hapten-specific human T cell lines. I. Functional analysis with respect to cytotoxic and helper activity.

Human PBL cells, sensitized in vitro to TNP or FITC-modified autologous stimulators, have been successfully grown in long-term culture by using TCGF derived from PHA-activated tonsil cells. Long-term cultures consist almost exclusively of T lymphocytes as defined by the formation of spontaneous rosettes with sheep erythrocytes and C-mediated lysis with heteroantibodies to human T cells (R alpha T H). The majority, but not all of these T cells, bear surface Ia antigens as detected by C-mediated lysis in the presence of alpha p23,30. Functionally, these cultures maintain high levels of hapten-specific cytolytic activity during many weeks of culture. In addition, a number of these T cell lines exhibit hapten specific proliferation when co-cultured with x-irradiated hapten modified autologous cells. During this proliferative response, helper factor(s) are released that trigger B cell differentiation into AFC. Data are presented that demonstrate that helper factor(s) production by T cell line cells is preferentially triggered by autologous, but nt allogeneic stimulator cells, bearing the relevant hapten.

Animals↗

Functional analysis of human T cell subsets defined by monoclonal antibodies. I. Collaborative T-T interactions in the immunoregulation of B cell differentiation.

T-B and T-T interactions involved in the regulation of PWM-triggered human B cell differentiation were studied in vitro. Functionally distinct human T cell subsets were isolated by C-mediated lysis by using the monoclonal antibodies OKT4 and OKT8. Graded numbers of either untreated or irradiated T cell subsets were added to autologous B cells, and total antibody synthesis was measured after 5 to 6 days of culture by using a highly sensitive reverse hemolytic plaque assay. The data indicate that a) the helper activity that is exclusively contained within the OKT4+ population is radiosensitive. Only at high T/B ratios can this radiosensitivity be overcome; b) the OKT8+ population contains radiosensitive cells important in suppressing B cell differentiation, and c) the suppression induced with OKT8+ cells requires the presence of radiosensitive OKT4+ cells. Thus, OKT8+ cells added to cultures containing B cells and irradiated OKT4+ cells do not suppress the PFC response. Addition of unirradiated OKT4+ cells to these cultures permits reexpression of suppression by OKT8+ cells. It is concluded that two radiosensitive cells, one within the OKT4+ population and the other within the OKT8+ population, collaborate to induce suppression. Possible mechanisms for this suppressive interaction including induction of suppressor precursor cells within the OKT4+ population or inhibition of OKT4+ helper cells by OKT8+ cells are discussed.

Antibodies↗

Participation of monocyte-macrophages and lymphocytes in the production of a factor that stimulates collagenase and prostaglandin release by rheumatoid synovial cells.

Cultured mononuclear cells from human peripheral blood produce a soluble factor (MCF) that stimulates collagenase and prostaglandin E2 (PGE2) release by cultured rheumatoid synovial cells up to several hundred fold. These target rheumatoid synovial cells lack conventional macrophage markers. To determine which mononuclear cells are the source of MCF, purified populations of monocyte-macrophages, thymus-derived (T) lymphocytes, and bone marrow-derived (B) lymphocytes were prepared. The monocyte-macrophages alone produced levels of MCF that were proportional to cell density but unaffected by phytohemagglutinin or pokeweed mitogen. No detectable collagenase activity was produced by the cultured monocyte-macrophages or lymphocytes. Purified T lymphocytes produced levels of MCF approximately or equal to 1--3% those of purified monocyte-macrophages in the presence or absence of the above lectins. Purified T lymphocytes modulated the production of MCF by the monocyte-macrophages, however, in a manner dependent upon relative cell densities and the presence of lectins. For example, at optimal ratios of T lymphocytes: monocyte-macrophages, MCF production was markedly stimulated by pokeweed mitogen. Thus, interactions of T lymphocytes and monocyte-macrophages could be important in determining levels of MCF, which regulate collagenase and PGE2 production by target synovial cells in inflammatory arthritis.

Arthritis, Rheumatoid↗

The induction of TNP-altered, self-reactive human cytotoxic T cells by soluble factors: the role of Ia antigens.

This report demonstrates that human peripheral blood T lymphocytes, triggered by allogeneic cells or soluble antigens, elaborate helper factor(s) that promotes the in vitro differentiation of TNP altered-self reactive human CTL. Helper factor(s) alone is not sufficient for the generation of these killer cells, but requires the presence of TNP-derivatized autologous stimulators during sensitization. Additional experiments were performed with antisera to a human Ia-like antigen, p23, 30. These studies indicate that human Ia-like antigens play an important role in both the induction of helper factor(s) and in the functional activity of preformed helper factor(s) molecules.

Cytotoxicity, Immunologic↗

Normal erythropoietic helper T cells in congenital hypoplastic (Diamond-Blackfan) anemia.

To examine the erythropoietic function of T and null cells in congenital hypoplastic (Diamond-Blackfan) anemia, we fractionated the peripheral blood of three normal subjects and three affected patients into subclasses of null, T and B cells. Mixtures of these cells were co-cultured in plasma clots in the presence of erythropoietin. Erythroid colonies grew in cultures of normal null cells if either normal or patient T cells were co-cultured with them. Null cells of patients with hypoplastic anemia did not produce erythroid colonies under any culture conditions. We conclude that in this disorder, T cells function normally as helper cells in erythropoiesis and do not suppress colony formation, whereas the erythroid progenitor cells in the peripheral blood null-cell fractions are deficient in either number of function.

Adolescent↗

Human erythroid burst-forming unit: T-cell requirement for proliferation in vitro.

Human mononuclear leukocytes were fractionated into populations of null, T and B cells by immunoabsorbent column chromatography followed by E-rosette formation and purification of T cells by differential centrifugation and osmotic lysis. The unfractionated and fractionated cell populations were first separately cultured for 14 days in plasma clots in the presence of two international units erythropoietin. Typical erythroid burst-forming unit (BFU-E)-derived colonies grew in the unfractionated cell cultures but not from T- or B-cell cultures. BFU-E colonies grew in null cell cultures but most of the colonies were small and variably hemoglobinized with less than three subcolonies. When intact T cells were added to null cells and cocultured, many typical large BFU-E colonies with more than 10 well homogenized subcolonies appeared. Increasing numbers of large BFU-E colonies in null cell cultures were induced by stepwise addition of T cells but not by the addition of B cells. A conditioned medium in which T cells had been induced to divide by tetanus toxoid substituted for intact T cells in this T-cell-dependent BFU-E colony formation observed in null cells. These findings demonstrate that the BFU-E, a committeded erythroid stem cell, resides in the null cell fraction of peripheral blood, but its proliferative capacity and differentiation in vitro requires a soluble product of T cells. Such experiments now permit a new approach to the assessment of various disorders of erythropoiesis. Erythroid hypoplasia in a particular case may be due to dysfunction of the committed precursor cell or to a failure of a helper effect induced by T cells.

B-Lymphocytes↗