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Biomedical subjects

L Chess

Publications and source records attributed to L Chess.

At least 109 records · Page 6Linked to original sources

Isolation and characterization of naturally occurring subclasses of human peripheral blood T cells with regulatory functions.

By utilizing naturally occurring autoimmune antibodies from patients with juvenile rheumatoid arthritis, we have isolated and functionally characterized two unique subpopulations of T cells. JRA+ T cells, i.e., those identified by sera from these patients, react poorly in response to allogeneic cells, respond to Con A but not PHA, and do not help in the synthesis and secretion of Ig by B cells. In contrast, JRA- T cells, i.e., those not identified by sera from these patients, respond very well to allogeneic cells, proliferate well in response to PHA but not Con A, and more interestingly, can greatly enhance the secretion of Ig by B cells.

Antigens↗

Replication of herpes simplex virus and cytomegalovirus in human leukocytes.

Human peripheral blood leukocytes, lymphocyte subpopulations, and hemic cell lines were examined for their ability to supprot HSV and CMV replication. Mitogen-stimulated mononuclear leukocytes, B lymphocytes, and T lymphcytes supported the replication of HSV to high titers over 3 to 5 days of infection. HSV replicated in unstimulated mononuclear leukocyte cultures of one of five donors, and to a limited degree in untreated B lymphocytes of three of five donors; HSV replication was not detected in unstimulated T lymphocytes (five donors). There was no evidence of enhanced uptake of 3H-thymidine in the untreated donor cells that replicated HSV. CMV replication was not detected during 9 to 10 days of infection in untreated or mitogen-treated mononuclear leukocytes and lymphocyte subpopulations from the same adult donors or in neonatal cord blood leukocytes. The ability of the cells to support HSV or CMV replication did not correlate with the presence of specific antiviral antibodies in the donor serum. HSV replication in B, T, and myeloid cell lines to high titers over 5 days of infection, whereas CMV failed to replicate in any of the hemic cell lines. A persistent HSV infection has been established in a T cell line (CEM) with high titers of infectious virus being produced concurrently with growth of the cells over the first 11 weeks of infection.

Antibodies, Viral↗

Characterization of a unique cell line (LAZ 221) from human acute lymphocytic ("null" cell) leukemia.

A unique human cell line designated LAZ 221 has been established from the peripheral blood of a patient with acute lymphocytic leukemia of the "null" cell type. The cell line does not possess the Epstein-Barr virus nuclear antigen and has a karyotype of 45,XX,-9,-12,+(9q12q). Both the established cell line and the patient's uncultured blast cells share the same phenotypic markers. They both lack T-cell markers. They fail to form sheep erythrocyte rosettes and do not react with T-cell-specific antisera (TH1-, HTL-), nor do they possess B-cell markers. They do not form rosettes with erythrocytes sensitized with complement, and they are surface immunoglobulin negative. However, they do possess an HLA-D-related glycoprotein complex of 23,000 to 30,000 daltons, an la-like antigen. Thus, LAZ 221 shares the phenotype of the patient's uncultured blasts and is a cell line representative of about 75% of all human acute lymphocytic leukemias. In this respect it differs from previously described human hematopoietic cell lines.

Adult↗

Suppression of in vitro Epstein-Barr virus infection: a new role for adult human T-lymphocytes.

In vitro EBV infection of lymphocytes from different sources indicated that B-cells of adult peripheral or fetal cord blood transform with equal efficiency whether assayed by DNA synthesis induction or immortalization. Unfractionated adult lymphocytes transformed much less efficiently than those from fetal cord blood. This effect was due to the suppression of B-cell proliferation by adult T-lymphocytes.

Adult↗

Cell-mediated lympholysis of trinitrophenyl-derivatized autologous human cells: in vitro triggering by nonspecific signals.

This report describes the primary in vitro generation of human CTL that lyse TNP-derivatized autologous cells. Although in the majority of these studies, a direct cytotoxic response to the TNP-modified autologous stimulators was not achieved, in all experiments the addition of either allogeneic cells or soluble antigen triggered the generation of killer cells which destroy TNP-modified, but not unaltered, autologous targets. Fractionation of responder lymphocyte populations demonstrated that the cytotoxic activity was mediated by T cells. Killer cell specificity was tested by assaying for cytotoxicity to a variety of targets, and by blocking the cytolysis of TNP-altered autologous targets with various populations of nonradiolabeled cells. Results indicated that these CTL were cytotoxic for TNP-modified autologous cells but not unaltered autologous or TNP-modified allogeneic targets. The capacity of soluble antigen and alloantigens to facilitate the in vitro generation of altered-self reactive human CTL is not an isolated phenomenon. This "helper" effect has now been observed for the cytotoxic response to chemically modified autologous cells and MHC identical human leukemic blasts. It is possible that in vivo, similar responses to nonspecific antigenic stimuli may play a role in the maintenance of immune surveillance.

Antigens↗

Purification and characterization of granulocytic progenitor cells (CFU-C) from human peripheral blood using immunologic surface markers.

The concentration of committed granulocytic progenitor cells (CFU-C) in functionally unique subpopulations of human peripheral blood mononuclear cells has been determined by the in vitro methyl-cellulose assay. Using immunoabsorbent column chromatography and rosette-depletion techniques, we have demonstrated that CFU-C, although not present in either purified T or B lymphocyte populations, are highly concentrated in the "null" cell population, which lacks sheep erythrocyte receptors and surface immunoglobulin. Further fractionation of this null subset has demonstrated that CFU-C do not bear complement receptors, but require the presence of peripheral blood mononuclear cell feeder layers for maximum proliferation.

Bone Marrow Cells↗

T-cell regulation of human peripheral blood B-cells responsiveness.

We have investigated the influence of human T cells on the synthesis and secretion of immunoglobulin by peripheral blood B cells. The plaque-forming assay used, which identified the number of B cells secreting Ig, is a short-term assay which requires no exogenous stimulation. We have shown that the B-cell population alone contains fewer secreting cells than the total lymphocyte population, and that T cells are required to achieve maximal plaque-forming cell levels. Cycloheximide treatment of cells at concentrations known to inhibit protein synthesis does not affect the cooperative potential of these cells. Additionally, this cooperation effect is markedly better among autologous mixtures of Ig- and Ig+ cells, than among mixtures obtained from randomly selected individuals.

B-Lymphocytes↗

Suppression of in vitro Epstein-Barr virus infection. A new role for adult human T lymphocytes.

Studies have been performed on in vitro infection by Epstein-Barr virus (EBV) of subpopulations of human lymphocytes. B cells of adult peripheral or fetal cord blood transform with equal efficiency, whether assayed by DNA synthesis induction or by outgrowth of transformed lymphocytes. In contrast, unfractionated adult lymphocytes transform much less efficiently than those from fetal cord. Reconstitution experiments of different cell preparations indicated that this difference was due to a suppression of B-cell proliferation by adult Ig-negative lymphocytes which fetal Ig-negative lymphocytes were unable to perform. Separation of Ig-negative lymphocytes into various subpopulations revealed that the suppression was performed by T cells. Macrophages and null cells play little or no role in suppression. The relevance of this phenomenon to infection and recovery from EBV infection during and after infectious mononucleosis is discussed.

Adult↗

Detection, isolation, and functional characterization of two human T-cell subclasses bearing unique differentiation antigens.

A heterologous antihuman T-cell serum (anti-TH1), raised against purified peripheral T cells, and absorbed with an autologous Ig+ line, was shown to bind specifically to T- but not to B-lymphoid cells by both a complement-dependent cytotoxic assay and indirect immunofluorescence. Whereas 90% fetal thymocytes and thymocytes were killed by anti-TH1 and complement, a consistently restricted population (50-60%) of peripheral T cells from several normal donors were lysed, indicating that anti-TH1 is directed against one or more thymus-specific antigens which are lost or reduced on a subpopulation of human T cells in the periphery. Functional analysis of the unreactive (TH1-) and reactive (TH1+) T-cell subclasses demonstrated that TH1- cells mounted a good proliferative response to a battery of specific soluble antigens (mumps, PPD, tetanus toxoid) but neither responded in MLC, nor elaborated LMF in response to tetanus toxoid. In contrast TH1+ cells proliferated in MLC and elaborated LMF but did not respond by 3H-incorporation to soluble antigens. The relevance of these findings to human T-cell functions in vivo and to previously described functional subclasses of murine T cells is discussed.

Antilymphocyte Serum↗

Inhibition of proliferative and plaque-forming cell responses by human bone-marrow-derived lymphocytes from peripheral blood by antisera to the p23, 30 antigen.

A recently described technique for the polyclonal induction of plaque-forming cells from human bone-marrow derived (B) lymphocytes of peripheral blood has been used to assess the role of a human Ia-like antigen (p23,30) in differentiation of human B cells. In particular, the effects of antisera to p23,30 on the plaque-forming cells and proliferative responses of human B cells stimulated by pokeweed mitogen or soluble products of activated human thymus-derived lymphocytes (T cells) have been examined. Antisera to p23,30 eliminated the development of plaque-forming cells induced by both T cell products and pokeweed mitogen. While these antisera also abrogated B cell proliferation induced by T cell supernatants, the proliferative response generated by pokeweed mitogen was only partially reduced. It was also determined that while the p23,30 antigen continues to be expressed on fully differentiated plaque-forming cells, antisera to this determinant exert inhibitory effects on B cell differentiation only when present during the early stages of B cell cultures. These results lend further support to the analogy between p23,30 and murine Ia antigens. Moreover, they demonstrate a major role for this antigen in the early events involved in human B cell differentiation into antibody-forming cells.

Antigen-Antibody Reactions↗

Inhibition of antibody-dependent cellular cytotoxicity and immunoglobulin synthesis by an antiserum prepared against a human B-cell Ia-like molecule.

Rabbit antisera to the human B-cell-specific antigen complex, p23,30, was used to define further the functional heterogeneity of isolated human lymphocyte subpopulations. Specific depletion of p23,30-bearing cells from Ig-negative cell populations and Ig-negative, E rosette-negative (Null) populations by either complement-mediated lysis or by physical separation on goat antirabbit Fab immunoabsorbent columns, eliminates the antibody-dependent cellular cytotoxic (ADCC) function. Furthermore, binding of anti-p23,30 serum to the effector cell surface inhibits ADCC but does not interfere with EA rosette formation. Apparently p23,30 represents a cell surface site which is distinct from the Fc receptor but which is important in the triggering of ADCC. In addition, depletion of p23,30-bearing cells from unfractionated cell populations, Ig-positive B-cell populations and Ig-negative, E rosette-negative (Null) populations eliminates the capacity of these populations to secrete immunoglobulin during subsequent culturing. Thus both the Ig-secreting cells and the ADCC effector cells within the Ig-negative, E rosette-negative (Null) population reside in the same population of cells which bears the p23,30 antigen.

Antibody Formation↗

Isolation and immunologic characterization of a human. B-lymphocyte-specific, cell surface antigen.

In addition to HL-A antigens, another cell surface protein complex has been obtained from membranes of the human B-lymphoblast cell line IM-1. This complex which was solubilized with papain, consisted of polypeptides of 23,000 and 30,000 daltons (p23, 30). Rabbit antisera to this material precipitated from [35S]methionine-labeled detergent-solubilized cells, three proteins of 39,000, 34,000, and 29,000 daltons. These antisera were specifically cytotoxic for B lymphocytes of peripheral blood, for B-lymphoblast cell lines, and for EAC rosette receptor-positive surface Ig-negative (Null) lymphocytes. The p23,30 complex was not present on T lymphocytes, EAC rosette receptor-negative Null lymphocytes, or platelets. In addition, the p23,30 complex from several cell lines inhibited alloantisera from multiparous Amish women which had been shown to recognize non-HL-A, B-lymphocyte antigens. Some other properties of the anti-p23,30 sera antisera were described.

Antigen-Antibody Reactions↗

Distribution of Ia-like molecules on the surface of normal and leukemic human cells.

Antiserum to a glycoprotein antigen complex of 23,000 and 30,000 dalton subunits (p23,30), isolated and purified from a human lymphoblastoid B cell line, was shown to be highly specific for human bursal-equivalent-processed (B) cells, reactive with 15-20% of human Null cells, but completely unreactive with human thymus-processed (T) cells. The p23,30 antigen is widely distributed on chronic lymphatic leukemic cells, 85% of acute lymphatic leukemic cells, all acute myelogenous leukemic cells, but not on chronic myelogenous leukemic cells. A rabbit antiserum specific for normal human thymocytes has also been prepared; it is reactive only with precisely that subset of acute lymphatic leukemic cells (15%) whose members do not have p23,30 on their surfaces.

B-Lymphocytes↗

Cell-mediated destruction of human leukemic cells by MHC identical lymphocytes: requirement for a proliferative trigger in vitro.

These experiments have investigated cellular mechanisms involved in the generation of cellular immune responses to human acute leukemic blasts. Because normal human lymphocytes are not able to recognize immunologically, in vitro, lymphocytes from MHC identical siblings, the present studies have examined the in vitro proliferative and cytotoxic responses of normal lymphocytes to MHC identical AML and ALL blasts. In those cases where acute leukemic cells were unable to induce a proliferative response by MHC identical lymphocytes, the generation of effective anti-leukemic cytotoxicity required the addition of unrelated stimulating cells to the sensitization culture. In contrast, leukemic blasts that induced a proliferative response by MHC identical lymphocytes were also able to stimulate anti-leukemic cytotoxicity. This could be augmented by the addition of unrelated stimulating cells to the sensitization culture. The specificity of anti-leukemic cell cytotoxicity was demonstrated in all instances by simultaneous testing of putative killer cells on 51Cr leukemic blasts as well as 51Cr-labeled MHC identical phytohemagglutinin blasts or normal lymphocytes. Simultaneous sensitization to MHC identical leukemic blasts and unrelated stimulating lymphocytes did not invariably generate anti-leukemic cytotoxicity even when allogeneic cytotoxicity was observed; the absence of demonstrable suppressor activity in these nonreactive combinations suggested that some individuals may be specifically immunoincompetent, and thereby unable to generate effective anti-leukemic CML.

Cell Transformation, Neoplastic↗

Triggering of human peripheral blood B cells: polyclonal induction and modulation of an in vitro PFC response.

In the present studies we utilized polyclonal activators to analyze the signals required to induce antibody synthesis by subpopulations of human peripheral blood lymphocytes. The in vitro synthesis of antibody directed against sheep erythrocytes was measured by a modification of the Jerne plaque assay. The plaques observed contained central lymphoid cells, could be inhibited by anti-human immunoglobulin, and were strictly dependent on both the addition of complement and viable B lymphocytes actively synthesizing protein. Kinetic analysis showed that the PFC response developed over time during cell culture with peak activity occurring between days 6 and 7. It was found that human peripheral blood B lymphocytes, isolated by Sephadex G-200 anti-Fab column chromatography, were nonspecifically induced by either PWM or soluble products of antigen-activated human T cells to differentiate into PFC. In contrast, unfractionated peripheral blood lymphocytes. Ig- cells isolated from immunoabsorbant columns, and B cells enriched by nylon wool adherence were not triggered to antibody synthesis even in the presence of polyclonal activators. B cells isolated by nylon wool adherence and further fractionated by binding and elution from anti-Fab columns were then readily triggered by PWM to differentiate into PFC. These results suggest that the interaction of human B cells with anti-Fab columns, presumably at the Ig receptor, serves as a signal important in the differentiation events leading to PFC activity. The anti-Fab interaction alone, although critical, was not sufficient to induce the differentiation of precursor cells into PFC since subsequent triggering by antigen-activated T cell supernatants or PWM was required for the development of an optimal PFC response. Additional experimental data demonstrated that the PFC response could be regulated by autologous peripheral Ig- lymphoid cells in vitro. At low concentrations of PWM, Ig- cells consistently augmented the B cell PFC response whereas at high concentrations of PWM, suppression was observed. Depletion of E rosetting cells from the Ig- population eliminated the subset responsible for augmentation but did not eliminate the suppressor cell activity.

Animals↗