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Biomedical subjects

A Radbruch

Publications and source records attributed to A Radbruch.

At least 73 records · Page 4Linked to original sources

Influence of both TCR repertoire and severity of the atopic status on the cytokine secretion profile of Parietaria officinalis-specific T cells.

Peripheral blood mononuclear cells (PBMC) from both nonatopic and Parietaria officinalis-sensitive donors proliferated in response to the allergen Par o 1 and developed into Par o 1-specific T cell lines and clones, which also showed reactivity for Par o 1-derived peptides. Virtually all Par o 1-specific T cell lines and large numbers of Par o 1-specific T cell clones proliferated in response to two Par o 1 nonapeptides (p92 and p96), which probably contain immunodominant epitopes of the Par o 1 allergen. Both p92- and p96-specific T cell clones showed the ability to produce IFN-gamma, but p92-specific T cell clones produced significantly lower amounts of IL-4 and IL-5 than p96-specific T cell clones, indicating that distinct epitopes, able to elicit functionally different T helper cell responses, may coexist in Par o 1. However, p92-specific T cell clones derived from atopic subjects with high IgE serum levels (high IgE producers) secreted significantly higher amounts of IL-4 and IL-5 than corresponding T cell clones generated from nonatopic subjects or patients with low IgE serum levels (low IgE producers), whereas p96-specific T cell clones secreted high IL-4 and IL-5 concentrations irrespective of whether they derived from high or low IgE producers. The addition of IL-4 and anti-IL-12 mAb to bulk culture significantly up-regulated the development of p92-specific T cells into IL-4-producing cells, whereas the addition of IL-12 and anti-IL-4 mAb shifted the differentiation of p96-specific T cells towards IFN-gamma-producing cells. Taken together, these results suggest that the cytokine profile of allergen-specific T cells is influenced by both the T cell receptor repertoire and the severity of atopic status and can be modulated, at least in vitro, by stimulation with the specific peptide in the presence, or after removal, of appropriate cytokines.

Allergens↗

Sequential production of IL-2, IFN-gamma and IL-10 by individual staphylococcal enterotoxin B-activated T helper lymphocytes.

Upon primary activation, T helper (Th) cell populations express different cytokines transiently and with different kinetics. Stimulation of naive murine splenic Th cells with the bacterial superantigen Staphylococcus aureus enterotoxin B (SEB) in vitro results in expression of IL-2, IFN-gamma and IL-10 with fast, intermediate and slow kinetics, respectively. This first report of a functional analysis of cells separated alive according to cytokine expression shows that these cytokines are not produced by different Th cell subpopulations, but can be expressed sequentially by individual Th cells. Th cells, activated with SEB for 1 day and isolated according to expression of IL-2, using the cellular affinity matrix technology, upon continued stimulation with SEB later secrete most of the IFN-gamma and IL-10. Likewise, after 2 days of SEB culture, cells expressing IFN-gamma, separated according to specific surface-associated IFN-gamma as detected by magnetofluorescent liposomes, 1 day later secrete IL-10. Thus, individual Th1 cells can contribute to the control of their own IFN-gamma expression by sequential expression of first IL-2, supporting their proliferation, and later IL-10, down-regulating the production of IFN-gamma-inducing monokines and limiting the pro-inflammatory effects of IFN-gamma.

Animals↗

Modulating the Th1/Th2 balance in inflammatory arthritis.

The balance between Th1 and Th2 cells regulates the choice between inflammatory and antibody-mediated immune responses. To an increasing extent this balance is thought to involve the participation of antigen-presenting cells, rather than the entirely autonomous activity of T cells and their cytokines. Here we survey current opinion concerning the working of this balance, and its condition in rheumatoid arthritis and the other inflammatory arthritides. The contrast between Lyme arthritis and reactive arthritis is particularly illuminating, since one is triggered by extracellular and the other by intracellular infection. We describe current approaches to the modulation of this balance. Guided by the principles that genetic polymorphism is likely to identify relevant genes, that any cytokine gene picked up by a virus must matter and that natural immunosuppressive activity at mucosal surfaces should be worth exploiting, we identify as particularly worthy of attention: (i) IL-10, (ii) inhibitors of IL-12 production, (iii) inhibitors of CD40 ligand expression and (iv) oral and nasal tolerance. Other protective T cell subsets are touched on, and the impact of oligonucleotide arrays mentioned.

Animals↗

Organization of the equine immunoglobulin heavy chain constant region genes; III. Alignment of c mu, c gamma, c epsilon and c alpha genes.

Previous restriction analysis of cloned equine DNA and genomic DNA of equine peripheral blood mononuclear cells had indicated the existence of one c epsilon, one c alpha and up to six c gamma genes in the haploid equine genome. The c epsilon and c alpha genes have been aligned on a 30 kb DNA fragment in the order 5' c epsilon-c alpha 3'. Here we describe the alignment of the equine c mu and c gamma genes by deletion analysis of one IgM, four IgG and two equine light chain expressing heterohybridomas. This analysis establishes the existence of six c gamma genes per haploid genome. The genomic alignment of the cH-genes is 5' c mu/(/) c gamma 1/(/) c gamma 2/(/) c gamma 3/(/) c gamma 4/(/) c gamma 5/(/) c gamma 6/(/) c epsilon-c alpha 3', naming the c gamma genes according to their position relative to c mu. For three of the c gamma genes the corresponding IgG isotypes could be identified as IgGa for c gamma 1, IgG(T) for c gamma 3 and IgGb for c gamma 4.

Animals↗

Survival of long-lived plasma cells is independent of antigen.

Recent studies have shown that persistent specific antibody titer is provided by long-lived plasma cells (PC) which constitute a new kind of 'memory-providing cells'. In the present study, we examine the role of antigen for the long-term survival of PC and the maintenance of specific serum antibody titers. Using a novel cytometric technology, to identify and isolate antigen-specific PC, we analyzed long-lived PC of BALB/c mice, during their development (between day 1 and 10) after secondary immunization with ovalbumin (OVA) and in the phase of the established immune reaction. Most if not all OVA-specific PC were generated within a few days after immunization. Within approximately 3 weeks, they matured, as indicated by down-regulation of expression of MHC class II. These PC are long lived and located in spleen and bone marrow. Upon adoptive transfer, OVA-specific PC from bone marrow, but not memory B cells, conferred specific and long-lasting antibody titers to antigen-free IgH syngeneic recipients. In response to antigenic challenge, new OVA-specific antibody-secreting cells were generated from transferred memory B cells. Antibody secretion by long-lived PC was not affected. Our results confirm that persistent antibody titers are provided by long-lived PC, independent of memory B cells and demonstrate that this humoral memory is inert to antigen.

Adoptive Transfer↗

Systemic T-cell unresponsiveness during rush bee-venom immunotherapy.

By rush bee-venom immunotherapy, subjects reacting allergically to the venom can be effectively anergized, although the mechanism of action is not known. Here we analyzed the systemic effects of rush desensitization on the T cells of allergic patients. In most patients, we found reduced frequencies of T cells recalled to express CD69 and the cytokines interleukin (IL)-4 and interferon-gamma (IFN-gamma) after stimulation of peripheral blood mononuclear cells with phorbol 12-myristate 13-acetate (PMA) and ionomycin, as compared with normal donors. These frequencies are progressively reduced during immunotherapy. The frequency of cells expressing IL-2 does not change. A few patients show a different response to immunotherapy: frequencies of cells expressing CD69, IL-4, or IFN-gamma do not change, and remain similar to those of normal donors. However, the frequency of cells able to express IL-2 is increased. The analysis of cytokine expression in CD45RO+ vs CD45RO- T-cell populations revealed differences between normal and allergic donors. In allergic patients, higher frequencies of IL-4- and IFN-gamma-expressing cells among the CD45RO- subpopulation were found than in normal donors. This situation is not modified by immunotherapy. The results reveal a certain degree of heterogeneity in the response of allergic patients to bee-venom rush immunotherapy; however, all are clearly differentiated from normal controls as judged by cytokine expression of CD45RO- T cells. In most allergic patients, a considerable percentage of Th cells become unresponsive to mitogenic stimulation, and may be responsible for the desensitization itself.

Adult↗

Immunomagnetic enrichment of disseminated epithelial tumor cells from peripheral blood by MACS.

Disseminated epithelial tumor cells have been detected in the bone marrow and blood of cancer patients by means of immunocytochemical or immunofluorescent staining of cytocentrifuge slides, multiparameter flow cytometry, and reverse transcriptase-polymerase chain reaction. However, it is hardly possible using such methods to detect tumor cells at a frequency below 10(-6). To increase the sensitivity of these detection techniques we have developed a new technology for the enrichment of disseminated epithelial tumor cells from hematopoietic cell samples by high-gradient magnetic cell sorting (MACS). Cells are permeabilized and fixed and carcinoma cells are magnetically labeled specifically with an anti-cytokeratin 8 monoclonal antibody (mAb) directly conjugated to superparamagnetic microbeads. Magnetically labeled cells are enriched on high-gradient magnetic columns. Tumor cells are detected in the enriched cell fraction by flow cytometry, fluorescence microscopy, or immunocytochemisty. In this study we demonstrated the method using a model system in which five to 5,000 cells from a breast cancer cell line were seeded into blood cell samples from a healthy donor containing 1.2 x 10(8) leukocytes. Tumor cells were 10,477+/-4242 (n=25)-fold magnetically enriched, and 57.7%+/-16.9% (n=33) of the initially seeded tumor cells were recovered. Applying the method to 20-40 mL blood samples from patients with advanced carcinomas of the breast, prostate, colon, rectum, or lung, we were able to detect between one and 6.8 x 10(4) cytokeratin-expressing tumor cells in 21 of 34 patients. This corresponds to frequencies of tumor cells between 6.8 x 10(-9) and 1.1 x 10(-3) among nucleated cells in the original sample. Enriched tumor cells were further analyzed for expression of tissue-specific and prognostic markers such as breast mucin glycoproteins, erbB2, and CD44v6 for additional characterization and to confirm their tumor origin. The technique described could become a valuable tool for the quantification and molecular characterization of metastatic carcinoma cells in hematopoietic tissue, and may ultimately prove useful in the diagnosis, prognosis, and monitoring of patients with carcinoma.

Adult↗

Differential expression of a conserved new mRNA in lymphoid cells.

We describe a polyadenylated RNA (Drld = Differentially regulated in lymphoid organs and differentiation) from murine lymphocytes. Two homologous molecular forms of this RNA of approximately 500 and 900 bases are detected in various tissues and lymphoid cell lines. Southern blotting showed that up to ten highly homologous loci exist which in part are polymorphic between the different mouse strains analyzed. Cross-hybridizing loci can be detected in distantly related species such as horse, fish and Drosophila melanogaster. Sequence analysis revealed homologies to the untranslated region of the GPI-linked murine B7(2) antigen, the B2 repetitive elements and 3 untranslated genes. Drld apparently defines a new family of genetic elements.

Animals↗

Analysis and sorting of T cells according to cytokine expression.

Functional distinct populations of T helper cells can be defined according to the expression of cytokines. A remarkable diversity of cytokine expression has been demonstrated in single T cells even from clonal populations and up to now no stable surface markers have been described which on the single-cell level directly correlate with the secretion of a certain cytokine. Since cytokines are the major parameters of T cell effector function we have developed strategies which now allow to separate cells according to the specific cytokines they secrete. The "affinity matrix technology"--secreted molecules are relocated to the cell surface by an artificially created antibody matrix--allows to isolate cells according to a distinct secreted product. In addition to this universal, but laborious technology, we could demonstrate by high-sensitivity immunofluorescence that IFN-gamma and IL-10 but not IL-2 and IL-4 are specifically expressed in low copy number on the surface of cells secreting these cytokines. Surface IFN-gamma and IL-10 are the first unambiguous surface markers for pro-inflammatory IFN-gamma-secreting Th 0/1 cells and IL-10-producing anti-inflammatory Th2/3 cells. We have used purified cytokine-secreting T cells to study in individual T cells the sequential production of IL-2, IFN-gamma, and IL-10, the stability of IFN-gamma expression and the selective homing of IFN-gamma-producing cells into inflamed tissues.

Animals↗

Organization of the equine immunoglobulin constant heavy chain genes. I. c epsilon and c alpha genes.

We provide a restriction map of the equine c epsilon and c alpha genes as a molecular basis for isotype classification. Human and murine DNA probes were used for identification of homologous equine DNA sequences and for isolation of the equine c epsilon and c alpha genes from a genomic DNA library. A detailed map of the equine 5'-s epsilon/c epsilon-s alpha/c alpha-3' gene region was obtained. Equine c epsilon and c alpha DNA probes were prepared and used for restriction analysis of immunoglobulin heavy chain gene loci from different horses. This analysis indicated the presence of only one equine c epsilon and one c alpha gene in the haploid equine genome. In addition, for the equine c alpha gene, four haplotypes were identified according to BamHI restriction fragment length polymorphism (RFLP) of genomic DNA. The relative location of the c epsilon and c alpha genes 3' of the equine c mu and c gamma genes was determined by restriction analysis of equi-murine heterohybridomas.

Animals↗

Organ culture of human lymphoid tissue. II. Marked differences in cytokine production and proliferation between slice and suspension cultures of human spleen.

Recently, we have established a method for the culture of human spleen slices in vitro. The procedure allows thin slices (200-350 microns) of human spleen to be cultured for up to 7 days. Using this method, we have previously established that unstimulated spleen slices spontaneously synthesize and secrete considerably higher levels of immunoglobulin than suspension cultures of the same tissue run in parallel. In this study, we report that there are also marked differences in the cytokine secretion profile between slices and suspensions and in their proliferative response. In brief, control and PHA-stimulated spleen slices secrete high levels of IL-1 beta, IL-6, IL-8 and IL-11 while the levels found in suspension supernatants are appreciably lower. By way of contrast, high levels of IL-2, IL-4, IL-10 and TNF alpha are found in suspension culture supernatants following PHA stimulation while the response in slice cultures is extremely low. These differences are also reflected in the results obtained at the cellular (intracellular cytokine) level. Additional studies reveal that spontaneous immunoglobulin production observed in spleen slices can be inhibited by the addition of specific antibodies to IL-1 beta, IL-6 and TNF alpha and that the bulk of the IL-6 and IL-1 beta detected in culture supernatants represents de novo synthesis. Finally, the background and mitogen-stimulated proliferative response of tissue slices is meagre compared with that observed in spleen suspensions suggesting that proliferation in the former is held under strict control. Collectively, we believe that the tissue slice procedure described provides us with a system for studying integrated events in lymphoid tissues in vitro and evaluating immunomodulatory substances of potential clinical importance.

Adolescent↗

CD45RA-expressing memory/effector Th cells committed to production of interferon-gamma lack expression of CD31.

It has been considered before that human naive and memory/effector CD4+ T-cells cannot be subdivided solely according to the differential expression of CD45 isoforms. By the lack of expression of CD31 we have identified a subset of CD4+ CD45RA+ CD31- cells which show distinct features of antigen-experienced Th1 cells. Short term stimulation of highly purified human peripheral blood CD4+ T-cells with PMA/ionomycin, followed by the cytometric analysis of intracellular cytokines, showed that a minor subpopulation of CD4+ CD45RA+ CD45RO- cells is able to produce interferon-gamma (IFN-gamma) rapidly, a characteristic of antigen-experienced Th1 cells. Whereas among CD45RA+ CD4+ T-cells both CD31+ and CD31- subsets produce interleukin-2 (IL-2) upon PMA/ionomycin stimulation, only the CD31- subpopulation is able to produce IFN-gamma. Thus, our phenotypic and functional characterization of CD45RA+ CD45RO- Th cells shows that CD45RA+ CD45RO- cells do not represent a homogeneous population of antigen-unexperienced, naive T-cells. We speculate that a certain subset of human CD4+, CD45RO+ memory T-cells reverts to expression of the CD45RA isoform, and that this subset can be identified by the lack of CD31 expression.

Animals↗

P- and E-selectin mediate recruitment of T-helper-1 but not T-helper-2 cells into inflammed tissues.

When activated, T helper cells differentiate into one of two subsets, Th1 and Th2, characterized by distinct profiles of cytokine production. Th1 cells activate pro-inflammatory effector mechanisms involved in protection and autoimmunity, whereas Th2 cells induce humoral and allergic responses and downregulate local inflammation. Apart from differences in the repertoire of cytokines, no phenotypic attributes are established that distinguish the two subsets. Here we show that Th1 cells, but not Th2 cells, are able to bind to P-selectin and E-selectin. Moreover, only Th1 cells can efficiently enter inflamed sites in Th1-dominated models, such as sensitized skin or arthritic joints, but not in a Th2-dominated allergic response. Immigration of Th1 cells into inflamed skin can be blocked by antibodies against P- and E-selectin. These results provide evidence for adhesion mechanisms to distinguish between the two T helper subsets and mediate their differential trafficking. They indicate that selective recruitment is an additional level of regulation for both effector function profile and character of a local immune response.

Animals↗

Specific expression of surface interferon-gamma on interferon-gamma producing T cells from mouse and man.

Interferon (IFN)-gamma is a potent immunoregulatory protein secreted by CD4+ and CD8+ T cells and by natural killer cells. Here, we show that IFN-gamma is specifically displayed at a low concentration on the cell surface of those activated T cells from mouse and man which express IFN-gamma. It is transiently expressed on the cell surface with kinetics similar to those of intracellular IFN-gamma expression. Detectable surface IFN-gamma is not expressed by activated T helper (Th) cells producing other cytokines but which do not express IFN-gamma. Thus, surface IFN-gamma is the first available marker for live T lymphocytes expressing IFN-gamma, e.g. Th1 cells.

Animals↗