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Biomedical subjects

K Pfeffer

Publications and source records attributed to K Pfeffer.

At least 73 records · Page 4Linked to original sources

Magnetic susceptibility in the vertebral column.

A magnetic resonance method is described which provides good-quality field-mapping images of the spine, although the in vivo signals from red bone marrow of the vertebral bodies exhibit similar fractions of lipid and water protons with their chemical-shift difference of 3.4 ppm. The susceptibilities of bone marrow and intervertebral disks were examined in 20 cadaveric human spines, 9 healthy volunteers, and 9 patients with degenerative disk alterations. The influence of geometrical properties was studied in cylindrical spine phantoms of different size and contents with different susceptibility. The measurements reveal interindividual differences of the susceptibility of the intervertebral disks in healthy subjects. Three out of nine degenerated disks with low signal in T2-weighted spin-echo images showed irregularities of the field distribution within the nucleus pulposus.

Adolescent↗

Oligoclonality and skewed T cell receptor V beta gene segment expression in in vivo activated human intestinal intraepithelial T lymphocytes.

Intraepithelial intestinal T lymphocytes (IEL) bearing alpha beta or gamma delta T cell receptors (TCR) are positioned to serve as a first line of defense against enteric pathogens. To investigate whether intestinal IEL are subject to antigenic selective forces distinct from that influencing (xp T cells in the peripheral blood (PBL), we performed a comparative analysis of V beta gene segment usage in IEL and PBL of immunologically normal donors by quantitative PCR. Primers for 22 different human TCR V beta gene segments of V beta gene segments families were used to analyze the repertoire of TCR beta chain transcripts in colonic IEL (c-IEL), in corresponding colonic lamina propria lymphocytes (c-LPL), and in peripheral blood lymphocytes. In each of the three individuals examined, a limited number (1-4 out of 22) of TCR V beta families predominated and accounted for more than 50% of the total beta chain transcripts from c-IEL, whereas in PBL and c-LPL a more even distribution of V beta gene families was observed. The dominating V beta gene families were V beta 2, V beta 3, V beta 6, V beta 8 and V beta 14. In one individual, V beta 3 comprised more than 40% of the entire repertoire of c-IEL beta chain transcripts. Sequence analysis of the predominant V beta 3 family in this individual revealed identical sequences in 13 of 17 clones analyzed. Human alpha beta TCR+ c-IEL could not be driven to proliferate or exhibit cytotoxic function in vitro however, PCR analysis for detection of lymphokine mRNA revealed constitutive production of several lymphokines known to exert trophic effects on intestinal epithelial cells and pro-inflammatory activities. Taken together, the striking degree of oligoclonality may indicate that the intraepithelial intestinal immune system is targeted to a limited set of hitherto unknown self- or foreign antigens present in the intestine and orchestrates intramucosal inflammatory and regenerative processes.

Base Sequence↗

Lymphocyte ontogeny and activation in gene targeted mutant mice.

Gene targeting by homologous recombination in pluripotent embryonic stem cells enabled the systematic creation of mouse strains with defined genetic alterations. During the past few years a rapidly growing number of gene targeted mice has provided new insights into development, selection, activation, and signaling of T and B cells, as well as into the functions of cytokines. Here we discuss the present state of targeting technology and summarize the phenotypic changes observed in gene targeted mouse strains of immunological interest. These data allow us for the first time to define genetic checkpoints in lymphocyte development that are crucial for the orderly progression of T and B cells through ontogeny and for the generation of an immune response.

Animals↗

Targeted disruption of IRF-1 or IRF-2 results in abnormal type I IFN gene induction and aberrant lymphocyte development.

Interferon regulatory factor 1 (IRF-1), a transcriptional activator, and its antagonistic repressor, IRF-2, were originally identified as regulators of the type I interferon (IFN) system. We have generated mice deficient in either IRF-1 or IRF-2 by gene targeting in embryonic stem cells. IRF-1-deficient fibroblasts lacked the normally observed type I IFN induction by poly(I):poly(C), while they induced type I IFN to similar levels as the wild type following Newcastle disease virus (NDV) infection. In contrast, IRF-2-deficient fibroblasts showed up-regulated type I IFN induction by NDV infection. A profound reduction of TCR alpha beta+CD4-CD8+ T cells in IRF-1-deficient mice, with a thymocyte developmental defect, reveals a critical role for IRF-1 in T cell development. IRF-2-deficient mice exhibited bone marrow suppression of hematopoiesis and B lymphopoiesis and mortality following lymphocytic choriomeningitis virus infection.

Animals↗

Differential T cell costimulatory requirements in CD28-deficient mice.

T cell receptor stimulation without costimulation is insufficient for the induction of an optimal immune response. It is thought that engagement of the CD28 molecule with its ligand B7 provides an essential costimulatory signal without which full activation of T cells cannot occur. A mouse strain with a defective CD28 gene was established. Development of T and B cells in the CD28-deficient mice appeared normal. However, T lymphocytes derived from CD28-/- mutant mice had impaired responses to lectins. Lectin stimulation did not trigger interleukin-2 (IL-2) production, IL-2 receptor alpha expression was significantly decreased, and exogenous IL-2 only partially rescued the CD28 defect. Basal immunoglobulin (Ig) concentrations in CD28-deficient mice were about one-fifth of those found in wild-type controls, with low titers of IgG1 and IgG2b but an increase in IgG2a. In addition, activity of T helper cells in CD28-/- mice was reduced and immunoglobulin class switching was diminished after infection with vesicular stomatitis virus. However, cytotoxic T cells could still be induced and the mice showed delayed-type hypersensitivity after infection with lymphocytic choriomeningitis virus. Thus, CD28 is not required for all T cell responses in vivo, suggesting that alternative costimulatory pathways may exist.

Animals↗

Normal B lymphocyte development but impaired T cell maturation in CD45-exon6 protein tyrosine phosphatase-deficient mice.

The transmembrane tyrosine phosphatase CD45 is expressed in multiple isoforms on all nucleated hematopoietic cells, resulting from alternative splicing of variable exons. We generated mice with a mutation in the variable CD45 exon 6, using homologous recombination. In mice homozygous for the CD45-exon6 mutation, B cells and most T cells did not express CD45. Development of B cells appeared normal, although Ig mu-induced proliferation was completely abrogated. Thymocyte maturation was blocked at the transitional stage from immature CD4+CD8+ to mature CD4+ or CD8+ cells, and only a few T cells could be detected in peripheral lymphoid organs. Clonal deletion of superantigen-reactive T cells still occurred. Cytotoxic T cell responses to lymphocytic choriomeningitis virus were absent in CD45-exon6-/- mice. These data imply that CD45 is differentially required for the development and function of B and T lymphocytes.

Animals↗

Mice deficient for the 55 kd tumor necrosis factor receptor are resistant to endotoxic shock, yet succumb to L. monocytogenes infection.

The multiple biological activities of tumor necrosis factor (TNF) are mediated by two distinct cell surface receptors of 55 kd (TNFRp55) and 75 kd (TNFRp75). Using gene targeting, we generated a TNFRp55-deficient mouse strain. Cells from TNFRp55-/-mutant mice lack expression of TNFRp55 but display normal numbers of high affinity TNFRp75 molecules. Thymocyte development and lymphocyte populations are unaltered, and clonal deletion of potentially self-reactive T cells is not impaired. However, TNF signaling is largely abolished, as judged by the failure of TNF to induce NF-kappa B in T lymphocytes from TNFRp55-deficient mice. The loss of TNFRp55 function renders mice resistant to lethal dosages of either lipopolysaccharides or S. aureus enterotoxin B. In contrast, TNFRp55-deficient mice are severely impaired to clear L. monocytogenes and readily succumb to infection. Thus, the 55 kd TNFR plays a decisive role in the host's defense against microorganisms and their pathogenic factors.

Animals↗

MRI and determination of T1 and T2 of solid polymers using a 1.5 T whole-body imager.

Spin-echo sequences with echo times as short as 3.5 msec were implemented on a standard 1.5 T NMR whole-body imager for 1H imaging of polymers in the solid-state. No modification of the NMR hardware designed for clinical usage was made. Beside images of different polymers a "self-portrait" of the polymeric materials of the receiver coil is given as a neat application. Based on imaging experiments the longitudinal and transverse relaxation time of polymers were investigated. The results indicate that using a standard whole-body imager, it is possible to provide additional information to other examination techniques in polymer and materials science.

Magnetic Resonance Spectroscopy↗

V delta 1+ subset of human gamma delta T cells responds to ligands expressed by EBV-infected Burkitt lymphoma cells and transformed B lymphocytes.

Human gamma delta T cells of peripheral blood can be divided in two groups in terms of their TCR as well as their behavior upon in vitro stimulation. The major subset expresses the TCR V-segments V gamma 9 and V delta 2 and proliferates in response to ligands revealed by various microorganisms, and the cell line Daudi in addition. The minor group is less homogenous on the gamma-chain but is almost completely identified by mAb against the V delta 1 segment; there is no ligand known to promote growth of these cells. Here we demonstrate that gamma delta T cells out of this subgroup are strongly stimulated in vitro by cells from several Burkitt's lymphoma cell lines. EBV infection of the Burkitt's lymphoma cell lines enhanced the stimulatory ability towards the T cells. Although EBV infection influenced the expression of a variety of cell surface molecules including ICAM-1 and LFA-3, no correlation to the gamma delta T cell-stimulating capacity became apparent. We conclude that Burkitt's lymphoma cells and transformed B cells express ligands of cellular origin for a hitherto poorly characterized subgroup of human gamma delta T cells.

B-Lymphocytes↗

A lectin-binding, protease-resistant mycobacterial ligand specifically activates V gamma 9+ human gamma delta T cells.

Bacterial (exogeneous) superantigens have been defined as bifunctional proteinaceous molecules. They bind to class II MHC molecules of presenting cells and engage with particular TCR-V beta gene elements, thereby activating alpha beta T cells in a V beta-oriented fashion. In previous studies we have elucidated that gamma delta T cells exhibit a propensity to vigorously respond toward mycobacterial Ag. Intrigued by this finding we now analyzed whether mycobacteria express a superantigen for a subset of human gamma delta T cells definable by the selective use of TCR-V gene elements. Here we describe that a protease-resistant, low m.w. (1 to 3 kDa) component of mycobacteria selectively activates gamma delta T cells expressing TCR-V gamma 9 gene segments. Contained in mycobacterial lysates it stimulates TCR-V gamma 9-positive gamma delta T cells at a frequency of 1/6. Stimulation is critically dependent on the presence of class II MHC-positive presenting cells, the important structure being HLA-DR molecules. The fine specificity of the V gamma 9 seeking mycobacterial ligand differs from the gamma delta T cell-stimulating structures expressed by Daudi cells. In addition, the mycobacterial, V gamma 9-seeking ligand is bound selectively to lectins such as UEAI, SBA, and DBA. We conclude that mycobacteria contain a component that acts as a superantigen for human gamma delta T cells and we believe it is this property that explains the vigorous participation of gamma delta T cells in mycobacterial infections.

Antigens, Bacterial↗

Localized phosphorus NMR spectroscopy: a comparison of the FID, DRESS, CRISIS/CODEX, and STEAM methods in vitro and in vivo using a surface-coil.

The FID, DRESS, CRISIS/CODEX, and STEAM techniques for localized 31P NMR spectroscopy were compared using a Siemens Magnetom SP63 1.5 T whole-body imager and a surface-coil, 80 mm in diameter, acting as transmitter and receiver coil. The comparison was performed with phantom experiments and human in vivo investigations on the calf muscle. The phantom experiments which used the same volume size showed a comparable signal-to-noise ratio for FID and DRESS, while the two fully localized techniques showed a reduction in signal-to-noise ratio to 76% for CRISIS/CODEX and 31% for STEAM. The in vivo measurements confirm the phantom results and reveal that CRISIS/CODEX gains a 2.5 fold higher signal-to-noise ratio than STEAM under the same conditions.

Humans↗

Opportunist mycobacteria express ligands that stimulate production of human V gamma 9V delta 2 T lymphocytes.

Human gamma delta T cells are known to respond at high frequencies to pathogenic mycobacteria. Here we show that opportunistic strains of mycobacteria share with pathogenic mycobacteria the ability to trigger at high frequencies human V gamma 9V delta 2 T-cell-receptor-positive T lymphocytes. Stimulating ligands were present in part in a low-molecular-weight fraction of lysates from opportunistic mycobacteria, as has been found for pathogenic strains. These results support the view that postnatal exposure to ever-present opportunistic mycobacteria may be a driving force for the numerical expansion of the V gamma 9V delta 2 T-cell subset in adolescence.

Adolescent↗

A major fraction of human intraepithelial lymphocytes simultaneously expresses the gamma/delta T cell receptor, the CD8 accessory molecule and preferentially uses the V delta 1 gene segment.

The frequency of T cell receptor (TcR) type and the variable gene segment expression in human intraepithelial lymphocytes (IEL) from the large intestinal mucosa were studied by flow cytometry and immunohistochemistry, and compared to those in peripheral blood lymphocytes (PBL) - or lamina propria lymphocytes (LPL). Employing anti-gamma/delta TcR and anti-alpha/beta TcR monoclonal antibodies (mAb), flow cytometric analysis revealed that a large fraction of IEL (37%) are gamma/delta T cells, whereas within LPL and PBL gamma/delta T cells comprise a minor population (4.6% and 3.8% respectively). At these sites the number of gamma/delta T cells labeled with anti-CD8 mAb were 58.3% (IEL), 43.3% (LPL) and 24.4% (PBL). In situ staining of serial sections of large intestine confirmed these results. Hence, these data suggest a selective accumulation of CD8+ gamma/delta T cells in the human epithelium of the large intestine. Furthermore, analysis of gamma/delta TcR bearing IEL+ disclosed a marked preponderance of cells using the V delta 1 gene segment, whereas gamma/delta TcR+ PBL preferentially express V delta 2. Strikingly, the majority of these V delta 1+ IEL bear the CD8 molecule on their surface. These results are taken as evidence for a selective localization of V delta 1+ CD8+ gamma/delta T cells in the epithelium of the large intestine.

Adult↗

Plasmodium falciparum merozoites primarily stimulate the V gamma 9 subset of human gamma/delta T cells.

Peripheral blood-derived T cells from six unprimed caucasian donors were tested for the in vitro reactivity to Plasmodium falciparum merozoites (PFM). Without exception vigorous proliferative responses were observed within the donors tested. The frequency of PFM-reactive T cells ranged from 1/150-1/300. Phenotypic analysis of peripheral blood lymphocytes cultured in the presence of PFM revealed the preferential outgrowth of gamma/delta T cells, which represented within 7 days about 70% of the reactive T cell blasts. All reactive gamma/delta T cell blasts displayed the V gamma 9+ TcR phenotype. We conclude that human gamma/delta T cells respond vigorously to PFM, and that this property is confined to V gamma 9+ T cell subset.

Animals↗

Analysis of primary T cell responses to intact and fractionated microbial pathogens.

Freshly isolated human T lymphocytes were tested for their response to mycobacteria, mycobacterial lysates, 2 dimensional (2D) PAGE separated mycobacterial lysates, leishmania and defined leishmanial antigen preparations. While gamma delta T cells proliferated vigorously in the presence of mycobacteria and mycobacteria derived lysates, a significant stimulation from 2 D gel separated lysates was not detected. In addition gamma delta T cells failed to respond towards leishmania or leishmanial components. In the alpha beta T cell compartment some donors, presumably according to their state of immunity against mycobacteria, responded to mycobacteria, mycobacterial lysates and 2 D gel separated mycobacterial lysates. Neither freshly isolated gamma delta T cells nor alpha beta T cells from naive donors did mount a significant immune response against leishmania.

Animals↗

Phenotypic and functional characterization of human TCR gamma delta+ intestinal intraepithelial lymphocytes.

Intestinal intraepithelial lymphocytes (IEL) appear to represent a peculiar set of immune cells compartmentalized at the interface between the organism and the external environment. In previous studies we observed that within human IEL TCR-tau/delta T cells represent a major fraction that predominantly express the CD8 molecule and preferentially uses the V-delta-1 gene segment. Thus these data suggested a preferential accumulation/homing of CD8+ V-delta-1+ IEL within the human intestinal epithelium. However, to date the functional role of these cells with regard to immune regulation at this most critical immunological site is poorly understood. In this study, the cytotoxic potential and proliferative capacity of human IEL in response to mitogenic stimuli has been characterized with respect to IEL T cell receptor type and TCR-tau/delta variable gene segment usage as determined by flowmetry. The frequency of TCR-1+ IEL expressing both CD56 and CD16 which are considered to be NK-cell markers was found to be much higher (38.9 +/- 12.4%) than within intestinal lamina propria lymphocytes (LPL) (9.1 +/- 4.8%) or peripheral blood lymphocytes (PBL) (6.4 +/- 3.3%). In contrast, the fractions of CD16-CD56+ cells within IEL, LPL and PBL were comparable. Surprisingly, IEL mediated NK-cell activity (K562 lysis) was virtually absent whereas within PBL it was within the normal range. Furthermore, in cytotoxicity assays employing 51Cr-labeled OKT3 hybridoma cells and P815 cells as targets, the cytotoxic potential of IEL was much lower than that of PBL.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Human gamma/delta T cells responding to mycobacteria.

Responses of human T cells against mycobacteria and mycobacterial components were analysed. T cells expressing either the alpha/beta or the gamma/delta T cell receptor were selected from human peripheral blood lymphocytes and proliferative responses to intact mycobacteria and to molecular mass-fractionated mycobacterial lysates were determined. alpha/beta T cells responded primarily to fractions greater than 30 kDa. Protease digestion abolished the stimulating activities for alpha/beta T cells, confirming that alpha/beta T cells respond to protein components. In contrast components recognized by gamma/delta T cells proved resistant to protease digestion. In limiting dilution studies, frequencies of proliferating gamma/delta T cells remained virtually unaltered by protease treatment of stimulating lysates, while those of alpha/beta T cells became almost undetectable. Furthermore, only few gamma/delta T cells responded to the 65 kDa heat shock protein. Our data indicate that, unlike alpha/beta T cells, gamma/delta T cells respond to mycobacterial components which are resistant to vigorous protease digestion.

Cells, Cultured↗

Primary responses of human T cells to mycobacteria: a frequent set of gamma/delta T cells are stimulated by protease-resistant ligands.

T lymphocyte subsets expressing either T cell receptor alpha/beta or gamma/delta were selected from human peripheral blood T cells and proliferative responses to molecular mass-fractionated mycobacterial lysates were determined. alpha/beta T cells primarily responded to fractions greater than 30 kDa whereas gamma/delta T cells preferentially reacted to fractions less than 3 kDa. Protease digestion abolished the stimulating activities for alpha/beta T cells, confirming that alpha/beta T cells respond to protein components. In contrast, components recognized by gamma/delta T cells proved resistant to protease digestion. In limiting dilution studies, frequencies of proliferating gamma/delta T cells remained virtually unaltered by protease treatment of stimulating lysates, while those of alpha/beta T cells became almost undetectable. Furthermore, only few gamma/delta T cells responded to the 65-kDa heat-shock protein. Our data indicate that, unlike alpha/beta T cells, gamma/delta T cells respond to mycobacterial components which are resistant to vigorous protease digestion.

Antigens, Bacterial↗