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Biomedical subjects

M Salmon

Publications and source records attributed to M Salmon.

At least 91 records · Page 5Linked to original sources

T-lymphocyte-fibroblast interactions.

At the end of the immune response, activated T-cells are cleared by apoptosis. T-cell apoptosis induced by cytokine deprivation can be inhibited by the addition of exogenous cytokines or by a fibroblast-derived survival factor. Under normal circumstances, fibroblast-mediated T-cell survival may allow persistence of a small number of primed T-cells in tissues, which can be reactivated to initiate a secondary immune response. In abnormal situations, fibroblast-mediated T-cell survival may lead to the persistence of large numbers of T-cells producing a chronic inflammatory state. Evidence derived from wound healing suggests that a bidirectional interaction is possible, and T-cells are also capable of regulating fibroblast behaviour. Persistent T-cells in the wound site thus prolong a scarring response. Potential manipulation of these interactions would provide a novel strategy for developing new therapeutic interventions. For example, administration of the fibroblast survival factor that inhibits T-cell apoptosis may prolong lymphocyte survival in lymphopenic states such as AIDS. Inhibition of the survival factor on the other hand not only has potential in the treatment of chronic inflammatory states, but may also be of value in regulating scar formation with implications for the treatment of many diseases.

Animals↗

Selective migration of highly differentiated primed T cells, defined by low expression of CD45RB, across human umbilical vein endothelial cells: effects of viral infection on transmigration.

Low expression of CD45RB on CD45RO+ T lymphocytes defines a subset of highly differentiated T lymphocytes that accumulate in vivo within the affected joints of patients with rheumatoid arthritis (RA). Although it is known that CD45RO+ T lymphocytes migrate to sites of inflammation in vivo, it is not clear whether within this subset the CD45RBlo cells are selectively recruited or develop in situ within the joint. Using a transwell system we show that a small proportion of resting T lymphocytes migrated across unactivated human umbilical vein endothelial cells (HUVEC). These migrating cells were CD45RO+ and enriched for low CD45RB expression. In addition, both the CD45RO+CD45RBlo subset and migrating cells expressed increased levels of beta 1 and beta 2 integrins and CD44. The percentage of CD45RO+CD45RBlo T lymphocytes was increased in the circulation of patients with acute Epstein-Barr virus (EBV) infection. These in vivo activated cells also expressed increased levels beta 1 and beta 2 integrins and CD44, and showed an enhanced rate of transmigration compared with resting T lymphocytes. Transmigration of T lymphocytes was increased using the chemokines RANTES and lymphotactin and the cytokine interleukin-15 (IL-15). In addition, infection of the HUVEC with cytomegalovirus (CMV) led to an enhanced movement of T lymphocytes. In all of these cases the selective migration of the CD45RBlo subset was maintained. Thus although the rate of T-lymphocyte transmigration could be influenced by a number factors, the CD45RO+CD45RBlo subset has a migratory advantage suggesting that more differentiated CD45RO+CD45RBlo T lymphocytes are selectively recruited to sites of inflammation.

Cell Line↗

Role of cytokine-induced neutrophil chemoattractant (CINC) in ozone-induced airway inflammation and hyperresponsiveness.

Cytokine-induced neutrophil chemoattractant (CINC) is a rat chemokine with potent chemoattractant effects on neutrophils. We determined the involvement of CINC in ozone-induced airway neutrophilia and bronchial hyperresponsiveness (BHR) in the rat. We found a marked increase in lung CINC messenger RNA (mRNA) within 2 h after cessation of ozone exposure (1 ppm for 3 h), as measured by Northern blot analysis, whereas rats exposed to room air had no detectable CINC mRNA. Ozone exposure induced a significant neutrophilia in bronchoalveolar lavage fluid (BALF) at 24 h after exposure (air-exposed rats: 4.2 +/- 2.0 x 10(4), versus ozone-exposed rats: 16.1 +/- 3.7 x 10(4)); prior treatment with a goat anti-CINC antibody (1 mg, intravenously) suppressed the neutrophilia (3.1 +/- 0.9 x 10(4)). When administered intratracheally, the antibody (230 micrograms) partially inhibited the influx of neutrophils. The increase in bronchial responsiveness to acetylcholine observed after ozone exposure was not inhibited by the anti-CINC antibody. The anti-CINC antibody (1 mg, intravenously) also inhibited BALF neutrophilia induced by exposure to a higher concentration of ozone (3 ppm, 3 h), without an effect on BHR. CINC is an important chemokine causing ozone-induced neutrophil chemoattraction, but is not involved in the induction of ozone-induced BHR. The neutrophil is unlikely to contribute to BHR in this model.

Acetylcholine↗

Mechanisms of impaired beta-adrenoceptor-induced airway relaxation by interleukin-1beta in vivo in the rat.

We studied the in vivo mechanism of beta-adrenergic receptor (beta-AR) hyporesponsiveness induced by intratracheal instillation of interleukin-1beta (IL-1beta, 500 U) in Brown-Norway rats. Tracheal and bronchial smooth muscle responses were measured under isometric conditions ex vivo. Contractile responses to electrical field stimulation and to carbachol were not altered, but maximal relaxation induced by isoproterenol (10(-6)-10(-5) M) was significantly reduced 24 h after IL-1beta treatment in tracheal tissues and to a lesser extent, in the main bronchi. Radioligand binding using [125I]iodocyanopindolol revealed a 32+/-7% reduction in beta-ARs in lung tissues from IL-1beta-treated rats, without any significant changes in beta2-AR mRNA level measured by Northern blot analysis. Autoradiographic studies also showed significant reduction in beta2-AR in the airways. Isoproterenol-stimulated cyclic AMP accumulation was reduced by IL-1beta at 24 h in trachea and lung tissues. Pertussis toxin reversed this hyporesponsiveness to isoproterenol but not to forskolin in lung tissues. Western blot analysis revealed an IL-1beta-induced increase in Gi(alpha) protein expression. Thus, IL-1beta induces an attenuation of beta-AR-induced airway relaxation through mechanisms involving a reduction in beta-ARs, an increase in Gi(alpha) subunit, and a defect in adenylyl cyclase activity.

Animals↗

Ozone induction of cytokine-induced neutrophil chemoattractant (CINC) and nuclear factor-kappa b in rat lung: inhibition by corticosteroids.

We determined in rat lung whether ozone exposure was associated with the expression of the chemokine, cytokine-induced neutrophil chemoattractant (CINC), and of the transcription factor, NF-kappa B. CINC mRNA expression peaked at 2 h after cessation of ozone exposure, and returned to basal levels by 24 h. DNA-binding activity of NF-kappa B showed a marked increase after ozone, maximal at 2 h. Dexamethasone inhibited CINC mRNA and NF-kappa B expression, together with neutrophilic inflammation. Our data supports the concept that ozone leads to NF-kappa B activation which increases CINC mRNA expression. These series of events could lead to neutrophilic inflammation.

Animals↗

Interleukin-2 receptor common gamma-chain signaling cytokines regulate activated T cell apoptosis in response to growth factor withdrawal: selective induction of anti-apoptotic (bcl-2, bcl-xL) but not pro-apoptotic (bax, bcl-xS) gene expression.

Cytokine deprivation from activated T cells leads to apoptosis associated with down-regulation of the bcl-2 gene product. It is not clear, however, how cytokines other than interleukin-2 (IL-2) may affect this process and regulate the involvement of other apoptosis-modulating genes. We show that a group of cytokines including IL-2 (IL-2R gamma), prevent the apoptosis of IL-2-deprived activated T cells. This rescue involves the induction of the anti-apoptosis genes bcl-2 and bcl-xL), but causes little change in expression of bax and bcl-xS, which promote apoptosis. Furthermore, the prevention of apoptosis and induction of proliferation by the common gamma chain cytokines can be dissociated. Thus, when proliferation is blocked, the common gamma chain cytokines still induce up-regulation of bcl-2 relative to bax and retard apoptosis. These cytokines can thus regulate the persistence or removal of effector T cells by coordinating the balance between genes which promote and those which inhibit apoptosis, events which are probably mediated at least in part by signals through the common gamma chain. These data also implicate inappropriate T cell apoptosis resulting from a dysfunctional common gamma-chain as part of the pathophysiological defect in patients with X-linked severe-combined immunodeficiency (SCID).

Apoptosis↗

Fibroblasts prevent apoptosis of IL-2-deprived T cells without inducing proliferation: a selective effect on Bcl-XL expression.

The apoptosis of human cytokine-deprived activated T cells can be prevented by a soluble mediator secreted by fibroblasts, epithelial and endothelial cells, and this rescue occurs with fibroblasts from different species. Fractionation of W138 fibroblast-conditioned medium indicated that the survival-promoting agent(s) were > 30,000 MW. The continuous presence of the survival factor was required for prevention of apoptosis, which did not involve the induction of proliferation. Nevertheless, the co-cultured T cells remained in a primed state. The expression of the apoptosis-inducing proteins Bax and CD95 (Fas/Apo-1) was either unchanged or slightly increased in fibroblast-rescued T cells, suggesting that constraints on survival still existed after co-culture. A fundamental observation in the present study was that although Bcl-2 was reduced, the levels of Bcl-XL was maintained in cytokine-deprived T cells by fibroblast co-culture. This suggests that fibroblasts and/or other stromal cells may promote activated T-cell survival by a selective effect on Bcl-XL expression, which is consistent with histological examination of activated T cells within lymphoid tissue in vivo. The rescued T cell could be re-activated by CD3 antibody, but only in the presence of CD28 co-stimulation, which induced both Bcl-2 and Bcl-XL expression and also proliferation. Thus, survival signals from stromal cells in tissue microenvironments may enable activated T-cell persistence in a primed but quiescent state, and our data suggest that the regulation of Bcl-XL expression may be central in this process. The further characterization of this process is essential to clarify how signals from stromal cells can influence the resolution and/or chronicity of immune responses in different tissues in vivo.

Apoptosis↗

CD4+ CD45RA+ T cells from adults respond to recall antigens after CD28 ligation.

The leukocyte common antigen isoforms CD45RA and CD45RO have long been used to discriminate human naive and memory T cells respectively. This model was largely based on the observation that CD45RO+ T cells respond preferentially to and show a higher frequency of precursors specific for recall antigens. However, CD45RA+ T cells have more stringent requirements for stimulation and standard in vitro assays may favour CD45RO+ cells in this respect. We tested the hypothesis that CD45RA+ T cells respond poorly to in vitro stimulation with recall antigens because of inadequate stimulation rather than a lack of precursors. Limiting dilution analyses (LDA) for tetanus toxoid (TT)-specific T cells were performed in the presence or absence of exogenous anti-CD28 antibody. Addition of anti-CD28 yielded no proliferation in the absence of specific antigen. The precursor frequency for TT in the CD4+ CD45RO+ population was approximately 1:4000, while the frequency of CD4+ CD45RA+ T cells specific for TT was 4- to > 20-fold lower. Addition of anti-CD28 antibody did not significantly alter the apparent precursor frequency for CD45RO+ cells but yielded an enhancement of the value for CD45RA+ cells by 3- to > 5-fold. No enhancement of antigen-specific proliferation by anti-CD28 was observed with CD45RA+ T cells derived from cord blood, although phytohemagglutinin responses of these cells were amplified by CD28 antibody. These results indicate that conventional LDA underestimate the true precursor frequency of antigen-specific cells within the adult CD45RA+ population and support the possibility that a small number of cells revert from a primed (CD45RO+) to an unprimed (CD45RA+) state. The majority of memory T cells, however, appear to reside in the CD45RO+ population.

Adult↗

Active systemic lupus erythematosus is associated with the recruitment of naive/resting T cells.

The aim of this study was to determine whether active systemic lupus erythematosus (SLE) is associated with recruitment of resting CD45RA+ T cells or reactivation of CD45RO+ memory T cells. Three-colour immunofluorescence was used to determine CD45 isoform expression by CD4+ T cells from 28 patients with SLE. Newly recruited and highly differentiated primed T cells were distinguished by their CD45RB expression. The pattern of CD45 isoform expression varied directly with time since the onset of symptoms in patients with active SLE. Shortly after symptoms appeared, most cells were CD45RA+ resting cells or CD45RO(dull)RB(bright) early primed cells. However, over the course of active disease, patients accumulated CD45RO(bright)RB(dull) cells which represent an advanced state of differentiation. The switch from an early to late primed phenotype correlated significantly with time since the onset of symptoms. The recruitment of resting T cells in active SLE, rather than the simple reactivation of existing memory clones, has implications for understanding the pathology of this disease and for treating it.

Biomarkers↗

Factors that influence activated CD8+ T-cell apoptosis in patients with acute herpesvirus infections: loss of costimulatory molecules CD28, CD5 and CD6 but relative maintenance of Bax and Bcl-X expression.

The expanded CD8+ T-lymphocyte population arising in response to viral infection controls the virus but could also prove damaging to the host unless safely removed at the end of the immune response. Apoptosis provides a mechanism whereby this can be achieved, as apoptotic cells are recognized and engulfed by macrophages. Peripheral blood CD8+ T lymphocytes from individuals with acute viral infections were highly susceptible to apoptosis after short-term culture in vitro. This spontaneous cell death could be prevented by interleukin-2 (IL-2) and was related to a decreased expression of Bcl-2 but not Bax or Bcl-XL, additional molecules that promote or prevent apoptosis, respectively, as well as an increase in CD95. After stimulation with anti-CD3 antibody, T cells from these patients also underwent an activation-induced cell death (AICD) that could not be prevented by IL-2. Interestingly, CD8+ T cells from this patient group expressed lower than normal levels of three costimulatory molecules, CD28, CD5 and CD6, suggesting that stimulation in the absence of a second signal is a possible mechanism for the defective reactivation of these cells. Thus multiple mechanisms, including loss of Bcl-2, increased CD95 and loss of costimulatory molecules, place constraints on the survival and reactivation of activated CD8+ T cells after viral infections. This enables immune activation to be controlled and cellular homeostasis to be re-established during resolution of viral diseases in vivo.

Acute Disease↗

Expression of inducible nitric oxide synthase mRNA in Brown Norway rats exposed to ozone: effect of dexamethasone.

We studied the effects of ozone exposure and dexamethasone on inducible nitric synthase (iNOS) gene expression in Brown Norway rats in vivo. Using a murine iNOS cDNA probe, we detected a 4.4 kb iNOS mRNA by Northern analysis in rat lung. The iNOS signal was weak in control lungs, but increased in lungs exposed to ozone (3 ppm, 6 h). Ozone-induced iNOS mRNA expression was time-dependent, with maximal expression at 2 h, declining by 8 h and increasing again at 24 h postexposure. Dexamethasone significantly reduced the iNOS mRNA expression in the lungs of both controls and ozone-exposed rats. These results demonstrate that ozone inhalation induces iNOS expression in vivo, thus providing evidence at the molecular level for the possible involvement of nitric oxide generation in ozone-induced pulmonary inflammation or lung damage.

Administration, Inhalation↗

Dexamethasone inhibits ozone-induced gene expression of macrophage inflammatory protein-2 in rat lung.

To address the potential role of the chemokine macrophage inflammatory protein-2 (MIP-2) in airway inflammation, we examined whether MIP-2 may play a role in ozone-induced neutrophilic inflammation of airways and its modulation by dexamethasone in rat lung. Following ozone exposure, MIP-2 mRNA expression in the lung peaked at 2 h after exposure and slowly declined thereafter. Dexamethasone suppressed ozone-induced MIP-2 mRNA expression and neutrophil accumulation in the lung. We suggest that the MIP-2 mRNA induction may switch on the neutrophilic influx observed in this model of lung inflammation. Furthermore, the MIP-2 expression is regulated by dexamethasone which may represent one of the mechanisms by which glucocorticoids exert their potent anti-inflammatory properties.

Animals↗

The role of T-lymphocytes in rheumatoid arthritis.

The role of T lymphocytes in the pathology of rheumatoid arthritis (RA) is controversial. To some extent this has resulted from contradictory data, but even where specific points of fact are not in dispute, their interpretation often is. Nevertheless, the basic idea of a pathological T cell response in RA receives significant support from the work of several groups who have removed them by thoracic duct drainage, lymphapheresis or total lymphoid irradiation (TLI). Each of these procedures ameliorates RA; in the case of TLI which induces a profound and sustained decrease in CD4+ cells, the effect on synovitis was prolonged. These observations are in line with the general assumption that the strong association of RA with HLA-DR molecules containing a particular conserved region of amino acids implies an important role for T cells in RA, since the physiological role of HLA-DR molecules is to present antigens to T cells. In addition the association with Dw4 and related alleles is strongest for the most severe and persistent forms of disease, arguing that T cells may be important not just in initiation of RA but also in its perpetuation. However, the infiltrating T cells seem to be remarkably inactive and as a population to lack specificity for any particular antigen, leading some to conclude that their role is either passive or irrelevant, while others contend that it is precisely this inactivity which is responsible for the persistence of RA.

Apoptosis↗

The specific recognition by macrophages of CD8+,CD45RO+ T cells undergoing apoptosis: a mechanism for T cell clearance during resolution of viral infections.

During viral infections, CD8+,CD45RO+ T populations expand. These primed cells express abundant levels of cytoplasmic granules that contain perforin and TIA-1. Recent work has suggested that the majority of this CD8+ population downregulates Bcl-2 protein expression and is destined to undergo apoptosis. In this study we have investigated the elimination of these apoptotic CD8+ T cells by both human monocyte-derived and murine bone marrow macrophages. We have found that these phagocytes recognize and ingest both apoptotic CD8+ and CD4+ T cells using an alpha v beta 3 (vitronectin receptor)/CD36/thrombospondin recognition system, with the same receptors being used in the recognition of apoptotic neutrophils. These data provide new evidence for a mechanism that enables the clearance of greatly increased populations of CD8+ effector cells which are found during viral infections. This enables cellular homeostasis to occur in the host upon resolution of viral diseases in vivo.

Amino Acid Sequence↗