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M Goldman

Publications and source records attributed to M Goldman.

At least 289 records · Page 16Linked to original sources

B7/CD28-dependent IL-5 production by human resting T cells is inhibited by IL-10.

We analyzed the effects of rIL-10 on IL-5 production by human resting T cells isolated from peripheral blood. Resting T cells of healthy individuals required activation for 48 h with either anti-CD3 mAb cross-linked on B7/CD32-transfected mouse fibroblasts or PMA in conjunction with anti-CD28 mAb for optimal IL-5 secretion. In each condition, IL-5 secretion measured by ELISA was inhibited in a dose-dependent manner by rIL-10, whereas IFN-gamma production was not suppressed. The inhibitory effect of rIL-10 on IL-5 synthesis induced by PMA and anti-CD28 mAb was also observed at the mRNA level. In contrast with its action on T cells costimulated by B7/CD28 signaling, rIL-10 did not block IL-5 secretion in response to PMA and A23187 calcium ionophore. The inhibition of IL-5 production by rIL-10 was not due to IL-2 deprivation because it was not modified by the addition of exogenous rIL-2. Moreover, cyclosporin A, which inhibited IL-2 more efficiently than rIL-10 in response to anti-CD3 mAb and B7/CD32 transfected fibroblasts, did not reduce and even enhanced IL-5 production. Finally, we analyzed the influence of endogenously produced IL-10 on IL-5 secretion by T cells stimulated by PMA and anti-CD28 mAb. Addition of a neutralizing anti-IL-10 mAb increased IL-5 release in this system, indicating that endogenous IL-10 controls IL-5 production. We conclude that both rIL-10 and endogenous IL-10 inhibit IL-5 production by T cells costimulated by B7/CD28 signaling.

Animals↗

Interleukin-10 production during septicaemia.

Interleukin-10 is produced during incubation of human whole blood with bacterial lipopolysaccharide (LPS) and down-regulates tumour necrosis factor-alpha production in this in-vitro model of endotoxaemia. 39 out of 69 (57%) patients with gram-negative (n = 25) or gram-positive septicaemia (n = 44) had increased plasma interleukin-10 (range 12-2740 pg/mL), whereas interleukin-10 was undetectable in 29 out of 33 control patients without infection and in 20 healthy volunteers. Patients with septic shock (n = 21) had higher interleukin-10 (main 58 pg/mL) than septicaemic patients without shock (11 pg/mL, p < 0.001). We conclude that interleukin-10 is produced during sepsis and might be involved in the control of the inflammatory response induced by bacterial products.

Adult↗

Interleukin 5 synthesis by eosinophils: association with granules and immunoglobulin-dependent secretion.

Interleukin 5 (IL-5) is the main factor that promotes the terminal differentiation of eosinophil progenitors (as indicated by colony formation assays), and enhances the effector capacity of mature eosinophils. IL-5 is produced by T lymphocytes, CD4-/CD8- and mast cells and recently, messenger (m)RNA of this cytokine has been identified in eosinophils from patients with coeliac disease, asthma, or eosinophilic heart diseases. In this study, IL-5 mRNA and immunoreactive IL-5 protein were detected in tissue and blood eosinophils from patients with eosinophilic cystitis or hypereosinophilic syndromes but not in Crohn's disease. By electron microscopy associated to immunogold staining, immunoreactive IL-5 was identified in eosinophilic granules. After stimulation with IgA-, IgE-, or IgG-immune complexes, blood eosinophils were shown, by immunocytochemistry and by enzyme-linked immunosorbent assay, to secrete IL-5. These observations demonstrate that eosinophils, under physiological stimulation, can release significant amounts of IL-5, which may contribute to local eosinophil recruitment and activation.

Cytoplasmic Granules↗

Genotoxicity of the phosphoramidate agent tabun (GA).

Five mutagenicity tests were performed on Agent GA (Tabun, phosphoramidocyanidic acid, dimethyl-, ethyl ester) as part of a program to demilitarize chemical warfare agents. GA was mutagenic in Salmonella spp. assays with S-9 and it was a direct-acting mutagen to mouse lymphoma cells. GA did not promote unscheduled DNA synthesis in rat hepatocytes; it induced sister chromatid exchanges in mouse cells in vitro but in vivo. The conclusion that GA is a weakly acting mutagen is supported by the fact that it was mutagenic in only three of the five assays, and that increases in mutagenicity were often less than 2-fold the controls and occurred near toxic levels.

Animals↗

[Allogenic reaction, a model of autoimmunity].

Allogenic diseases induced in rodents by the inoculation of foreign lymphocytes represent useful models to investigate the mechanisms governing the activation of autoreactive B cells in systemic lupus erythematosus and related autoimmune disorders. The role of CD4+ helper T cells recognizing foreign class II MHC molecules has been particularly well established in murine chronic graft-versus-host disease and host-versus-graft disease. The T cells involved in these models essentially produce interleukin-4 and interleukin-10, which corresponds to the phenotype of Th2 cells. The association between autoimmunity and cellular immunodeficiency in experimental allogenic diseases could therefore be directly related to the hyperactivity of Th2 cells. Similar mechanisms might be operative in human systemic autoimmune diseases as well as in other clinical settings such as graft-versus-host disease after bone marrow transplantation or the acquired immunodeficiency syndrome.

Animals↗

Interleukin-10 inhibits B7 and intercellular adhesion molecule-1 expression on human monocytes.

There is evidence that interleukin -10(IL-10) interferes with the costimulatory properties of antigen-presenting cells and, thereby, inhibits their ability to induce T cell activation. To determine whether this effect might involve modulation of the expression of accessory molecules, we analyzed by flow cytometry the influence of human IL-10 on the basal expression of intercellular adhesion molecule 1 (ICAM-1) as well as on the interferon gamma (IFN-gamma)-induced up-regulation of ICAM-1 and B7 at the surface of human monocytes. IL-10 inhibited both the basal expression and the IFN-gamma-induced ICAM-1 up-regulation. IL-10 also reduced B7 up-regulation on IFN-gamma-stimulated monocytes. The inhibitory effect of IL-10 both on ICAM-1 and B7 expression was shown to be dose dependent. We conclude that the ability of IL-10 to decrease both ICAM-1 and B7 expression on monocytes might contribute to its immunosuppressive properties.

B7-1 Antigen↗

Interleukin-10 controls interferon-gamma and tumor necrosis factor production during experimental endotoxemia.

Interleukin-10 (IL-10) is a potent inhibitor of lipopolysaccharide (LPS)-induced tumor necrosis factor (TNF) production and has been shown to protect mice from endotoxin shock. As IFN-gamma is another important mediator of LPS toxicity, we studied the effects of IL-10 on LPS-induced IFN-gamma synthesis in vitro and in vivo. First, we found that the addition of recombinant human IL-10 (rhIL-10) (10 U/ml) to human whole blood markedly suppressed LPS-induced IFN-gamma release while neutralization of endogenously synthesized IL-10 resulted in increased IFN-gamma levels. The ability of rIL-10 to inhibit LPS-induced IFN-gamma synthesis was also observed in vivo in mice. Indeed, administration of 1000 U recombinant mouse IL-10 (rmIL-10) 30 min before and 3 h after challenge of BALB/c mice with 100 micrograms LPS resulted in a threefold decrease in peak IFN-gamma serum levels. We then examined the production and the role of IL-10 during murine endotoxemia. We found that LPS injection causes the rapid release of IL-10, peak IL-10 serum levels being observed 90 min after LPS challenge. Neutralization of endogenously produced IL-10 by administration of 2 mg JES5-2A5 anti-IL-10 monoclonal antibody (mAb) 2 h before LPS challenge resulted in a marked increase in both TNF and IFN-gamma serum levels while irrelevant isotype-matched mAb had no effect. The enhanced production of inflammatory cytokines in anti-IL-10 mAb-treated mice was associated with a 60% lethality after injection of 500 micrograms LPS, while all mice pretreated with control mAb survived. We conclude that the rapid release of IL-10 during endotoxemia is a natural antiinflammatory response controlling cytokine production and LPS toxicity.

Animals↗

Systemic release of interleukin-10 during orthotopic liver transplantation.

Experimental and clinical observations indicate that the liver allograft is less immunogenic than other organ transplants and can promote immune tolerance. Because interleukin-10 recently emerged as a macrophage and T-cell-derived cytokine with potent immunosuppressive properties, we studied its production in 28 patients undergoing orthotopic liver transplantation. Plasma levels of immunoreactive interleukin-10 dramatically increased within 2 hr after liver allograft reperfusion, with peak levels ranging between 214 and 4998 pg/ml (median = 677 pg/ml). This systemic release of interleukin-10 was transient because it returned to low levels by 48 hr (range = 26 to 51 pg/ml). The higher interleukin-10 levels measured in right atrial blood as compared with portal blood indicated that interleukin-10 was most likely synthesized within the liver graft. To get insight into the cellular origin of interleukin-10, we also measured serum levels of interleukin-4 and interferon-gamma, both produced by T cells, and interleukin-8, a cytokine secreted by macrophages, in eight patients. Interleukin-4 and interferon-gamma levels remained undetectable in most of the patients, whereas interleukin-8 levels paralleled those of interleukin-10. Portal endotoxemia was probably not involved in interleukin-10 production because endotoxin levels remained low (< 20 pg/ml) before and after liver allograft reperfusion. Interleukin-10 plasma levels did not correlate either with cold ischemia time or with the occurrence of rejection episodes. We conclude that orthotopic liver transplantation is associated with a massive release of interleukin-10 and interleukin-8, most likely produced by allograft macrophages.

Adult↗

In vivo immunosuppression induced by a weakly mitogenic antibody to mouse CD3: evidence that induction of long-lasting in vivo unresponsiveness requires TcR signaling.

The use of anti-CD3 monoclonal antibodies (mAb) to treat allograft rejection has been complicated by the morbidity observed during the first days of treatment, secondary to T cell activation and cytokine release. Available evidence in a mouse model indicates that F(ab')2 fragments of an anti-CD3 mAb are not mitogenic in vitro and can be injected in vivo without apparent toxicity. However, their immunosuppressive capacity is dramatically reduced, suggesting that long-term immunosuppression mediated by anti-CD3 antibodies in vivo may be associated to their mitogenic capacity. This paper demonstrates that a poorly mitogenic anti-CD3 mAb is able to induce potent immunosuppression in vivo with reduced morbidity. This finding suggests that immunosuppression in vivo by anti-CD3 mAbs is not directly related to their activation properties but nevertheless requires signaling capacities. Therefore, immunosuppression in vivo may be best achieved by using antibodies able to deliver an incomplete activation signal to T cells (thus avoiding systemic cytokine release), possibly leading to anergy. The implications of this study for the development of immunosuppressive antibodies are discussed.

Animals↗

Tumor necrosis factor and intravenous gammaglobulins in common variable immunodeficiency.

Common variable immunodeficiency (CVI) patients require regular intravenous immunoglobulin substitution therapy (IVGG). We studied eight patients; four of whom had adverse reactions to IVGG, and found that those coincided with elevated tumor necrosis factor-alpha (TNF-alpha) levels during infusion. Those reactions and TNF production were abolished by switching from one IVGG preparation to another in two patients. Reappearance of adverse reactions after switching preparation was preceded by a progressive rise in peak TNF levels in one patient.

Adolescent↗

OKT3 serum levels as a guide for prophylactic therapy: a pilot study in kidney transplant recipients.

The use of OKT3 as prophylaxis in renal transplantation results in a reduced incidence of graft rejection and appears to have beneficial effects on long-term kidney graft survival. However, we and others have observed that patients still experience rejection during the period of OKT3 prophylaxis given at the regular 5 mg/day dose. Many of these patients had no circulating CD3+ cells at the time of rejection, but their OKT3 serum levels were distinctly low (< 500 ng/ml). This led us to adjust OKT3 doses (5 or 10 mg) daily, according to the patients' OKT3 levels, in order to maintain an OKT3 concentration of around 1000 ng/ml. In addition, patients were randomized to receive either 5 mg (group 1, n = 15) or 10 ng (group 2, n = 14) OKT3 as the initial three doses. Concomitant immunosuppression consisted of azathioprine and steroids, with the introduction of cyclosporin A on day 11. Patient survival was 100% after 3 months of follow-up. The intensity of OKT3 first-dose reactions was similar in both groups. Intragraft thrombosis, initially observed in a previous group of patients who received a fixed 10 mg/day OKT3 prophylaxis, occurred in three patients in group 1 and resulted in two graft losses. The cumulative OKT3 dose was similar in both groups (mean +/- SEM 98 +/- 2 mg in group 1 vs 102 +/- 3 mg in group 2) and higher than the 70 mg usually administered. Group 2 patients had higher OKT3 serum levels during the first 4 days of therapy. No correlation could be found between patient weight and cumulative OKT3 dose (r = 0.29).(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗