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Biomedical subjects

L Chatenoud

Publications and source records attributed to L Chatenoud.

At least 127 records · Page 7Linked to original sources

Anti-CD3 antibody induces long-term remission of overt autoimmunity in nonobese diabetic mice.

Anti-CD3 monoclonal antibodies suppress immune responses by transient T-cell depletion and antigenic modulation of the CD3/T-cell receptor complex. Anti-CD3 treatment of adult nonobese diabetic (NOD) mice, a spontaneous model of T-cell-mediated autoimmune insulin-dependent diabetes mellitus, significantly inhibits the autoimmune process. Short-term low-dose anti-CD3 treatment (5 micrograms/day i.v. for 5 consecutive days) prevented the occurrence of an accelerated form of the disease induced by cyclophosphamide. More unexpectedly, when applied to adult NOD females within 7 days of the onset of full-blown diabetes, the same anti-CD3 regimen induced a complete remission of overt disease (i.e., a return to permanent normoglycemia) in 64-80% of mice. This remission was durable (> 4 months) and was not associated with the disappearance of insulitis (mononuclear cell infiltration of the islets). The immunosuppression was apparently specific for beta-cell-associated antigens, since mice showing anti-CD3-induced remission rejected histoincompatible skin grafts normally, whereas they did not destroy syngeneic islet grafts, unlike control untreated overtly diabetic NOD females. These results open major therapeutic perspectives. They strongly suggest that self-tolerance can be restored in adult mice once autoimmunity is fully established and confirm that this effect can be obtained by transient targeting of the CD3/T-cell receptor without massive T-cell debulking.

Animals↗

Alcohol and risk of spontaneous abortion.

The objective of this study was to assess the association between alcohol drinking before and during pregnancy and the risk of spontaneous abortion using data from a case-control study conducted in Milan, Italy. A total of 462 women (median age 30 years) were admitted for spontaneous abortion (within the 12th week of gestation) to a network of obstetrics departments in the greater Milan area. Of these, 148 (32%) were between the fourth and the eighth week of gestation and 314 (68%) between the ninth and the 12th week. A control group was made up of 814 women (median age 29 years) who gave birth at term (> 37 weeks gestation) to healthy infants (Apgar 5th minute > or = 8, weight > or = 3000 g) on randomly selected days at the same hospitals where cases had been identified. A total of 212 cases (46%) and 355 controls (47%) reported alcohol drinking before conception. Considering non-drinkers as the reference category, the relative risks (RR) of spontaneous abortion were 1.2 [95% confidence interval (CI), 0.9-1.6] and 0.8 (95% CI, 0.6-1.1), respectively, in drinkers of one to seven and more than seven drinks per week before conception. No association emerged between the duration of alcohol drinking and the risk of spontaneous abortion. A total of 166 cases (35.9%) and 263 (32.3%) controls reported any alcohol drinking during the first trimester of pregnancy. The corresponding relative risk was 1.1 (95% CI, 0.9-1.4) and no relationship emerged between the number of drinks per week and the risk of abortion.(ABSTRACT TRUNCATED AT 250 WORDS)

Abortion, Spontaneous↗

Distribution of hepatitis B virus DNA sequences in different peripheral blood mononuclear cell subsets in HBs antigen-positive and negative patients.

Hepatitis B virus (HBV) DNA sequences have been detected in leucocytes from HBV-infected individuals. The aim of this study was to assess the specificity of HBV for a special leucocyte subset in nine healthy chronic HBV carriers, nine HBs antigen-positive patients with chronic active hepatitis, 16 HBs antigen-negative haemophiliacs with HBc and/or HBs antibodies, and 10 patients with HBV-related systemic necrotizing vasculitis. HBV-DNA sequences were found by Southern blot hybridization in the leucocytes of 15 out of the 44 (34%) patients. The prevalence was not significantly different between the four groups. HBV-DNA was found in the CD4+ cells (9/11) as well as in the CD8+ cells (4/11), B cells (4/12) and monocytes (2/12). In conclusion, leucocytes, and particularly CD4+ lymphocytes, are frequently infected by HBV in patients with HBV serum markers.

Carrier State↗

Anti-tumor necrosis factor modulates anti-CD3-triggered T cell cytokine gene expression in vivo.

De novo expression of TNF, IFN gamma, IL-3, IL-4, and IL-6 genes was initiated rapidly by treatment of mice with anti-CD3. A specific feature of this reaction was that TNF was derived exclusively from T cells. TNF was produced both as a mature soluble trimeric protein and as a 26-kD anti-TNF-reactive protein compatible with membrane-anchored TNF. Pretreatment with anti-TNF did not affect anti-CD3-triggered TNF mRNA expression in T cells. In contrast, in vivo and in vitro anti-TNF treatment upregulated anti-CD3-induced IFN gamma mRNA expression and inhibited IL-4 mRNA expression. These latter effects were not dependent on TNF neutralization: pretreatment with soluble recombinant 55-kD TNF receptor (TBPI) as an alternative TNF-neutralizing agent did not modify the anti-CD3-induced cytokine profile. These results suggest that a direct interaction between anti-TNF and T cell membrane-anchored TNF could account for the observed modulation of cytokine gene expression. The increased expression of INF gamma mRNA observed in anti-TNF-treated animals correlated with a decrease in IL-3 and IL-6 mRNA expression. Conversely, IFN gamma blockade by a neutralizing anti-IFN gamma mAb led to a substantial increase in both IL-3 and IL-6 gene expression induced by anti-CD3. Taken together, these results strongly argue for the existence, in the anti-CD3-induced cytokine cascade, of IFN gamma-dependent regulation of IL-3 production, which in turn modulates IL-6 production.

Animals↗

Sparing of first dose effect of monovalent anti-CD3 antibody used in allograft rejection is associated with diminished release of pro-inflammatory cytokines.

The murine monoclonal antibody OKT3 is the best known of the anti-CD3 antibodies used for the prevention and treatment of renal allograft rejection. Use of this antibody is associated with improved graft outcome but it has a number of adverse effects thought to result from the massive release of pro-inflammatory cytokines. It has been postulated that OKT3 causes cytokine release because of cross-linking of CD3 molecules on the cell surface by bivalent anti-CD3 antibodies, such as OKT3, and the simultaneous binding of the Fc regions of these monoclonal antibodies to Fc receptors on other cells resulting in cell activation. Monovalent antibodies directed against the CD3 antigen should not, in theory, cause cell activation and cytokine release by this postulated mechanism. This study details the use of a monovalent anti-CD3 monoclonal antibody in the treatment of allograft rejection in five renal transplant recipients and documents the degree of TNF, IFN-g and IL6 release generated after antibody injection. Monovalent anti-CD3 monoclonal antibody reversed the rejection episode for which it was used and was well tolerated in all patients. TNF, IFN-g and IL6 measurement showed that little pro-inflammatory cytokine release occurred after this drug. It is likely that the relative lack of side-effects of monovalent anti-CD3 reflects the blunted release of pro-inflammatory cytokines. Monovalent anti-CD3 monoclonal antibody may be a useful addition to the reagents available to treat allograft rejection.

Acute Disease↗

The generation of a humanized, non-mitogenic CD3 monoclonal antibody which retains in vitro immunosuppressive properties.

CD3 antibodies are proven immunosuppressants capable of reversing transplant rejection episodes. Their general application has been limited both by their immunogenicity and, in particular, by the "first-dose" cytokine-release syndrome experienced by patients after the initial administration of antibody. We have produced a set of variants of the humanized YTH 12.5 CD3 monoclonal antibody (mAb) (Routledge et al., Eur. J. Immunol. 1991. 21: 2717) bearing different human heavy (H) chain constant regions, with the intention of finding a form of the antibody that is not able to activate T cells. Comparison of the variants having gamma 1, gamma 2, gamma 3 and gamma 4 H chains in a competitive binding assay showed that antibody avidity was not affected by IgG subclass. Using a sensitive indicator of FcR binding activity (the capacity of the CD3 mAb to redirect cytotoxic T cells to kill the monocytic cell line U-937) we demonstrated a functional hierarchy of gamma 1 = gamma 4 > alpha 2 =/> gamma 3 mb >> gamma 2. An aglycosyl version of the gamma 1 CD3 mAb, produced by site-directed mutagenesis (Asn297 to Ala), still had considerable activity in this assay (intermediate to the gamma 1 and alpha 2 CD3 mAb), albeit at a level approximately 10-fold lower than that of the parental gamma 1 form. When we tested their ability to stimulate T cell proliferation in vitro in the presence of 5% human serum, all of the wild-type immunoglobulin isotypes were found to be active, although there were T cell donor-dependent variations in the extent of the responses. The aglycosyl gamma 1 mAb was, however, completely non-mitogenic in all of ten donors tested, unless the assay was performed in IgG-free medium. Despite being non-stimulatory, this mAb was also able to inhibit the mixed lymphocyte reaction responses of both naive and primed T cells. Comparison of the gamma 1 and aglycosyl gamma 1 mAb in an experimental mouse model for CD3 mAb-induced cytokine release indicated that removal of the carbohydrate moiety from the gamma 1 constant region reduced the in vivo tumor necrosis factor-alpha response by a factor of at least 16-fold. These data suggest that the aglycosyl gamma 1 CD3 mAb is a promising candidate for immunosuppressive therapy without "first dose" side effects.

Animals↗

Anti-OKT3 response following prophylactic treatment in paediatric kidney transplant recipients.

The anti-OKT3 response was studied in 40 paediatric kidney transplant recipients receiving OTK3 as a prophylactic treatment in association with azathioprine and prednisone. Only 1 patient experienced a reversible acute rejection episode while receiving OKT3. OKT3 induced a rapid disappearance of CD3+ cells, but significant proportions of CD3+ cells reappeared before the end of the treatment in 14 patients. Wide variations in circulating OKT3 levels were observed and in only 50% of patients could stable circulating OKT3 levels be detected until discontinuation of treatment. Anti-OKT3 antibodies detected by the enzyme-linked immunosorbent assay (ELISA) (anti-idiotypic and anti-isotypic antibodies) developed in 91% of patients. Anti-idiotypic antibodies detected by the immunofluorescence inhibition test were found in the sera of 71% of patients, always when high titres of anti-OKT3 antibodies were detected by ELISA. As it has recently been shown that anti-idiotypic antibodies are associated with failure of subsequent OKT3 treatment, we conclude that OKT3 should be restricted to steroid-resistant rejection crises in paediatric patients.

Adolescent↗

Implications of de novo ELAM-1 and VCAM-1 expression in human cardiac allograft rejection.

Both cytokines produced by activated monocytes and T cells and direct cell-to-cell contact with antigen-primed T cells during inflammatory reactions are known to induce the expression of several adhesion proteins on endothelial cells. In this prospective longitudinal study, we analyzed the expression of ELAM-1, VCAM-1, and ICAM-1 on myocardial allograft biopsy specimens taken from 16 cardiac allograft recipients either for routine monitoring or for the investigation of suspected rejection. Infiltrating T cells were identified using anti-CD3 antibodies. Three to six sequential biopsies taken at one-week intervals were analyzed by means of conventional histology and immunohistochemistry. Seven patients did not develop rejection during the study; their biopsies were negative for VCAM-1 and ELAM-1, although faint ICAM-1 staining was present on capillaries, reflecting constitutive expression. Three patients entered the study with clear-cut clinical and histologic signs of acute rejection. Intense VCAM-1 and ICAM-1 expression was detected on capillary and postcapillary venules, together with a heavy CD3+ T cell infiltrate; VCAM-1 was also expressed on arteriolar endothelial cells. ELAM-1 was undetectable in all three cases. Six patients developed acute rejection during the course of the study. In four, ELAM-1 and VCAM-1 were expressed on both capillary and postcapillary venules one or two weeks before the histological diagnosis of rejection (heavy CD3+ cell infiltrate). Importantly, ELAM-1 expression was short-lived and had disappeared by the time CD3+ cellular infiltrate was detected, thus extending in vivo the finding that ELAM-1 expression is usually transient in vitro. Only VCAM-1 expression was observed in the other two patients, one week prior to the histological diagnosis of rejection. These results suggest that ELAM-1 and VCAM-1 might represent early predictive markers of acute cardiac allograft rejection. ELAM-1 expression is, however, usually transient, necessitating frequent testing.

Adolescent↗

HILDA/LIF, G.CSF, IL-1 beta, IL-6, and TNF alpha production during acute rejection of human kidney allografts.

HILDA/LIF, a recently described glycoprotein, has been characterized from supernatants of alloreactive T cell clones (CD4 and CD8) extracted from a human rejected kidney graft. This suggests a possible role for HILDA/LIF in the rejection process. In order to further investigate this possible role and the role of other cytokines in allograft rejection, we tested HILDA/LIF, G.CSF, IL-6, TNF alpha, and IL-1 beta in supernatants of cultured mononucleated cells from patients during rejection and from stable grafted patients. In addition, we also tested HILDA/LIF in urine of the same patients. No significant differences were directly observed in the production of HILDA/LIF, TNF alpha, and IL-1 beta in supernatants from mononucleated cells between rejecting and stable patients. However, when antibodies were used to block the TNF alpha and the IL-1 beta receptors, an increase of both cytokines was detected in cells from rejecting patients suggesting that an over-expression of both receptors and cytokines occurred during rejection. A significant increase was also observed for both G.CSF and IL-6 during the rejection compared to stable grafts. In addition, HILDA/LIF was detected in urine of patients during rejection and not in urine of stable patients, suggesting that this cytokine may indeed play a role in rejection.

Antibodies↗

Aberrant distribution of CD4 and CD8 lymphocyte subsets in recent-onset IDDM patients. Effect of cyclosporin.

The monoclonal antibodies 2H4 and 4B4 are specifically directed against CD45RA and CD29 antigens, respectively, which are expressed on both CD4+ and CD8+ lymphocytes. We used them to monitor the distribution of these T-cell subsets in 19 recent-onset IDDM patients (26 +/- 7 yr of age [mean +/- SD throughout]) receiving cyclosporin, and who had been treated with insulin for < 1 mo. Blood samples were examined before starting cyclosporin and after 3 and 9-12 mo of therapy. CD45RA and CD29 are expressed on distinct subsets of CD4+ T-cells, whereas in both healthy subjects and IDDM patients, 2H4 and 4B4 labeling does not always differentiate two distinct CD8+ populations. Various proportions of double-labeled CD8+ CD45RA+ CD29+ cells were detected in 59% of IDDM patients and 70% of healthy control subjects. Before cyclosporin treatment, recent-onset IDDM patients had a significantly lower proportion of CD4+CD29+ cells than the healthy control subjects (42 +/- 11 vs. 52 +/- 9%, P < 0.004). This imbalance corresponded to a significant increase in the CD4+ CD45RA+/CD4+ CD29+ ratio in the IDDM patients (1.37 +/- 0.93 vs. 0.78 +/- 0.36, P < 0.014). Independent of the presence of double-labeled cells, the proportion of CD8+ lymphocytes expressing CD45RA was significantly higher in the patients than in control subjects (72 +/- 15 vs. 57 +/- 15%, P < 0.004). The mean density of the CD45RA antigen (but not that of CD29) on both CD4+ and CD8+ cells was significantly higher in the IDDM patients before treatment than in the healthy control subjects. Cyclosporin induced complete or partial remission of the disease in 12 of 19 patients at 4-6 mo of treatment, but did not correct the imbalance between the regulatory T-cell subsets, regardless of clinical effectiveness. Cyclosporin use was associated with a significant decrease in CD45RA antigen density on both CD4+ and CD8+ T-cells.

Adult↗

Immunologic monitoring during OKT3 therapy.

The monoclonal antibody OKT3 is a potent immunosuppressant inducing both T-cell depletion and antigenic modulation of the CD3/T-cell receptor complex. CD3 + lymphocytes are cleared from the circulation within 1 hour of intravenous administration of OKT3. Periodic monitoring of remaining or reappearing CD3 + lymphocytes gauges the adequacy of OKT3 dosing and OKT3 consumption by anti-OKT3 antibodies. The maximum acceptable concentration of CD3 + lymphocytes for maintaining the effectiveness of OKT3 therapy remains controversial due to variable sensitivity of the methods used. Intravenously administered OKT3 has a half-life of approximately 18 hours and results in trough serum levels ranging from 500 to 1000 ng/ml in 3 to 4 days. The antibody response to OKT3 is oligoclonal, and both IgM and IgG antibodies to OKT3 may develop, showing restricted specificity; anti-isotypic and/or anti-idiotypic antibodies can be detected. The IgG anti-idiotypic antibodies are the ones that neutralize the therapeutic activity of OKT3, and their specific detection involves the use of an immunofluorescence method that tests their ability to block the binding of OKT3 to normal T cells. The production of OKT3 antibodies has been shown to be affected by concomitantly administered immunosuppressive agents. Studies have demonstrated that OKT3 can be successfully reused in allograft recipients who do not present anti-idiotypic blocking antibodies. The acute clinical syndrome regularly observed upon the first OKT3 injection is related to massive, although transient, release of several cytokines, which may be easily monitored with currently available radioimmunologic or immunoenzymatic tests.

Cytokines↗