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A Ythier

Publications and source records attributed to A Ythier.

33 records · Page 2Linked to original sources

Proliferative responses of circulating human NK cells: delineation of a unique pathway involving both direct and helper signals.

The present studies were performed to investigate mechanisms of human natural killer (NK) cell activation. NK-active cells were purified out of heterogeneous large granular lymphocytes (LGL)-enriched suspensions using a "pan NK"-specific monoclonal antibody termed anti-NKH1A. It was found that treatment of NKH1A+-sorted cells by T lymphocyte mitogens such as phytohemagglutinin (PHA) or anti-T11(2) plus anti-T11(3) did not induce proliferative responses. In fact, there was no measurable interleukin 2 (IL2) secretion and no significant increase in IL2 susceptibility following incubation with either PHA or anti-T11(2) plus anti-T11(3). However, as opposed to small resting T lymphocytes, NKH1A+ cells moderately proliferated in the presence of IL2. This IL2-dependent proliferation was dramatically increased after interaction between NK-active lymphocytes and certain hematopoietic cell lines such as K562 or EBV-transformed lymphoblastoid cell lines. These studies indicate that unique activation mechanisms can be identified when NK lymphocytes are purified out of LGL-enriched fractions. The NK activation pathway delineated here appears essentially distinct from those described for T lymphocytes. Indeed the nature of the NK cell/inducing cell interaction is unknown and triggering cannot be related, for example, to a conventional allogeneic effect mediated through membrane exposure of class I or class II major histocompatibility complex gene products. Moreover, these interactions do not lead to the development of autocrine responses. Together the present results support the view that direct signals can preactivate NK cells but are not sufficient to trigger proliferation which must therefore be regulated by helper populations.

Antibodies, Monoclonal↗

The effect of anti-interleukin-2 receptor monoclonal antibody on allograft rejection.

During immune response to an allograft, activated T cells express a number of cell surface activation antigens, among them the membrane receptor for the lymphokine interleukin 2 (IL-2). As the IL-2 receptor is not present on resting T cells, it offers an attractive target for potentially specific immunosuppressive therapy. The rat monoclonal antibody M7/20, which binds to the murine IL-2 receptor, was studied for its effect on allograft survival in two H-2-incompatible strain combinations in inbred mice. Treatment with M7/20 for 10 days markedly prolonged survival of vascularized, heterotopic heart allografts in both strain combinations, with indefinite graft survival in 50% of recipients. The same treatment significantly prolonged skin allograft survival in one of the two combinations. The results support the important role of the IL-2 receptor in the mechanism of graft rejection and confirm its suitability as a target for immunosuppressive therapy in transplantation.

Animals↗

[Interleukins: factors of intercellular communication].

Immune response implies reactions between immunocompetent cells. These reactions are made by direct contact between cells and via soluble factors. Among the latter, the interleukins, protein molecules produced during antigenic and mitogenic stimulation by the immunocompetent cells, intervene as modulators of the immune response. Interleukin-1, a protein synthesized by the activated macrophages, participates in the induction of interleukin-2 production by stimulated T-lymphocytes. Interleukin-2, a glycoprotein molecule, is the growth factor of activated T-lymphocytes by enabling their proliferation and clonal propagation. Interleukin-3, or Multi-colony stimulating factor, controls the production and the differentiation of haemopoietic cells and thus probably plays an important role in resistance to infections.

Animals↗

A target structure for a series of human cloned natural killer cell lines is recognized by both anti-TNKtar and 4F2 monoclonal antibodies.

It was shown recently that a surface antigen termed TNKtar was likely to serve as a target molecule for three distinct human NK clones expressing the same clonotypic determinant (termed NKTa) present on a 90 KD recognition structure. In the present studies, we investigated whether TNKtar and a previously described antigen termed 4F2 were related. Parallel immunoprecipitations from membrane lysates of the same cells showed that both anti-TNKtar and 4F2 Mab precipitate a heterodimeric structure which resolves as two bands of identical m.w. (40 and 80 KD) in SDS-PAGE analysis under reducing conditions. Sequential immunoprecipitations demonstrated that the two antibodies are directed at the same molecule. However, one antibody did not block subsequent binding of the other, and vice versa, suggesting that anti-TNKtar and 4F2 Mab are directed at two distinct epitopes of the molecule. Functionally, it was found that 4F2 Mab was able, as well as anti-TNKtar, to selectively block cytotoxic function of JT9 cloned cells. Furthermore, as reported previously for anti-TNKtar, 4F2 had no effect when additional NKTa-NK clones were used as effector cells in cytotoxicity assays. Finally, cold target inhibition assays were performed by using cold target cells precoated with either anti-TNKtar or 4F2 Mab. These experiments showed that preincubation of target cells with either antibody blocked their ability to compete with their radiolabeled counterpart. Such results further strengthen the hypothesis that the activation antigen recognized by both anti-TNKtar and 4F2 Mab serves as a specific target structure for NKTa+ NK active clones. We discuss the importance of previous data concerning the 4F2 molecule in light of this functional role, which had not been identified previously.

Antibodies, Monoclonal↗

Improved culture conditions for quantitative evaluation of interleukin 2 production by frozen human lymphocytes.

Several culture parameters were studied in order to establish methods for optimal and reproducible production of interleukin 2 (IL2) by thawed lymphocytes. Standard conditions, considered optimal for production by freshly separated lymphocytes (culture medium RPMI 1640 + 1% normal human serum + 10 micrograms/ml PHA), gave low and poorly reproducible results. An increased concentration of human serum (10 and 20%) in the medium improved production but best results were obtained by adding polyethylene glycol (PEG 6000, 0.1 mg/ml) to the culture medium. Furthermore, with the addition of PEG 6000, results became highly reproducible, thus permitting valid comparison of in vitro IL2 production by lymphocytes from normal donors and patients.

Blood↗

HLA-AB and -DR types in patients with infectious mononucleosis (IM).

The frequency of HLA-A, -B and -DR antigens in 48 infectious mononucleosis (IM) patients was studied and the antigen frequencies were compared with those of a local panel. The resulting data do not confirm the association of IM and HLA-B35 as reported in a previous work. A high and significant frequency of blank HLA-DR phenotypes was noticed in IM population during the acute phase, but HLA-DR phenotypic expression was restored after recovery. This lack of expression could be the result of modified HLA-DR expression on circulating EBV infected B lymphocytes.

Adolescent↗

Plasma exchange in early kidney graft rejection associated with anti-donor antibodies.

Patients with early rejection of kidney allografts associated with anti-donor antibodies have been randomized in two groups which received, respectively, either the conventional corticosteroid/azathioprine treatment or extensive plasma exchanges (PE) plus the conventional treatment. Data on the monitoring of anti-T or anti-B donor lymphocytes, as well as anti-panel or autoreactive cytotoxicity are described. Although the titer of anti-donor antibodies is decreased in the PE-treated group there is no sustained improvement of graft function compared to the control group. Thus, in these stereotyped rejection episodes, which are likely to be antibody mediated, there is no significant effect of extensive and early plasma exchange.

Antibodies↗

Decrease in natural killer cell activity in kidney allograft recipients.

The natural killer cell activity (NKCA) of a population of 66 functioning kidney allograft recipients (followed up for over 9 years) was assessed on K562 and DORA cell line targets. The 51Cr specific release test showed a rapid, sharp decrease in NKCA as early as 3 months after grafting, reaching a minimal level between 7 and 60 months (5 +/- 5 vs. 45 +/- 19% 51Cr release; P less than 0.001). Patients showing an almost total lack of NKCA were roughly the same whether assessed on K562 or DORA targets. NKCA tended to be restored in long-term transplanted patients (greater than 61 months). Control populations, aside from 32 healthy individuals, consisted of 11 haemodialysed patients as well as patients submitted to corticosteroid therapy for more than one year (8 cases of giant cell arteritis and 4 chronic asthmas). Haemodialysed patients exhibited normal NKCA (whether previously grafted or not). Corticosteroid-treated patients showed either no significant modification (K562 target) or a borderline decrease (DORA target) in NKCA. Azathioprine or corticosteroid dosage intake on the day of the test did not influence the level of graft recipient NKCA. The natural cytotoxicity of peripheral blood lymphocytes (PBL) from recipients lacking in activity (less than 5% 51Cr release) was not restored by exogenous (type alpha) interferon. and PBL of recipients with low NKCA scores produced normal levels of purified interferon after 24-h Sendai virus exposure. No inhibitory effects of sera obtained from recipients lacking NKCA nor any active suppressor cells from their PBL could be evidenced, thus suggesting an actual loss of natural killer progenitors (or an "insensitivity" to interferon) in those patients. Corticosteroids, as opposed to azathioprine, were able to decrease the in vitro NKCA of healthy donor PBL at pharmacological concentrations.

Adult↗

A unique T-cell receptor complex expressed on human fetal lymphocytes displaying natural-killer-like activity.

We have recently derived a series of cloned cell lines displaying natural killer (NK) cell-like activity from normal human fetal blood (25 weeks). The lines were obtained after repeated stimulation of mononuclear cells with allogeneic Epstein-Barr virus (EBV)-transformed B lymphocytes and are interleukin-2 (IL-2) dependent. Initial characterization of the clones has been reported previously. Certain of these clones have been found to have unusual surface characteristics, namely, they are recognized by several well-defined anti-T3 antibodies, but do not react with WT31, which is thought to recognise an invariant epitope of the human (Ti-alpha beta) structure. Transcription of the genes encoding the alpha- and beta-chains of the T-cell receptor was assessed in two of these clones (F6A4 and F6C7). Ti-beta genes were found to be expressed, whereas alpha messenger RNA was not detected in Northern blot analysis. These data strongly suggest that these cells do not produce a stoichiometric T3/Ti-alpha beta receptor complex. However, experiments performed with a monoclonal antibody (anti-NKFi) developed against F6C7 cells demonstrated the existence of a unique clonotypic structure [relative molecular mass (Mr) 85,000 (85K)] which is surface-associated with T3 proteins. Furthermore, both anti-T3 and anti-NKFi were found to block cytotoxic effector function. Together, the results support the view that T3 proteins are involved in non-major histocompatibility complex (MHC)-restricted cytotoxic reactions mediated by certain circulating fetal lymphocytes which are likely to use a clonotypic structure distinct from both the 'first' (alpha beta) and the putative 'second' (gamma delta) T-cell receptor to recognize their target. The present studies were designed to characterize this structure.

Antibodies, Monoclonal↗

Safety, pharmacokinetics and pharmacodynamics of recombinant human tumour necrosis factor-binding protein-1 (Onercept) injected by intravenous, intramuscular and subcutaneous routes into healthy volunteers.

The safety, pharmacokinetics and pharmacodynamics of recombinant human tumour necrosis factor-binding protein-1 (r-hTBP-1, Onercept) were investigated after intravascular and extravascular injection, in three studies in healthy volunteers. Subjects received Onercept as single intravenous doses of 5, 15, 50 and 150 mg, or single IV, IM, SC injection of 50 mg, or six repeated SC injections of 50 mg. Based on vital signs, hematology and blood chemistry, antibodies to study drug and local tolerability, r-hTBP-1 exhibited a remarkably safe profile. There was no evidence of alteration of hepatic oxidative metabolism. Recombinant-hTBP-1 showed linear pharmacokinetics that could be described by a triexponential model, and exhibited an initial half-life of 30 min, an intermediate half-life of 4 hours and a terminal elimination half-life of about 15 hours, although it was prolonged to 21 hours after repeated SC injections. The total clearance was estimated at 4 l/h. The initial (Vc) and steady state (Vss) volumes of distribution were approximately 4 l and 10 l, respectively. Renal clearance was minimal, representing around 2.5% of the total clearance, and remained constant after increasing doses of r-hTBP-1. The absorption was slow and biphasic. The immunoactivity of r-hTBP-1 was closely related to its biological activity, although the assessment was limited to only some of the samples. As anticipated in normal healthy volunteers, the pharmacodynamic response was generally not different from placebo. Total TNF-alpha serum levels increased slightly, 1 hour following IV administration of 50 mg and 150 mg r-hTBP-1. However, no major increase in the active entity levels (free TNF-alpha) was observed. In addition, no TNF-alpha-driven biological response was observed, i.e. C-reactive protein, IL-6 and fibrinogen remained almost constant, as did transferrin and albumin. Its safety profile and pharmacokinetic characteristics make Onercept a candidate drug suitable for antagonising pathologically high levels of TNF-alpha as reported in inflammatory, immune and cardiovascular diseases.

Adult↗

Pharmacokinetics and tissue distribution of human urinary tumor necrosis factor binding protein in mice.

Iodinated natural human urinary tumor necrosis factor binding protein I (125I-uTBP) was iv injected into BALB/c mice, and its pharmacokinetics and tissue distribution were assessed during a short-term (0-1 hr) and for a long-term (0-24 hr) period. The blood 125I-uTBP concentration displayed a biphasic pattern that was adequately described by a biexponential function with estimated half-lives of 0.1 and 3.8 hr. The apparent volume of distribution (Vc) of the central compartment was 3 ml, which approximated the mouse blood volume. The clearance (CL) derived either from a model-dependent or a model-independent method of analysis was 2.5 and 2.9 ml/hr, respectively. One hr after the iv administration of 125I-uTBP, the radioactivity accumulated in the major organs and tissues. The highest concentrations in terms of pg per organ were seen in the skin and in the liver. When expressed as pg 125I-uTBP per mg organ, the distribution was the highest in the gallbladder, bladder, kidneys, and lungs. At 24 hr, the distribution of 125I-uTBP represented about 10% of the amount measured at 1 hr. The rank order of accumulation of the radiolabeled uTBP in the major organs, expressed as pg per organ at 24 hr was skin greater than liver greater than kidneys greater than lungs greater than gut greater than spleen greater than gallbladder.

Animals↗

[Inhibition of NK activity by oses: effect of interleukin 2 (author's transl)].

Several sugars can strongly inhibit the natural cytotoxicity (NK) exhibited by peripheral blood lymphocytes (PBL) against tumour cells. The inhibition of NK cytotoxicity mediated by mannose, glucose, galactose and saccharose was tested in human PBL. All these sugars significantly blocked (P less than 0.01 at 50 mM concentration) the NK cytotoxicity. The blocking is dose-dependent in a linear pattern. The sole preincubation of the attacking (NK) population is required for inhibition of cytotoxicity; no influence of the sugars were noticed on the K562 alone. In contrast, the NK cytotoxicity of PBL primed in mixed lymphocyte reaction and further cultured in presence of conditioned medium (CM), showed, aside of a clear increase (average 40% increase of specific 51Cr release, P less than 0.05) a full insensitivity to the tested sugars. Phytohaemagglutinin (PHA), interferon (IF) and an interleukin 2 (Il2) are contained in the CM. We showed that neither the PHA nor the IF preincubation of the cells can induce the insensitivity of NK for the sugars, thus our data strongly suggest that Il2 is implicated in the sugar insensitivity of the cytotoxicity of lymphocytes cultured with CM.

Adult↗

In vivo modulation of coagulation and fibrinolysis by recombinant glycosylated human interleukin-6 in baboons.

To assess the effect of interleukin-6 (IL-6) on the coagulation and the fibrinolytic systems, we administered a single subcutaneous injection of recombinant glycosylated human interleukin-6 (r-hIL-6) 100 micrograms per kg body weight) to four baboons (Papio ursinus). Four saline injected baboons served as controls. In serial plasma or serum samples collected over a period of seven days we measured several key parameters of the coagulation and the fibrinolytic systems, IL-6 and a set of acute phase proteins. Three hours after the injection, the serum IL-6 levels peaked at 50 ng/ml and then gradually declined with a terminal half-life of around 4 hours. The biological efficacy was demonstrated by the significant increases of several acute phase proteins, circulating platelets and the decrease of prealbumin and fibronectin. Between days 1 and 3, marked effects on the coagulation system were observed with a prolongation of the activated partial thromboplastin time, prothrombin time and thrombin time. Plasma concentrations of fibrinopeptide A and D-dimer increased. The antithrombin III antigen and activity levels decreased, but the thrombin-antithrombin III complex concentrations did not change. The fibrinolytic system rapidly showed striking modifications after 6-8 hours, the concentrations of tissue-type plasminogen activator and of plasminogen activator inhibitor type 1 peaked at respectively four and thirty times the basal concentrations. No changes were seen in the control group. We conclude that besides its well-known acute phase inducing and hematopoietic activities, subcutaneous rhIL-6 also modulates several parameters of the coagulation and the fibrinolytic systems.(ABSTRACT TRUNCATED AT 250 WORDS)

Acute-Phase Reaction↗

Urinary TNF-binding protein (TNF soluble receptor) protects mice against the lethal effect of TNF and endotoxic shock.

We tested the effect of urinary TNF-binding protein (uTBP) on the toxic effect of TNF (0.5 micrograms/mouse, i.v.) in adrenalectomized mice sensitized with IL-1 to increase susceptibility to TNF. In this experimental model, mortality was 67%, but decreased to 13% when uTBP (250 micrograms/mouse, i.v.) was administered simultaneously with TNF. The protective effect of uTBP was dose-dependent, and time course experiments indicated a protective effect when uTBP was administered before or up to one hour after TNF. Some protection was also obtained when uTBP was given three hours after TNF. Urinary TBP improved the survival of mice after a lethal dose of LPS (1.2 mg/mouse, i.p.), suggesting its possible efficacy in the therapy of septic shock or other TNF-mediated pathologies.

Adrenal Glands↗