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Biomedical subjects

C Aussel

Publications and source records attributed to C Aussel.

At least 91 records · Page 5Linked to original sources

Regulation of interleukin 2 synthesis by cAMP in human T cells.

T cell activation requires two initial signals that first lead to the expression of interleukin 2 (IL 2) receptors and the initiation of IL 2 synthesis and then to T cell proliferation. Jurkat T lymphoma cells have been shown to be a good model for studying IL 2 synthesis because these cells also require two signals for activation. The first signal can be provided by the lectin phytohaemagglutinin (PHA), and the second one by the phorbol ester, 12-o-tetradecanoylphorbol 13-acetate (TPA). The regulation of IL 2 synthesis in Jurkat cells, however, is unclear, and the present study deals with the role of cAMP on IL 2 synthesis. In Jurkat cells, IL 2 synthesis appears to be highly regulated by the activity of adenylate cyclase. This was demonstrated by using different means to increase intracellular cAMP level, namely by using permeant cAMP analogs, using the activator of adenylate cyclase, forskolin, using the activator of the alpha subunit of the stimulatory GTP binding protein cholera toxin, and using inhibitors of phosphodiesterase. In addition, prostaglandins E1 and E2 were shown to bind specifically to Jurkat cells, to induce a rise in intracellular cAMP level, and to markedly decrease IL 2 synthesis. All together, these results suggest that in T lymphocytes, the prostaglandin E2 receptor is linked to adenylate cyclase through a GTP binding protein and regulates the production of IL 2 by controlling the intracellular cAMP level.

Adenylyl Cyclases↗

Prostaglandin synthesis in human T cells: its partial inhibition by lectins and anti-CD3 antibodies as a possible step in T cell activation.

The human leukemic T cell line Jurkat was used to study arachidonic acid (AA) metabolism. We demonstrated that Jurkat cells are able to convert AA into prostaglandins (PG) and thromboxanes. The presence of tritiated 6-keto-PGF1 alpha, PGE2, PGA2 (B2), and thromboxane B2 in the culture medium was shown either by thin-layer chromatography after a 4-hr incubation period of [3H]AA-prelabeled Jurkat cells or by using specific radioimmuno assays. PG synthesis was inhibited by both indomethacin and niflumic acid, two cyclooxygenase inhibitors. AA metabolism through the cyclooxygenase pathway was followed during T cell activation. T cells were activated by lectins or anti-CD3 monoclonal antibodies (mAb) to trigger the T3-Ti complex and by 12-0-tetradecanoylphorbol 13-acetate (TPA) to mimic IL 1-dependent pathways. Our results show that lectins and anti-CD3 mAb both reduce the amount of PG released by the cells, whereas TPA did not. We confirmed that a combination of TPA and lectins or TPA and anti-CD3 mAb is necessary to obtain full activation of Jurkat cells if this event is monitored by using measurement of IL 2 synthesis. In addition, lectins and anti-CD3 mAb can be replaced by the cyclooxygenase inhibitors indomethacin or niflumic acid. Indeed, a combination of TPA and one of these two drugs induced maximal IL 2 synthesis. These results thus suggest that a reduction in PG synthesis might be a prerequisite to allow the cascade of events involved in T cell activation.

Antibodies, Monoclonal↗

Effect of insulin on aminoisobutyric acid uptake by human non-rheumatoid and rheumatoid synovial cells.

The biological sensitivity of cultured non-rheumatoid human synovial cells (NRSCs) and rheumatoid synovial cells (RSCs) was examined in terms of the ability of insulin to stimulate the uptake of alpha-aminoisobutyrate (AIB). NRSCs, like numerous fibroblastic lines, were sensitive to physiological concentrations of the hormone: half-maximal stimulation was obtained with (4 X 10(-10) M) insulin, while maximum transport was found with a 60-90 min association time. On the contrary, although the basal transport was similar in RSCs, insulin was totally unable to accelerate AIB transport in these cells. Inflammatory processes lead to an insulin resistance which most likely involves a post-receptor step at the cellular level.

Aminoisobutyric Acids↗

Human interleukin 2. Detection at the picomolar level by sandwich enzyme immunoassay.

Human interleukin 2 was detected at the pM level by a simple sequential sandwich enzyme immunoassay. The lymphokine to be assayed was first extracted from supernatants of mitogen-activated Jurkat leukemic T cells or peripheral blood lymphocytes using anti-recombinant interleukin 2 rabbit IgG insolubilized onto polystyrene microtiter plates and was revealed by an anti-interleukin 2 Fab' fragment conjugated to peroxidase. The whole method could be performed within 8 h and allowed the measurement of interleukin 2 irrespective of its degree of glycosylation. Among the currently used mitogens, only ConA at a concentration above 10 micrograms/ml interfered with the assay. The method was carefully compared to the reference bioassay and was found to be only 3-5 times less sensitive.

Animals↗

Effect of alpha-fetoprotein on arachidonic acid metabolism in a human T-cell line.

Alpha-fetoprotein (AFP), an onco-fetal protein which binds specifically polyunsaturated fatty acids, has been shown to modulate arachidonic acid metabolism in a human T-cell line. In Jurkat lymphoma cells, AFP decreases the synthesis of prostaglandins and increases the release of arachidonic acid and leukotrienes. These effects of AFP were observed both in normal and in activated cells. These results suggest that the T lymphocyte directly participates to the immunosuppressive action of AFP through the synthesis of leukotrienes.

6-Ketoprostaglandin F1 alpha↗

Effect of alpha-fetoprotein and indomethacin on arachidonic acid metabolism in P388D1 macrophages: role of leukotrienes.

Alpha-fetoprotein (AFP), is able to modify arachidonic acid metabolism in P388D1 macrophage-like cells. AFP has been shown to induce mobilization of arachidonic acid and consequently an enhanced production of leukotrienes. The action of AFP on the cyclooxygenase pathway appears, however, more complex, as this protein simultaneously decreases the total amount of cyclooxygenase products and raises the production of PGE2, 6-keto-PGF1 alpha and to a lesser extent of thromboxane B2. On the other hand, indomethacin abolishes the synthesis of PGE2 but has no effect on 6-keto-PGF1 alpha and thromboxane B2. Indomethacin used in combination with AFP partly loses its inhibiting effect on PGE2 synthesis and paradoxically leads to a "superactivation" of P388D1 cells demonstrated by a very high arachidonic acid mobilization, an enhancement of both leukotriene synthesis and cyclooxygenase activity. Evidence for a binding of indomethacin to AFP was obtained that partly explains these results. In addition, it is shown that the effects of AFP and AFP+Indomethacin on cyclooxygenase activity might be explained by the endogenous synthesis of leukotrienes.

6-Ketoprostaglandin F1 alpha↗

Influence of enterally administered ornithine alpha-ketoglutarate on hormonal patterns in burn patients.

Plasma concentrations of glucose, insulin, C-peptide, glucagon, cortisol and hGH were measured in burn patients (mean burn surface area 21 per cent) treated or not with ornithine alpha-ketoglutarate (OKG). An increase in basal values of glucose, insulin, C-peptide and cortisol was demonstrated in both groups, whereas hGH values diminished. OKG modified neither insulin nor hGH values 24 h after its enteral administration nor insulin levels within the first 4 h after intake. On the other hand, 60 min after enteral nutrition was restarted the hyperglycaemia observed in untreated subjects was reduced by OKG whereas a hyperinsulinism was observed in both groups. These results suggest that: (i) the anticatabolic/anabolic action of OKG in burn patients is not mediated by insulin or hGH, (ii) OKG probably induces an increase in glucose tolerance in burn patients, in whom there is a state of insulin resistance. The mechanism of this action requires further study.

Adolescent↗

Sensitivity of cultured fibroblasts to human, bovine and porcine insulins.

We have studied the effects of human, bovine and porcine insulin on sugar transport by cultured chicken embryo fibroblast monolayers. For a 30 min. association time, human and bovine insulin at a concentration of 5.10(-8) M stimulated 2-deoxy-D-glucose uptake. (respectively by an average 58 p.cent and 55 p.cent over basal). Porcine insulin was less potent since a concentration of 5.10(-7) M was necessary to obtain similar stimulation. Moreover, the maximal effect of porcine insulin occur only after 60 min. association time instead of 30 min. for the other peptides. The differences between the effects of insulin from different sources is related to species-dependent differences in their structure.

Animals↗

Modulation of insulin action on 2-deoxyglucose uptake by chloroquine in chick embryo fibroblasts.

Blazar et al. recently found that chloroquine therapy decreased intravenous insulin requirements in a case of extreme insulin resistance. However, no relationship has been shown to exist between insulin degradation and the stimulation of glucose uptake. In this study we investigate the action of insulin on glucose uptake by the ability of this hormone to stimulate 2-deoxyglucose. The effect on alpha-aminoisobutyrate uptake, which is known to be insulin sensitive, is also investigated. Cell-associated 125I-labeled insulin and trichloroacetic acid-soluble and -precipitable substances were measured in parallel. Chloroquine increased insulin-stimulated uptake of 2-deoxyglucose and alpha-aminoisobutyrate. Three hours were required for this effect to appear, and it did not depend on DNA synthesis. Chloroquine also increased cell-associated insulin and slightly decreased the percentage of trichloroacetic acid-soluble products. Methylamine affected neither nutrient uptake processes nor insulin binding and degradation; however, it did abolish the effect of chloroquine on these parameters. These data suggest that in chick embryo fibroblasts a relationship may exist between the increase in undegraded cell-associated insulin and the ability of the hormone to stimulate sugar and amino acid uptake.

Aminoisobutyric Acids↗

Alpha-fetoprotein stimulates leukotriene synthesis in P388D1 macrophages.

Alpha-fetoprotein (AFP) is able to bind specifically polyunsaturated fatty acids, especially arachidonic acid, the major precursor for prostaglandin and leukotriene synthesis. In P388D1 macrophages, AFP was found to reduce prostaglandin synthesis. This reduced synthesis was counter-balanced by a higher release of unmetabolized arachidonic acid and an enhanced production of leukotrienes. The same results were obtained with unactivated and activated cells irrespective of the activator used: lipopolysaccharide, Ca2+ ionophore A23187, phorbol myristate acetate, interferon-gamma, silica, or zymozan particles. The stimulation of leukotriene synthesis by AFP in macrophages thus appears to be a possible mechanism for the in vitro immunosuppressive effects of this oncofetal protein.

Arachidonic Acids↗

Affinity chromatography of rat alpha-fetoprotein on estradiol-agarose columns.

The use of 17 beta-estradiol-17-hemisuccinate coupled to agarose beads is shown to be a rapid and simple procedure for the isolation of alpha-fetoprotein (AFP) from amniotic fluid. The elution profile of the affinity column shows that AFP is sufficiently retarded by the gel to perform the purification of the protein without specific elution with high-affinity AFP ligands. Rat AFP appeared as a single symmetric peak, a profile that is in good agreement with the existence of a single population of AFP molecules having estrogen-binding properties.

Amniotic Fluid↗

Effect of alpha-fetoprotein on arachidonic acid metabolism in the preadipocyte cell line OB 17.

Previous work has shown that alpha-fetoprotein (AFP) is able to bind specifically polyunsaturated fatty acids, one of the major ligands being arachidonic acid (C20:4). In the present study, we demonstrate that AFP is able to reduce the metabolism of exogenous C20:4 by ob17 cells. Both prostaglandins and lipoxygenase products formation were reduced when cells were maintained in the presence of AFP. This decrease was counterbalanced by a higher release of C20:4 into the culture medium by the cells. The amount of C20:4 incorporated into cellular lipids was decreased but the distribution of C20:4 in the different lipid classes remained unchanged. The modification of C20:4 metabolism by AFP might be of primordial importance in developmental biology and may shed a new light on the physiological actions of AFP which have been described in the past years such as ovarian inhibition, cell growth control and immuno-suppressive activity.

Adipose Tissue↗

Fibronectin and retinyl acetate effects on attachment and spreading of normal and rheumatoid human synovial cells.

The action of two effectors - fibronectin (FN) and retinyl acetate (RA) - on cell attachment and spreading of human synoviocytes was investigated by adding these two drugs to the cell culture medium. No relationship was observed between the level of the effectors (FN = 20-80 micrograms/well, RA = 0.50-2 micrograms/well) and the biological effects studied. For normal human synoviocytes, fibronectin was less effective on the adhesion than fetal calf serum (FCS) present in the control culture medium; retinyl acetate, a drug acting on glycoprotein synthesis, led to similar effects to those observed for FCS-treated cells. In the case of rheumatoid synovial cells, the degree of adhesion was similar for drug- and FCS-treated cultures. Moreover, FN and RA had little effect on the spreading compared to FCS. Given these results, it would appear that synoviocytes differ in their behaviour from usual fibroblastic models.

Arthritis, Rheumatoid↗

Plasma branched-chain keto acids in burn patients.

Plasma branched-chain keto acids (BCKA) and glucose-alanine cycle-related substances were measured in venous and arterial blood following burn injury. It was found that the three BCKA diminished with a minimum on day 7 while pyruvate increased. Alanine and glutamate + glutamine also decreased but plasma branched-chain amino acids (BCAA) did not vary. BCKA and gluconeogenic amino acids were liberated by peripheral tissues whereas BCAA were not. By analogy with the fate of alanine, a reduction in plasma BCKA associated with a high release by peripheral tissues might involve an increase in their hepatic metabolism. The BCKA would then give rise to ketone bodies used by the peripheral tissue. This step would complete the glucose-alanine cycle described by Cahill in hypercatabolic states where energy requirements are intense and similar to those found in burn injuries.

Adolescent↗

Alpha-fetoprotein favours accumulation of estrone but not arachidonic acid into the fetal and new-born rat brain.

Tritriated estrone or arachidonic acid, two high affinity ligands for rat alpha-fetoprotein (AFP), were injected into adult, pregnant or newborn Sprague Dawley rats in order to evaluate their possible transfer into the brain. This study shows that the developing brain accumulates the estrogen but not the fatty acid, suggesting that the uptake of AFP by the developing brain is a mechanism for transporting estrogens, but not fatty acids.

Animals↗

Presence of three different binding sites for retinoids, bilirubin and estrogen or arachidonic acid on rat alpha-fetoprotein.

Rat alpha-fetoprotein (AFP) contains one binding site for estradiol with an association constant, Ka = 1 X 10(8) M-1. This site overlaps with a high affinity arachidonic acid binding site (Ka = 1 X 10(7) M-1) and with a tryptophan methyl ester binding site, AFP also possesses a second site able to bind retinoids with a Ka = 1 X 10(6) M-1, and a third site for the binding of bilirubin (Ka = 1 X 10(6) M-1). These two sites presented no interaction and do not overlap with the estrogen or fatty acid binding site. It is suggested that these three binding sites reflect the three-domain structure of the rat AFP molecule deduced from the studies on the nucleotide sequence of AFPmRNA and AFPcDNA segments.

Animals↗