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M Daveau

Publications and source records attributed to M Daveau.

At least 37 records · Page 2Linked to original sources

Glutamine accelerates interleukin-6 production by rat peritoneal macrophages in culture.

The effect of glutamine on the production of interleukin-6 (IL-6) was studied in rat peritoneal macrophages in culture. A maximal production of IL-6 was measured at 4 h in lipopolysaccharide (LPS)-stimulated macrophages, and addition of glutamine (5 mM) anticipated this increase by 1 h without any increase in the IL-6 mRNA level. The effect of glutamine required the presence of LPS. Thus, glutamine accelerates IL-6 production from the pre-existing mRNA. The effect of glutamine was not mediated by cell swelling since culture of macrophages in hypoosmotic condition decreased the production of IL-6 in the culture medium with a corresponding decrease in the IL-6 mRNA level.

Animals↗

Cytokine gene expression in liver following minor or major hepatectomy in rat.

Interleukin 6 (IL-6), tumour necrosis factor alpha (TNF-alpha), interleukin 1 (IL-1), and transforming growth factors alpha and beta (TGF-alpha and TGF-beta) are important mediators which play a pleiotropic role in both inflammatory and hepatic regeneration processes. It has also been proposed that a major hepatectomy impairs the liver-related host defence mechanisms. The aim of this study was to evaluate the influence of minor (30%) vs major (80%) hepatectomy on cytokines, growth factors and acute-phase proteins both at the protein and mRNA levels in rat. For that purpose, rats were submitted to either 30% or 80% hepatectomy and sacrificed at intervals up to day 14 post-hepatectomy to collect liver and blood samples. Serum levels of IL-6 and acute-phase proteins (APPs) were determined after RNA extraction, cytokine and acute-phase proteins gene expression were evaluated using a quantitative RT-PCR method. The results demonstrate that liver mRNA levels for IL-6 were early unregulated after a 80% resection only, whereas liver mRNA levels for IL-1 slowly increased following 30 or 80% hepatectomy. For TNF-alpha, no significant changes were observed between groups. Growth factor expression differed according to the extent of hepatic resection. Moreover, plasma levels of alpha2-macroglobulin (alpha2M) and alpha1 acid glycoprotein (AGP), two major APPs which respond differently to combination of cytokines, were significantly lowered after a major resection whereas levels of serum IL-6 showed no significant changes between groups. Paradoxically, in the 80% hepatectomized group, alpha2M mRNA expression was strongly increased at 4 h and 6 h post-hepatectomy as compared with the 30% hepatectomized group. Taken together, these results suggest that, although an increased level of hepatic IL-6 expression was observed following a major resection, the liver's capacity to synthesize normal levels of APPs was impaired. Moreover, these specific changes of cytokine gene expression seen in the liver following major hepatectomy might reflect a preferential activation of the IL-6-dependent APPs.

Acute-Phase Proteins↗

Transforming growth factor alpha (TGF-alpha) expression correlates with DNA replication in regenerating rat liver whatever the hepatectomy extent.

Liver regeneration is a physiological mechanism that leads to restoration of the hepatic parenchyma following hepatectomy or toxic injury. As a two-third hepatectomy is the usual model to analyse this phenomenon, few studies have compared liver regeneration after minor vs major hepatectomy. We have used a quantitative RT-PCR technique to study the hepatic transcription of the TGF-alpha gene in rats submitted to 30% or 80% hepatectomy and we have correlated this transcription with the regenerative response assessed by flow cytometry and Ki-67 expression. The level of TGF-alpha expression and the regenerative response were different, according to the volume of liver removed, and were statistically correlated (r = 0.679, p = 0.002). TGF-alpha expression and phase S peaked at day 2 vs 6 in the 80% vs 30% hepatectomized rat groups, respectively. Ki-67 expression occurred at 2 h post-hepatectomy in the two groups of rats and was observed until day 14 mainly in the 80% hepatectomy group. Our results indicate that TGF-alpha expression in regenerating liver is strongly correlated with hepatocyte mitosis, that a delayed regenerative response occurs following 30% hepatectomy and that the course of regeneration differs between minor vs major hepatectomy.

Animals↗

Gut ischemia and mesenteric synthesis of inflammatory cytokines after hemorrhagic or endotoxic shock.

The intestine plays a major role in the pathophysiology of multiorgan failure. Although the systemic inflammatory response might be induced by endotoxin released through bacterial translocation, other factors such as intestinal ischemia might be implicated. We investigated the relationship between intestinal ischemia-reperfusion and cytokine release in rat models of hemorrhagic or endotoxic shock. Plasma levels of tumor necrosis factor-alpha (TNF-alpha), interleukin-6 (IL-6), lactate, and endotoxin, as well as macrophage TNF-alpha and IL-6 mRNA expression, were assessed at the end of shock and resuscitation. Hemodynamic changes and lactate levels suggested the presence of intestinal ischemia in both models. Mesenteric levels of TNF-alpha and IL-6 were increased by hemorrhage and further increased after saline resuscitation. Similar results were obtained with mRNA cytokine gene expression in macrophages. Endotoxin was not detectable in the hemorrhagic group. Endotoxic shock also increased production of cytokines, which, in contrast to hemorrhage, was not further increased by resuscitation. These results suggest that intestinal ischemia-reperfusion upon hemorrhage and resuscitation may be a major trigger for cytokine gene expression in the absence of endotoxin.

Animals↗

The inter-alpha-inhibitor family: from structure to regulation.

Inter-alpha-inhibitor (IalphaI) and related molecules, collectively referred to as the IalphaI family, are a group of plasma protease inhibitors. They display attractive features such as precursor polypeptides that give rise to mature chains with quite distinct fates and functions, and inter-chain glycosaminoglycan bonds within the various molecules. The discovery of an ever growing number of such molecules has raised pertinent questions about their pathophysiological functions. The knowledge of this family has long been structure-oriented, whereas the structure/function and structure/regulation relationships of the family members and their genes have been largely ignored. These relationships are now being elucidated in events such as gene transcription, precursor processing, changes in plasma protein levels in health and disease and binding capacities that involve hyaluronan as well as other plasma proteins as ligands. This review presents some recent progress made in these fields that paves the way for an understanding of the functions of IalphaI family members in vivo. Finally, given the wealth of heterogeneous, complicated and sometimes contradictory nomenclatures and acronyms currently in use for this family, a new, uniform, nomenclature is proposed for IalphaI family genes, precursor polypeptides and assembled proteins.

Alpha-Globulins↗

Differential expression of cytokine genes in monocytes, peritoneal macrophages and liver following endotoxin- or turpentine-induced inflammation in rat.

Pro-inflammatory cytokines are produced after systemic or local inflammation by a wide variety of cell types including monocytes, macrophages, Kupffer and endothelial cells. Previous studies have shown that IL-6 gene expression does not occur in liver from rats undergoing an acute phase response after turpentine injection or controls. These data do not rule out the possibility that delivery of a pathogen to the liver via the portal circulation could directly activate the Kupffer cells. Rats were injected either intravenously or intraperitoneally with LPS, or subcutaneously with turpentine oil. The changes in IL-1 beta, IL-6, and TNF mRNA levels in monocytes (collected from portal vein or caval cein), peritoneal macrophages and liver over a 3-hour period post-treatment were examined. The kinetics of LPS-vs turpentine-induced cytokine mRNAs in these various cell types were compared by quantitative reverse transcription and polymerase chain reaction (RT-PCR). Our data demonstrate that an intrahepatic expression of cytokines in the non parenchymal cells was induced by an LPS challenge but not by a turpentine-induced inflammation. This process could act as a paracrine mechanism in the acute-phase response and play a role in the modulation of hepatic regeneration.

Animals↗

Human inter-alpha-inhibitor family in inflammation: simultaneous synthesis of positive and negative acute-phase proteins.

The inter-alpha-inhibitor (I alpha I) family encompasses four plasma proteins, namely free bikunin as well as I alpha I, pre-alpha-inhibitor (P alpha I) and inter-alpha-like inhibitor (I alpha LI). Each of the last three proteins is a distinct assembly of one bikunin chain with one or more unique heavy (H) chains designated H1, H2 and H3. The three H chains and the bikunin chain are encoded by four distinct mRNAs. These molecules and chains, as well as the corresponding mRNAs, were quantified in sera and liver biopsies from a series of patients with or without mild or severe acute infection. The decrease or increase observed for a given molecule or chain in the serum was in agreement with a similar change in the corresponding liver mRNA. In acute inflammation the H2 and bikunin chains are down-regulated and the relevant molecules (I alpha I, I alpha LI) behave as negative acute-phase proteins, whereas the H3 chain is up-regulated and the corresponding P alpha I molecule is a positive acute-phase protein. Also, P alpha I displays a higher-than-usual M(r); this is probably due to ligand binding. The H1 gene does not seem to be affected by the inflammatory condition. The quantitative changes in RNA levels seen in vivo were confirmed in vitro in the human hepatoma Hep3B cell line prior to or after induction with the acute-phase mediators interleukin-1 and/or -6. These results provide the first example in humans of positive and negative acute-phase proteins that are encoded by evolutionary related genes.

Acute-Phase Proteins↗

Absence of expression of interleukin-6 (IL-6) mRNA in regenerating rat liver.

The serum level of IL-6 and expression of IL-6 mRNA in hepatocytes from regenerating liver were investigated in the rat. The IL-6 level in the serum was not significantly different from that of a control group of rats submitted to an acute experimental inflammation. IL-6 mRNA expression did not occur in the liver of hepatectomized rats as judged from Northern blotting experiments using an IL-6 riboprobe. These results suggest that if IL-6 is implicated in hepatic regeneration, this cytokine is not produced by the regenerating liver and must be delivered exogenously to the liver to modulate hepatic regeneration.

Animals↗

The human hepatoma Hep3B cell line as an experimental model in the study of the long-term regulation of acute-phase proteins by cytokines.

The regulation of the synthesis by the cytokines interleukin-1 (IL-1) and IL-6 of the positive acute-phase protein alpha 1-acid glycoprotein (AGP) and of the negative acute-phase protein alpha 2-HS glycoprotein (AHSG) has been studied in a long-term culture system of the human hepatoma cell line Hep3B. The culture system contained 30 nM-sodium selenite as the only supplement. This allowed maintenance of the synthesis of the proteins under study at a near steady state for over 3 months. An increase in AGP mRNA and a decrease in AHSG mRNA were observed when cells were treated for two successive 48 h-periods with monocyte-conditioned medium. A return to basal levels was obtained after cessation of the cytokine addition. Two further additions of cytokines led to alterations in mRNA levels similar to those observed following the first cytokine treatment. The amounts of AGP and AHSG secreted were altered in accordance with the mRNA modifications. These results suggest that new cytokine receptors were being constantly synthesized during cell culture. When cytokines were present in the culture medium for 10 days, maximum alterations in AGP and AHSG synthesis were obtained following 2 and 4 days of treatment respectively, but further alterations in protein levels could not be observed afterwards. Expression of IL-6 receptor mRNA was not up-regulated by cytokines, but only by 1 microM-dexamethasone. Our results show that, in this long-term culture system, cytokines induce a response in hepatoma cells similar to that observed in vivo during human inflammatory states. This model could be used to evaluate the effects of agonists or antagonists of cytokines responsible for the hepatic acute-phase protein response.

Acute-Phase Proteins↗

Electrophoretic pattern of the inter-alpha-inhibitor family proteins in human serum, characterized by chain-specific antibodies.

The inter-alpha-inhibitor (I alpha I) family encompasses four plasma proteins, namely free bikunin as well as I alpha I, pre-alpha-inhibitor (P alpha I) and inter-alpha-like inhibitor (I alpha LI). Each of the last three proteins is a distinct assembly of one bikunin chain with one or two out of three distinct, heavy (H) chains designated H1, H2 and H3. I alpha I is made of [H1 + H2 + bikunin], P alpha I is made of [H3 + bikunin] and I alpha LI is made of [H2 + bikunin]. We characterized various I alpha I family-related antisera/antibodies, including a reagent recognizing bikunin, another directed against the four H1, H2, H3 and bikunin chains, and a third one directed against both H1 and H2 chains. By a simplified absorption procedure of the latter two antisera onto solid-phase immunoadsorbents made with i) purified I alpha I, or ii) a recombinant H1 polypeptide, we also obtained specific anti-H3 or anti-H2 antibodies, respectively. This series of new antibodies was used to identify each component within the pattern of bands corresponding to I alpha I family in human serum, as separated by SDS-PAGE and western blotting.

Alpha-Globulins↗

Partial hepatectomy and mediators of inflammation decrease the expression of liver alpha 2-HS glycoprotein gene in rats.

Liver mRNA levels of two acute phase reactant (APR) proteins, alpha 2-HS glycoprotein (a major negative APR) and alpha 1-acid glycoprotein (a major positive APR) were measured in male rats at different times after the administration of turpentine, of tumor necrosis factor, or following partial hepatectomy. In every case, a marked decrease in mRNA levels of alpha 2-HS glycoprotein was observed which reached a maximum at 24 h. A concomitant increase of alpha 1-acid glycoprotein mRNA levels was observed under the same conditions. These results indicate that the decreased levels of alpha 2-HS glycoprotein induced by the acute-phase response following inflammatory mediators and partial hepatectomy are due to a down-regulation of the gene expression of this protein in rat liver.

Animals↗

Acute-phase-response induction in rat hepatocytes co-cultured with rat liver epithelial cells.

The response of rat hepatocytes co-cultured with rat liver epithelial cells to conditioned medium (CM) from lipopolysaccharide (LPS)-activated monocytes was investigated by measuring the concentration of alpha 2-macroglobulin (alpha 2M), alpha 1-acid glycoprotein (AGP), albumin and transferrin, as well as the changes in glycosylation of alpha 1-acid glycoprotein. During an initial 8-day treatment with CM, concentrations of alpha 2M and AGP increased markedly over those of control culture, whereas concentrations of albumin and transferrin decreased. The glycosylation pattern of AGP indicated an important relative increase of the concanavalin A-strongly-reactive (SR) variant upon treatment. When CM addition to hepatocyte culture medium was stopped, the concentrations of the four proteins and the glycosylation pattern of AGP reverted to those of control cultures. Further addition (on day 15) to cultures of CM increased the concentration of alpha 2M and decreased albumin and transferrin concentrations. Although AGP concentrations did not increase above those of controls, the appearance of the SR variant was again stimulated by CM. These results show that, in co-culture, rat hepatocytes remain able to respond to repeated inflammatory stimuli.

Albumins↗

Expression of complement alternative pathway proteins by endothelial cells. Differential regulation by interleukin 1 and glucocorticoids.

We have studied the secretion of proteins of the alternative pathway of complement C3, factor B and factor H by human umbilical vein endothelial cells (HUVEC). Results showed that factor H and factor B are quantitatively secreted in abundance whereas C3 could only be detected when the cells are maintained in culture during long periods of time. Interferon-gamma stimulated factor H, factor B and, to a lesser extent, C3 secretions. Interleukin (IL) 1 had a differential effect on spontaneous C3, factor B and factor H secretions. In the presence of IL 1, there was a significant secretion of C3 occurring within a short period of culture. IL 1 also stimulated factor B secretion. There was a synergistic stimulating effect between IL 1 and interferon-gamma to bring C3 and factor B productions by HUVEC to very high levels. In contrast, factor H secretion was consistently inhibited by IL 1. Local increase in C3 and factor B secretions by endothelial cells in the presence of IL 1 may have important implications in the inflammatory reaction. In striking contrast, the glucocorticoid dexamethasone (DXM) had modulatory effects which are consistent with its anti-inflammatory properties. DXM, at therapeutic concentrations, decreased C3 and factor B secretions and increased factor H secretion. Local modulation of complement protein secretion by DXM appears to be a new mechanism by which this glucocorticoid may control inflammation.

Complement C3b Inactivator Proteins↗

[Study of the complement system. General principles and perspectives].

Measurement of complement in clinical medicine is traditionally based on the determination of CH50 and immunochemical and/or functional measurement of complement proteins C1q, factor B, C3 and C4. The interpretation of these measurements, as far as complement activation is concerned, can however be difficult as these tests do not allow to discriminate between consumption due to activation, hereditary deficiency, increased rate of synthesis or even hyposynthesis. This explains why their use as markers of evolutivity in diseases where complement activation is occurring has given variable results. New tests for complement activation have been more recently introduced. These are mainly the measurements of the anaphytotoxins, the degradation products of C3 and the membrane attack complex. As these tests reflect more directly complement activation, they may be more reliable markers. The immunochemical and functional measurements of C1-inhibitor are of special interest as they are the tests which allow definitive diagnosis of the hereditary angio-oedema. General principles for the interpretation of the different tests used to evaluate the complement system are presented and discussed.

Anaphylatoxins↗

An enzyme-linked immunoassay for the measurement of rat alpha 1-acid glycoprotein synthesized by cultured hepatocytes.

We have developed a sandwich ELISA to quantify rat alpha 1-acid glycoprotein (AGP). The assay correlated well with RID and the minimum detectable concentration was 1 microgram/l. The assay permits high sensitivity determinations of the rate of synthesis of AGP in vitro. The maximum mean rates observed were 1500 and 1800 ng/24 h/10(6) cells for hepatocytes cultured alone and co-cultured hepatocytes respectively and 39 ng/h/10(6) cells for isolated hepatocytes.

Animals↗

Human inter-alpha-trypsin inhibitor. Synthesis and maturation in hepatoma HepG2 cells.

In hepatoma HepG2 cells, human inter-alpha-trypsin inhibitor (ITI) was synthesized as three heavy chains, H-1 (100 kDa), H-2 (110 kDa) and H-3 (113 kDa), and light hybrid chain (49.5 kDa) composed of alpha 1-microglobulin and HI-30 (ITI derivative, human inhibitor of 30 kDa). The association of at least two heavy chains, H-1 and H-3, with the HI-30 part of the light chain gave rise to a molecule similar to serum ITI. A composite protein (approximately 250 kDa) including heavy and light chains was also secreted, while alpha 1-microglobulin and ITI H-2 protein were released as separate entities. Light chain synthesis could be the limiting factor for ITI maturation.

Alpha-Globulins↗

Changes in rat liver mRNA for alpha-1-acid-glycoprotein, apolipoprotein E, apolipoprotein B and beta-actin after mouse recombinant tumor necrosis factor injection.

Hybridization studies using specific cDNA probes have been used to determine the specific mRNA levels for apolipoproteins B and E, alpha 1 acid glycoprotein and beta actin in extracts of rat liver. Injection of rats with recombinant mouse tumor necrosis factor had led to a rapid increase in liver mRNA levels for alpha 1 acid glycoprotein (x 12) and for beta actin (x 2.5) whereas mRNA levels for Apolipoprotein B and E remained stable over the same period.

Actins↗