PubMed Health⌕ Search

Biomedical subjects

Y Calmus

Publications and source records attributed to Y Calmus.

At least 91 records · Page 5Linked to original sources

Immunogenicity of rat hepatocytes in vivo: effect of cholestasis-induced changes in major histocompatibility complex expression.

Hepatocytes normally express few major histocompatibility complex (MHC) class I and no MHC class II molecules, a phenomenon which could explain their low immunogenicity. However, in pathological situations, such as allograft rejection and cholestasis, hepatocytes strongly express MHC class I molecules and their immunogenicity could be different. The aim of this study was to assess the role of MHC expression on the immunogenicity of hepatocytes in vivo. Hepatocytes were obtained from normal and cholestatic DA rats by whole-liver perfusion with EDTA. Cholestasis was induced by ligation-section of the common bile duct. MHC expression on hepatocytes was assessed by cytofluorimetry after labelling with monoclonal antibodies against MHC class I and class II antigens. The percentage of hepatocytes expressing MHC class I was 9.8 +/- 2.2% in normal rats and 77.2 +/- 3.3% in cholestatic rats (P = 2 x 10(-4)); MHC class II expression was present on 1 +/- 0.5% of normal hepatocytes and 0.4% +/- 0.1% of cholestatic hepatocytes (P > 0.05). Lewis rats received a DA or Wistar-Furth heart allograft 7 days after intravenous injection of 2 x 10(7) hepatocytes from normal or cholestatic DA rats. The DA heart allograft was rejected in 6.3 +/- 0.4 days in Lewis controls, 8.8 +/- 1.1 days (N.S.) in Lewis recipients that received normal DA hepatocytes and 17.6 +/- 3.0 days (P = 2 x 10(-4)) in Lewis recipients that received hepatocytes from cholestatic DA rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Augmented portal flow in the isolated perfused cirrhotic rat liver: a haemodynamic and morphological study.

1. Isolated perfused cirrhotic rat livers were used to study the effects of an increase in portal perfusion pressure and portal flow on the microcirculation and viability of the hepatocytes. Cirrhosis was induced by CCl4, and Krebs-Ringer bicarbonate buffer solution was used as the perfusate. Portal perfusion pressures were increased incrementally between 25 and 45 cm H2O. The viability of the livers was assessed and histological studies were performed under light and electron microscopy. 2. An increase in portal perfusion pressure induced an increase in hepatic flow in all the experiments (P < 0.05). Hepatic flow was 2.52 ml min-1g-1 of liver (SD 0.67; n = 5) at basal pressure compared with 4.19 ml min-1g-1 of liver (SD 0.93; n = 5) and 5.91 ml min-1g-1 of liver (SD 0.63; n = 5) when pressures were raised to 25 and 45 cmH2O, respectively. Portal perfusion pressure and hepatic flow were correlated (r = 0.908; P < 0.001; n = 30). 3. Production of the enzyme alanine aminotransferase (EC 2.6.1.2) increased significantly from 5.69i.u. ml-1min g-1 of liver (SD 3.62; n = 5) to 23.53i.u. ml-1min g-1 of liver (SD 16.7; n = 5) when the perfusion pressure was raised from baseline to 30 cmH2O. In all the cases the porto-caval gradient of enzyme production was within the normal range. No correlation existed between the release of enzyme and portal perfusion pressures.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Target antigens of hyperacute xenogeneic rejection in the rat to guinea pig to rat discordant combinations.

The increasing shortage in allografts has led to a renewed interest in xenogeneic transplantation. Discordant combinations are characterized by hyperacute rejection partly due to the presence of natural antixenogeneic antibodies in the recipient. The aim of this work was to characterize the target antigens, using 2 discordant models. In the rat into guinea pig model, analysis of organ homogenates by immunoblotting revealed numerous bands. Some of these bands were organ specific, whereas others, namely in the 55-kDa region, were detected in liver, heart, lung, and kidney. Using membrane extracts of liver cells or of aortic endothelial cells, only bands of 55 kDa were revealed. No band could be seen using extracts of isolated hepatocytes. Two bands of 55 kDa disappeared after preabsorption of guinea pig sera on the various rat tissue homogenates, suggesting that they represent xenoantigens common to these tissues. In order to investigate the in vivo relevance of these 55-kDa antigens, isolated rat livers were perfused with decomplemented guinea pig sera. Eluates revealed one single print of 55 kDa on rat tissue homogenates. Finally, preincubation of rat mononuclear cells with various xenogeneic sera did not inhibit the binding of mAb specific for rat class I or class II MHC antigens, suggesting that the latter are not recognized by natural xenoantibodies. In the guinea pig to rat model, the antigens detected had a molecular mass ranging from 95 to 110 kDa. Absorption and perfusion experiments also showed that these antigens were common to various tissues and involved in the binding of rat natural antibodies ex vivo. In conclusion, our results indicate that rat xenoantigens of about 55 kDa are recognized by guinea pig natural antibodies, while guinea pig xenoantigens of 95-110 kDa are bound by rat natural antibodies. These antigens are common to liver, heart, lung, and kidney, are borne by endothelial cells, and cannot be found on hepatocytes.

Acute Disease↗

[Evolution of delta bilirubin/conjugated bilirubins ratio in serum after live transplantation].

Serum delta-bilirubin measured in relationship to total bilirubin could be a liver function test in hepatobiliary diseases and even a marker of early rejection after liver transplantation. Delta-bilirubin bound to albumin constitutes with mono and diglucuroconjugates, conjugated bilirubins. We determined the delta-bilirubin/conjugated bilirubins ratio and studied its value in various complications in 16 liver recipients. The results were compared with alanine aminotransferase activity and prothrombin index. Hyperbilirubinemia and a delta-bilirubin/conjugated bilirubins ratio lower than 40% were observed initially. After 15 days, the delta-bilirubin/conjugated bilirubins ratio evolved differently according to the functional state of the graft, which allowed to distinguish three patient groups: in patients with good graft function, the ratio increased regularly to reach 65% or more on the 30th day; in patients with dysfunctional episodes, the ratio was always less than or equal to 40% and did not increase after the 15th day; in other patients, the ratio was lower than 40% and dropped suddenly before death. After liver transplantation, the delta-bilirubin/conjugated bilirubins ratio may be a simple liver function marker. Alone, however, it cannot be used to assess acute rejection.

Adult↗

[Superacute xenogenic rejection: attempted treatment with anti-idiotypic antibodies].

Heart xenotransplantation in the guinea-pig to rat model, a highly discordant combination, is invariably followed by a hyperacute rejection of the graft. Preformed IgMs were shown to be responsible for the destruction of the graft by stimulating the complement cascade. We tried to inhibit preformed antibodies, before transplantation, by inducing anti-idiotypic antibodies using autologous Fab' mu specific for guinea-pig endothelial cells. This treatment seems to exert a neutralizing effect on xenogeneic hyperimmunization, against guinea-pig endothelial cells but not against preformed anti-guinea-pig antibodies.

Acute Disease↗

Differential effects of chenodeoxycholic and ursodeoxycholic acids on interleukin 1, interleukin 6 and tumor necrosis factor-alpha production by monocytes.

Cell-mediated immunity and macrophage activity, especially that of Kupffer cells, are impaired during cholestasis. Some evidence exists that bile acids play a role in these immune defects. The purpose of this study was to evaluate the effects of individual bile acids on immunity and to determine whether monocytes could be a target. We assessed the effects of chenodeoxycholic acid, an endogenous bile acid, ursodeoxycholic acid, which has been shown to partially correct the immunological abnormalities observed in primary biliary cirrhosis, and their tauroconjugates on the production of interleukin-1, interleukin-6 and tumor necrosis factor-alpha. Chenodeoxycholic acid had a dose-dependent inhibitory effect on interleukin-1 (inhibitory concentration 50% = 60 mumol/L), interleukin-6 (inhibitory concentration 50% = 80 mumol/L) and tumor necrosis factor-alpha (inhibitory concentration 50% = 80 mumol/L) production; inhibition was almost complete at 250 mumol/L. In contrast, ursodeoxycholic acid had lesser or minimal inhibitory effects (inhibitory concentration 50% = 100 mumol/L for interleukin-1 and above 200 mumol/L for interleukin-6 and tumor necrosis factor-alpha). The inhibitory effects of taurochenodeoxy-cholic acid and tauroursodeoxycholic acid were similar to those of chenodeoxycholic acid and ursodeoxycholic acid, respectively. Ursodeoxycholic acid did not reverse the chenodeoxycholic acid-induced inhibition of interleukin-6 or tumor necrosis factor-alpha production. In conclusion, chenodeoxycholic acid exerts strong inhibitory effects on monocyte activity in vitro, whereas the effects of ursodeoxycholic acid are minor.

Cell Survival↗

Immunosuppressive properties of chenodeoxycholic and ursodeoxycholic acids in the mouse.

Cell-mediated immunity is impaired during cholestasis, and there is evidence that bile acids play a role in this immune defect. Ursodeoxycholic acid (UDCA), which corrects the immunological abnormalities observed in primary biliary cirrhosis, could counter the detrimental effects of the endogenous bile acids. Accordingly, we assessed the respective effects of cholestasis, chenodeoxycholic acid (CDCA), and UDCA, using mixed lymphocyte culture as a model of allogeneic immune response. CDCA induced a dose-dependent inhibition of the proliferative response (0-150 mumol/L). Mononuclear cells obtained from bile duct-ligated mice had a normal immunostimulatory effect, whereas responder cells obtained from such animals showed a profoundly impaired proliferative response, suggesting that responder T cels are the main target of the cholestasis-induced immune defect. Supplementation of cultures with exogenous interleukins partially compensated for the inhibitory effect of 25 mumol/L CDCA, but not for that of 50 mumol/L CDCA, suggesting that impaired secretion of interleukins is not the only factor involved in the effect of bile acids. In contrast to CDCA, UDCA had no inhibitory effect on the allogenic immune response at concentrations of up to 50 mumol/L.

Animals↗

The role of natural IgM in the hyperacute rejection of discordant heart xenografts.

The mechanism of xenograft hyperacute rejection in discordant species combinations remains controversial. The purpose of this work was to study the role of natural antibodies in the hyperacute rejection of guinea pig hearts transplanted into rats, a highly discordant combination. This study was conducted in vitro, ex vivo, and in vivo. The endothelial cells of the graft being the first targets damaged in the process of hyperacute rejection, the binding of rat natural antibodies to guinea pig endothelial cells was studied by immunofluorescence. The study was carried out in vitro on guinea pig endothelial cells in culture, and ex vivo on isolated guinea pig hearts perfused with either rat serum or immunoglobulins or immunoglobulin fragments bearing the antigen-binding site. In vitro and ex vivo, rat natural IgM were found to bind specifically to guinea pig endothelial cells, since IgM fragments bearing the antigen-binding site (Fab mu and Fab' mu) could be detected on these cells. IgM fragments were able to inhibit the fixation of native IgM molecules. In contrast, rat IgG only bound to endothelial cells through Fc portions. Thus rat natural IgM might play a role in hyperacute rejection by binding to the graft endothelial cells and triggering the complement cascade activation. In order to test the role of natural IgM in vivo, isolated guinea pig hearts were first perfused with rat Fab' mu, which inhibit the binding of IgM and are unable to activate the complement cascade. These hearts were then transplanted into Lewis rats. The rejection time of Fab' mu-perfused guinea pig hearts was prolonged compared with hearts perfused with buffer or IgG F(ab')2. Therefore, in the guinea pig to rat combination, preventing the binding of the recipient's natural IgM to the graft endothelium delays the hyperacute rejection. In addition, natural IgM are likely to play a greater role than natural IgG.

Animals↗

[Cytomegalovirus infections in patients after liver transplantation: determination of risk groups].

The goal of this study was to identify high-risk groups for cytomegalovirus infection after liver transplantation. Sixty-one patients were evaluated. Twenty-five patients (41 percent) had infection. Among the 16 patients who were seronegative for the virus before transplantation, 11 received a liver graft and blood products from seronegative donors and none of them developed infection. All seronegative recipients of a liver from seropositive donors (5/5) developed primary infection. Among the 45 patients seropositive before transplantation, 20 developed a cytomegalovirus infection, whatever the donor serologic status. The incidence of symptomatic reactivation or reinfection was high (14/20), and, for 12/14 of them, associated with early acute rejection. Two high-risk groups of patients, eligible for cytomegalovirus prophylaxis, were identified: seronegative recipients of seropositive donors and seropositive recipients with early acute rejection.

Adolescent↗

Cholestasis induces major histocompatibility complex class I expression in hepatocytes.

The hepatic expression of major histocompatibility complex (MHC) antigens is normally limited. However, aberrant expression occurs in cholestatic diseases such as primary biliary cirrhosis. The aim of this work was to assess the effect of cholestasis itself on hepatocyte MHC expression and to determine if immunosuppressive drugs might modulate this expression. Liver fragments taken from six patients with extrahepatic cholestasis and eight control patients were analyzed for MHC expression by direct immunofluorescence. MHC class I expression by hepatocytes was present in six of six cholestatic patients and zero of eight control subjects. Hepatocytes did not express MHC class II in either group. In further studies, cholestasis was induced in rats by ligation-section of the bile duct. Five groups of rats were studied: control, 3-day cholestasis, 5-day cholestasis, 5-day cholestasis plus cyclosporine, and 5-day cholestasis plus corticosteroids. Hepatocyte MHC class I expression was detected by immunofluorescence in bile duct-ligated rats but not in control animals. Flow-cytofluorimetric analysis of isolated hepatocytes showed that the percentage of hepatocytes expressing MHC class I increased from day 0 (9.9%) to days 3 (50.2%) and 5 (82.9%); this hyperexpression was not modified by cyclosporine (79.7%) or corticosteroids (77.9%). The percentage of hepatocytes spontaneously expressing MHC class II was low (0.05%) and was not significantly modified by cholestasis or immunosuppressive drugs. Thus, a nonimmunological factor such as cholestasis is able to modulate MHC expression. The liver may become more vulnerable to immune destruction in the presence of cholestasis, and immunosuppressive treatment has no effect on this phenomenon.

Aged↗

Experimental reduction of portal hypertension by mechanical increase of liver portal flow.

Studies on the isolated perfused rat liver demonstrated that an increase in portal pressure is associated with an increase in the portal blood flow in normal and in cirrhotic livers. In two pigs with portal hypertension mesenteric portal pressure was lowered by mechanically increasing the liver portal blood flow by means of a balloon pump around the portal vein.

Animals↗