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Biomedical subjects

J Cinqualbre

Publications and source records attributed to J Cinqualbre.

At least 19 recordsLinked to original sources

A surgical solution to extrahepatic portal thrombosis and portal cavernoma: the splanchnic-intrahepatic portal bypass.

Three cases of prehepatic portal vein thrombosis, complicated by the clinical manifestations of portal hypertension, were successfully treated by surgically created splanchnic-intrahepatic portal bypass. Two out of three patients had been previously submitted to liver transplantation. No significant morbidity was observed and long-term Doppler evaluations proved the patency of the venous grafts. Together with the technical aspects of the procedures, the possible role of this technique, primarily proposed by De Ville de Goyet in 1992, is discussed in relation to the available therapies for the extrahepatic portal vein thrombosis.

Adolescent↗

Influence of pre-, intra- and post-operative parameters of donor liver on the outcome of isolated human hepatocytes.

The aim of the present study was to analyse, retrospectively on a large panel of patients (149), the influence of the donor liver characteristics on the outcome of human hepatocyte isolation obtained from resected liver biopsies from surgical waste after hepatectomy. Among the pre-operative parameters, the type of disease, age and sex of the patient, previous chemotherapy, alcohol or tobacco consumption did not affect the yield, viability, attachment rate and function of the isolated human hepatocytes. Pre-operative biological and anatomopathological data indicated that, while mild steatosis (</=10% steatotic hepatocytes) did also not affect the outcome of hepatocyte isolation, stronger steatosis (>10% steatotic hepatocytes) tended to decrease hepatocyte yield. Cholestasis, as assessed by gamma-glutamyl transferase serum values, significantly negatively correlated with the percentage of digested liver and the yield of viable cells. Intra-operative clamping time, that is, warm ischaemia, longer than 30 min was found to decrease both the percentage of digested liver and cell yield. Among the post-operative parameters, the percentage of digested liver decreased when biopsy weights were higher than 100 g, the use of glue tended to increase both the percentage of digested tissue and the yield of viable cells.In conclusion, human diseased livers appear to be a valuable source of isolated functional human hepatocytes. We recommend, for an optimal isolation, to use liver biopsies weighing less than 100 g, to glue the section surfaces of the biopsies and to avoid the use of moderate steatotic livers (>10% steatotic hepatocytes) and cholestatic livers, as well as livers undergoing warm ischaemia or clamping during resection due to the decrease in cell yield.

Journal Article↗

Comparative evaluation of Celsior solution versus Viaspan in a pig liver transplantation model.

BACKGROUND: In a pig liver transplantation model, we compared the effects of Celsior solution (CS), an extracellular preservation solution, with Viaspan (University of Wisconsin solution, UW) on graft function and animal survival. METHODS: Pig livers were flushed with either CS or UW solution and cold-stored for 12 hr (group 1) or for 8 to 10 hr (group 2). Grafts were transplanted orthotopically. Intrahepatic reduced and oxidized glutathione and adenine nucleotides were evaluated 1 hr after reperfusion. Liver function of transplanted animals was monitored for up to 6 days by serum transaminases, total bilirubin, purine nucleoside phosphorylase, and prothrombin levels. RESULTS: In group 1, all animals died within 24 hr after reperfusion regardless of the preservation solution used. In group 2, no significant difference was seen in survival between the CS (72%) and the UW (67%) groups 6 days after transplantation, and there were no statistically significant differences in the biochemical data. There were no differences in histological evaluation of the livers at the time of death or killing of the animals between the CS and UW groups. CONCLUSION: Within the limits of this pilot study, CS is equivalent to UW in terms of graft function and animal survival.

Adenosine↗

Removal of primate xenoreactive natural antibodies by extracorporeal perfusion of pig kidneys and livers.

Organ perfusion is one of the possible strategies to attenuate rejection of discordant xenografts by reducing the levels of the recipient's xenoreactive natural antibodies (XNA). Its efficacy in terms of XNA removal was studied in models of primate blood or plasma perfusion through porcine kidneys or livers, with special attention to haematological consequences and potential side-effects. We first perfused the blood of rhesus monkeys through pig kidneys and livers, and demonstrated that the perfusion of a pig liver resulted in higher XNA adsorption (72 +/- 13%) than the perfusion of a pig kidney (51 +/- 25%). However, when we normalized for the weight of the perfused organs and for levels of natural antibodies in individual monkeys, livers adsorbed less antibody (1.4 +/- 0.9 U antibody/g) than kidneys (7.2 +/- 7 U antibody/g). Histological signs of rejection were observed in perfused kidneys, but not in perfused livers. A major drawback of the perfusion of blood through livers was a considerable decrease in the primates' haemoglobin and platelet levels. To avoid this, we developed a plasma liver perfusion device. This method allowed a significant improvement in the haemodynamic state of primates and was particularly effective in preventing anaemia. Moreover, plasma liver perfusion was as effective as blood liver perfusion to remove natural antibodies and, resulted in a marked decrease in their functional activity as assessed by complement-dependent cytotoxicity (CDC) and antibody-dependent cell-mediated cytotoxicity (ADCC). The level of other plasma proteins was not significantly affected, apart from a dilution effect. After xenoperfusion a strong antibody response was evidenced by ELISA, CDC and ADCC between days 7 and 14 and then decreased progressively. We conclude that the separation of blood to allow the perfusion of plasma through a pig organ is safer than the perfusion of unseparated blood and is associated with efficient natural antibody removal. However, organ perfusion is limited by a rebound in antibody levels after a few days, and thus will have to be associated with anti-B cell immunosuppressive therapy for long-term or repeated applications.

Animals↗

Comparative study of target antigens for primate xenoreactive natural antibodies in pig and rat endothelial cells.

BACKGROUND: A rat-to-primate cardiac xenograft model has been proposed as an alternative to the clinically relevant but more cumbersome pig-to-primate model for assessing the efficacy of strategies aimed at preventing xenograft hyperacute rejection. As in pig xenografts, the rejection of rat hearts was mediated by the binding of xenoreactive natural antibodies (XNA) and complement activation. The present study was conducted to identify target antigens recognized by cynomolgus and rhesus monkey IgM XNA on rat tissues and cells in comparison with pig cells. METHODS: The reactivity of rhesus or cynomolgus serum on pig and rat endothelial cells (ECs) was studied by flow cytometry, ELISA, and complement-dependent cytotoxicity, after removal of primate XNA by perfusion of pig livers, immunoadsorption on a Gal alpha(1,3)Gal affinity column, and enzymatic removal of alpha-galactosyl epitopes from the cell surface. Rat and pig EC extracts were also immunoprecipitated with primate serum and resolved in sodium dodecyl sulfate-polyacrylamide gel electrophoresis. The expression of the Gal alpha(1,3)Gal epitope was analyzed on rat tissues and ECs by immunohistochemistry, flow cytometry, and Western blot, using the isolectin B4 from Griffonia simplicifolia. RESULTS: Removal of primate XNA or of alphaGal epitopes resulted in a decrease in XNA binding to pig and rat cells, leaving a similar degree of residual reactivity in the two species. At least five proteins of 260, 210, 110, 56, and 50 kDa were immunoprecipitated on rat ECs, with molecular weight similar to several proteins identified on pig ECs. These results suggest that primate XNA recognize similar antigens on rat and pig ECs. Rat cells expressed lower levels of the Gal alpha(1,3)Gal epitope than pig cells. A large proportion, but not all, of primate XNA react with this epitope on pig and rat ECs. CONCLUSION: This study suggests that the rat is a valuable species for the evaluation of genetic engineering strategies on the vascular endothelium aimed at preventing hyperacute xenograft rejection.

Animals↗

In vivo and in vitro optimization of depletion of IgM and IgG xenoantibodies by immunoadsorption using cell membrane proteins.

A system of immunoadsorption was developed for in vitro depletion of xenoreactive natural antibodies of classes IgG and IgM from monkey and human plasma. Porcine endothelial cell membrane proteins, platelet membrane proteins, and endothelial cells were used as affinity ligands, and cyanogen bromide-activated Sepharose 6 Fast Flow and Sepharose CL-4B gels were used for chromatography. Adsorption capacity was evaluated by means of ELISA, immunonephelometry, and cytotoxicity testing. Several consecutive adsorption-desorption cycles were performed. Different parameters influencing immunoadsorption were examined: ligand density on the column gel, adsorbent-plasma contact time, ratio of plasma volume to immunoadsorbent volume, desorption conditions, and temperature. After 2 adsorption-desorption cycles, 99% and 82 to 85% of IgG and IgM antipig antibodies were adsorbed, respectively. Furthermore, there was a 74 to 77% decrease in cytotoxicity. In vivo, we observed that after one adsorption-desorption cycle, 97% of antipig IgG antibodies and 96% of antipig IgM antibodies were adsorbed, and there was an 85% decrease in cytotoxicity. The immunoadsorption method studied and optimized in vitro and in vivo therefore efficiently depleted xenoantibodies and reduced the cytotoxicity. Thus, it can be used in xenotransplantation experiments without eliminating non-specific antibodies.

Adsorption↗

[An original case of simultaneous cardiac, pancreatic and renal transplantation. Results over 6 years].

Combined transplantation is actually performed on specific and rare indications. We are presenting here the results of a combined heart-kidney and pancreatic graft. It was performed in a patient presenting an idiopathic cardiomyopathy in end-stage failure and a post-diabetic nephropathy on dialysis. Today, organs function is quite satisfactory with a 6 year follow-up. Only one isolated heart rejection episode was observed at the 15th post-operative day. The patient has recovered a full-time professional activity at one year. This successful graft was obtained by an "homogeneous multiorgan approach" during all the pre-peri and postoperative time.

Adult↗

Assessment of hyperacute rejection in a rat-to-primate cardiac xenograft model.

We studied a rat-to-cynomolgous monkey model for xenotransplantation of vascularized organs and found that a rat heart was rejected in 5.5 +/- 1.4 min (n = 10). This hyperacute rejection (HAR) was consistent with kinetic experiments in vitro that showed damage to rat endothelial cells (ECs) after 3 min of incubation with primate serum. Histopathology and ultrastructural analysis of rejected hearts showed marked EC damage and early adherence of platelets and polymorphonuclear leukocytes to the endothelium. Immunohistochemical analysis revealed deposition along endothelial surfaces of IgG, IgM, and complement (C) components of the classical but not the alternative pathway, suggesting that, as in the pig-to-primate model, HAR is mediated by the binding of recipient xenogeneic natural antibodies and C activation. The effect of C depletion on xenograft survival was evaluated in two recipients that were treated with cobra venom factor (CVF). CVF caused complete C inactivation, demonstrated by lack of serum hemolytic activity and C-dependent EC cytotoxicity at engraftment and until the animals died. The rat cardiac transplants survived for at least 9 hr and 77 hr. Histology showed massive interstitial hemorrhage, edema, and cellular infiltration with scanty fibrin deposits. These results in CVF-treated recipient monkeys indicate that C activation mediates the development of HAR in this rat-to-primate model. We suggest that the model may be of interest as an alternative to the more expensive and time-consuming pig-to-primate model for testing the efficacy of transgenic modification of donor organs to prolong xenograft survival and for studying mechanisms of discordant xenograft rejection.

Animals↗