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Biomedical subjects

P J Tuso

Publications and source records attributed to P J Tuso.

17 recordsLinked to original sources

The use of a pig liver xenograft for temporary support of a patient with fulminant hepatic failure.

A 26-year-old female patient with fulminant hepatic failure and a history of autoimmune hepatitis was heterotopically transplanted with a pig hepatic xenograft to provide temporary metabolic support prior to transplantation with a human donor organ. Circulating natural antipig antibodies were removed prior to transplantation by plasmapheresis and ex vivo en bloc perfusion of the donor pig kidneys. The liver xenograft functioned after transplantation as measured by active bile production, stabilization of prothrombin levels, and reduction in the circulating levels of lactic acid and the enzymes AST and ALT. Despite the removal of greater than 90% of the recipient's natural xenoantibodies prior to transplantation, the levels of antibody rapidly returned and were associated with antibody and complement-mediated rejection of the donor graft. Immunohistochemical evidence of graft rejection could be detected by the deposition of antibody, complement components including properdin, and endothelial swelling as early as 3 hr posttransplantation. These lesions progressed in severity and were accompanied by evidence of thrombosis and ischemic necrosis of the liver xenograft by 34 hrs posttransplantation. The main portal vein, hepatic artery, and vena cava were patent. The placement of the liver graft did not result in any improvement in the neurological status of the patient and she died 34 hr after xenografting due to irreversible brain damage. The information derived from this case has renewed interest in the clinical use of bioartificial devices and whole organ perfusion using xenogeneic tissue for temporary bridging of patients prior to allografting.

Adult↗

Differential patterns of reaction of human natural antibodies to pig hepatocytes and vascular endothelium.

We have recently conducted a series of experiments to characterize the pattern of reaction of human natural antibodies (NA) with individual pig liver cells. Pooled normal human serum (PHS) was incubated with cultured pig hepatocytes (HEP), aortic endothelial cells (AEC), and portal endothelial cells (PEC), and the reaction of NA to different cell types was measured by antibody-mediated cytotoxic (MTT assay), antibody binding (ELISA), and flow cytometric analysis. The human NA displayed a differential pattern of binding with hepatocytes exhibiting a more limited expression of xenoantigen expression than either aortic or portal endothelial cells. These differences in reaction patterns were also noted for Western blot analysis of individual cell membrane extracts. Preincubation of the pig cells with anti-pig MHC antibodies did not inhibit the binding of human IgM natural antibodies to the pig cells. Comparison of the pattern of NA absorption following the use of bioartificial liver support in patients with acute hepatic failure demonstrated limited ability of pig hepatocytes to absorb substantial amounts of NA. These studies indicate that pig hepatocytes are less vulnerable to NA cytotoxicity than pig vascular endothelial cells and that pig vascular endothelial cells express xenoantigens that are unique and not found on hepatocytes.

Animals↗

Protective effect of the lazaroid U74006F in cold ischemia-reperfusion injury of the liver.

Lipid peroxidation may play a major role in the loss of liver graft viability after prolonged cold ischemia and reperfusion injury. The lazaroid compound U74006F is a potent inhibitor of lipid peroxidation, and this study was designed to evaluate the efficacy of this compound in preventing cold ischemia-reperfusion damage in three different models: pig endothelial cells in culture, ex vivo isolated pig liver perfusion and orthotopic transplantation of syngeneic rat livers. The addition of U74006F to University of Wisconsin preservation solution significantly prolonged endothelial cell viability after 48 and 72 hr of cold ischemia and reoxygenation (p < 0.01). Donor pigs were injected with vehicle or U74006F (4.5 mg/kg) before liver harvest. After 24 hr of cold storage in University of Wisconsin solution, the livers were perfused with pig blood for 180 min in an isolation chamber. Measurements of liver function parameters, including AST, ALT, bile production, superoxide anion and phospholipase A2 release, were assessed every 60 min. Although bile production was similar in the U74006F-treated and control groups, significant decreases of AST and ALT levels (p < 0.01) in the perfusate of the livers from treated donors were observed. In addition, the U74006F group displayed significantly reduced release of superoxide anion and phospholipase A2 compared with these parameters in the untreated group (p < 0.05 and p < 0.01, respectively). In the last model, donor rats were treated with U74006F before harvest; the rat liver grafts were preserved in cold University of Wisconsin solution for 24 hr and then transplanted into recipient rats.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Removal of natural human xenoantibodies to pig vascular endothelium by perfusion of blood through pig kidneys and livers.

We have examined the nature of the binding of human xenoantibodies to pig liver and kidney vascular endothelium. Our results demonstrate that human serum contains IgM and IgG xenoantibodies that bind to pig vascular endothelium, and that the pattern of antibody binding is similar for both livers and kidneys. Immunohistochemical analysis of pig kidneys after perfusion with human blood demonstrated the binding of both IgM and IgG xenoantibodies, complement (C3), and fibrinogen to the vascular and glomerular endothelium. An ELISA assay of the perfusate after perfusion of 500 ml of human blood through a single pig kidney for 60 min demonstrated a significant reduction in the amount of human IgM (67%) and IgG (55%) binding to pig aortic endothelium. Similar perfusion experiments conducted with pig livers were associated with minimal immunohistochemical evidence of the binding of human xenoantibodies to liver vascular endothelium. Immunofluorescence staining for IgM, IgA, C3, and C1q was negative or minimally positive in the liver vascular endothelium. Sinusoidal endothelium were weakly positive for IgG and fibrinogen. The perfusion of the pig liver with human blood was, however, associated with a significant reduction in the subsequent binding of IgM and IgG to pig kidney vascular endothelium. Pig liver perfusion was also responsible for the removal of both IgM and IgG xenoantibodies capable of reacting with pig aortic endothelium, as measured by an ELISA assay of the perfusate. These results suggest that both pig kidney and livers are capable of absorbing the xenoantibodies that may be responsible for mediating a hyperacute rejection of pig xenografts and that the distribution of the target antigens for these antibodies is similar in the two organs.

Animals↗

Pig aortic endothelial cell antigens recognized by human IgM natural antibodies.

Human-to-pig xenoantibodies may constitute a major obstacle to the successful use of pigs as xenograft donors for human transplantation. Our studies demonstrate that normal human serum contains antibodies, primarily IgM, that are cytotoxic for pig aortic endothelial cells (PAECs). These antibodies bind to several antigens isolated from PAECs, lymphocytes, platelets, red blood cells, and the kidney. Absorption of human serum with pig lymphocytes removes the cytotoxic activity to PAECs and some, but not all, of the IgM antibodies capable of binding in an ELISA assay to the PAECs. The cytotoxic antibodies are inactivated by 2-mercaptoethanol, suggesting that they are primarily IgM. Whole cell extracts of PAEC, lymphocytes, platelets, red blood cells, and kidney were prepared and analyzed by Western blots to establish the cellular distribution of the xenoantigens that react with human IgM in pooled human serum. Results showed that several of the most intensely stained bands migrated between 24 and 66 kDa. High molecular weight bands (> 100 kDa) were observed only in kidney, platelet, and PAEC preparations. Human IgM xeniantibodies also reacted strongly in Western blots to endothelial cell membranes proteins with molecular weights of 62, 48, 42, 36, 34, 28, and 26 kDa. Absorption of human serum with pig lymphocytes removes IgM binding to all bands except for a 34-kDa Treatment of the PAEC membrane proteins with proteinase K disrupts the binding of the human IgM antibodies. Similar treatment with glycosidase F) resulted in a decrease in molecular weight of the 28- and 26-kDa bands, suggesting that these xenoantigens are glycoproteins and that antibody binding to some xenoantigens may not require glycosylation.

Animals↗

Renal magnesium wasting associated with acetaminophen abuse.

We report a case of magnesium deficiency associated with acetaminophen abuse. Metabolic studies showed that the patient's fractional excretion of magnesium was 12% when her serum magnesium level was 1.0 mg/dL. Renal biopsy demonstrated severe tubulointerstitial disease. The significant wasting of magnesium at a time when serum magnesium levels were depressed suggests renal magnesium wasting syndrome. This defect was temporally related to abuse of acetaminophen.

Acetaminophen↗

Renal failure associated with lymphoma in acquired immunodeficiency syndrome.

An unusual case of acute renal failure associated with lymphoma and acquired immunodeficiency syndrome (AIDS) is described. There was an impressive response to chemotherapy and parallel improvement in renal function. The rare occurrence of lymphoma-related renal failure in AIDS patients is presented as well as a review of the different ways AIDS and lymphoma can impair renal function.

Acquired Immunodeficiency Syndrome↗

Combination therapy with Brequinar sodium and cyclosporine synergistically prolongs hamster-to-rat cardia xenograft survival.

The accelerated rejection of hamster cardiac xenografts by Lewis rat recipients is due primarily to a humoral immune response. Traditional immunosuppressive agents, including cyclosporine, FK 506, and rapamycin, have not been effective in prolonging the rejection of xenografts in this model. We have recently examined the ability of the combination of cyclosporine and a new immunosuppressive agent, Brequinar sodium, to prevent the rejection of hamster xenografts. Prolongation of xenograft survival by treatment with Brequinar sodium alone (3 mg/kg/day) was minimally effective, with a median survival of 5.5 days. Conversely, a combination of Brequinar sodium (3 mg/kg/day) and cyclosporine (10 mg/kg/day), was associated with a significant prolongation of median graft survival (> 100 days). A quantitative analysis of the dose-effect relationship of Brequinar sodium and cyclosporine demonstrated a potent synergistic interaction for this combination therapy (combination index < 1). A sharp increase occurred in the binding of immunoglobulin M antibodies at day 4 after transplantation in the serum of untreated and cyclosporine-treated Lewis recipients of cardiac xenografts, whereas a clear decrease occurred in anti-hamster immunoglobulin M antibody production during this period of time in the animals treated by combined immunosuppression. Inhibition of anti-donor immunoglobulin M antibody production, as evaluated by the direct enzyme-linked immunosorbent assay and 3-[4,5-dimethylthiazol-2-yl]-2,5 diphenyltetrazolium bromide measurements, extended for more than 100 days after transplantation in the combination therapy group.(ABSTRACT TRUNCATED AT 250 WORDS)

Abdomen↗