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A J Demetris

Publications and source records attributed to A J Demetris.

At least 19 recordsLinked to original sources

Expression of Epstein-Barr virus-encoded small RNA (by the EBER-1 gene) in liver specimens from transplant recipients with post-transplantation lymphoproliferative disease.

BACKGROUND: Epstein-Barr virus (EBV)-associated post-transplantation lymphoproliferative disease (PTLD) develops in 1 to 10 percent of transplant recipients, in whom it can be treated by a reduction in the level of immunosuppression. We postulated that the tissue expression of the small RNA transcribed by the EBER-1 gene during latent EBV infection would identify patients at risk for PTLD. METHODS: We studied EBER-1 gene expression in liver specimens obtained from 24 patients 2 days to 22 months before the development of PTLD, using in situ hybridization with an oligonucleotide probe. Control specimens were obtained from 20 recipients of allografts with signs of injury due to organ retrieval, acute graft rejection, or viral hepatitis in whom PTLD had not developed 9 to 71 months after the biopsy. RESULTS: Of the 24 patients with PTLD, 17 (71 percent) had specimens in which 1 to 40 percent of mononuclear cells were positive for the EBER-1 gene. In addition, 10 of these 17 patients (59 percent) had specimens with histopathological changes suggestive of EBV hepatitis. In every case, EBER-1-positive cells were found within the lymphoproliferative lesions identified at autopsy. Only 2 of the 20 controls (10 percent) had specimens with EBER-1-positive cells (P < 0.001), and such cells were rare. CONCLUSIONS: EBER-1 gene expression in liver tissue precedes the occurrence of clinical and histologic PTLD. The possibility of identifying patients at risk by the method we describe here and preventing the occurrence of PTLD by a timely reduction of immunosuppression needs to be addressed by future prospective studies.

Adolescent

Systemic chimerism in human female recipients of male livers.

We have previously reported data from clinical and laboratory animal observations which suggest that organ tolerance after transplantation depends on a state of balanced lymphodendritic cell chimerism between the host and donor graft. We have sought further evidence to support this hypothesis by investigating HLA-mismatched liver allograft recipients. 9 of 9 female recipients of livers from male donors had chimerism in their allografts and extrahepatic tissues, according to in-situ hybridisation and molecular techniques 10 to 19 years posttransplantation. In 8 women with good graft function, evidence of the Y chromosome was found in the blood (6/8), skin (8/8), and lymph nodes (7/8). A ninth patient whose transplant failed after 12 years from recurrent chronic viral hepatitis had chimerism in her lymph nodes, skin, jejunum, and aorta at the time of retransplantation. Although cell migration is thought to take place after all types of transplantation, the large population of migratory cells in, and the extent of their seeding from, hepatic grafts may explain the privileged tolerogenicity of the liver compared with other organs.

ABO Blood-Group System

Two new human cholangiocarcinoma cell lines and their cytogenetics and responses to growth factors, hormones, cytokines or immunologic effector cells.

Two new human cholangiocarcinoma (CC) cell lines (CC-SW-I and CC-LP-I) were established and maintained in culture for 2 years. Histologically, both original liver tumors were adenocarcinomas, and the cell lines exhibited morphologic features of moderately differentiated adenocarcinoma. Immunohistochemistry showed that both cell lines were strongly positive for cytokeratin AEI but negative for carbohydrate tumor-associated antigen, CA19-9. Ultrastructural analysis of both cell lines showed the presence of tight junctional complexes and focally formed microvilli. Both CC cell lines were tumorigenic in nude mice. Cytogenetic analysis showed that both cell lines expressed highly aneuploid karyotypes with numerous structural and numerical deviations. CC-SW-I was hypodiploid with numerous chromosome losses and structural rearrangements, while CC-LP-I was hyperdiploid and displayed multiple additional chromosomes. Doubling times for the CC-SW-I and CC-LP-I cell lines in the presence of 15% fetal bovine serum were 72 hr and 180 hr, respectively. Growth of the CC-SW-I cell line was significantly stimulated in the presence of insulin, while that of the CC-LP-I cell line was significantly augmented by epidermal growth factor (EGF). In contrast, dexamethasone strongly inhibited proliferation of both cell lines in a dose-dependent manner. Among various recombinant cytokines examined for effects on growth or surface antigen expression on CC cell lines, only interleukin I-beta (ILI-beta) strongly inhibited growth of the CC-LP-I cell line, while interferons (IFNs) or tumor necrosis factor-alpha (TNF-alpha) were mildly inhibitory. Both tumor cell lines were resistant to natural killer (NK) cells but sensitive to lymphokine-activated killer (LAK) cells. Preincubation of tumor cells with IFN-gamma, IFN-alpha or TNF-alpha significantly decreased the susceptibility of each tumor cell line to lysis by LAK cells, and the change in sensitivity did not correlate with the expression of HLA antigens or intercellular adhesion molecule-I (ICAM-I) on the surface of tumor cells. These 2 CC cell lines are expected to provide valuable information about cell biology of human CC.

Adenocarcinoma

A clinicopathological study of human liver allograft recipients harboring preformed IgG lymphocytotoxic antibodies.

Twenty-six adult patients with preformed IgG donor lymphocytotoxic antibodies received primary liver allografts under FK 506 immunosuppression. The effect of the crossmatch-positive state on early graft function and on the immunopathological and histopathological findings was compared with that of 52 crossmatch-negative control recipients. The presensitized (crossmatch-positive) patients had prolongation of early graft dysfunction, underwent more clinically indicated biopsies and had a higher incidence of cellular rejection, both overall (p less than 0.05) and within 10 days of transplantation (p less than 0.01). They also had a higher incidence of graft failure in the first 180 days (p less than 0.01). Hyperacute rejection with necrotizing or neutrophilic arteritis was not seen in the crossmatch-positive grafts. However, histological findings associated with presensitization included platelet margination in central veins and sinusoids in biopsy specimens 60 to 90 min after graft revascularization. Later biopsy specimens had neutrophilic portal venulitis followed by cholangiolar proliferation, acute cholangiolitis and centrilobular hepatocyte swelling that mimicked preservation injury, endothelial activation of arteries with medial changes and relapsing episodes of acute cellular rejection. These clinicopathological observations suggest that lymphocytotoxic antibodies can have a deleterious effect on liver allograft function and survival, even if they do not precipitate immediate or hyperacute rejection.

Adult

Preformed lymphocytotoxic antibodies: the effects of class, titer and specificity on liver vs. heart allografts.

The effect on liver and heart allograft survival (ACI rats to Lewis rats) was studied after three methods of recipient presensitization and after different intervals between sensitization and transplantation. With comparable lymphocytotoxic antibody titers, liver allografts always survived longer than heart grafts. The titer, class and specificity of the antibodies varied with the method of sensitization. Four skin grafts produced IgG and IgM lymphocytotoxic antibody titers of 1:2,000 to 4,000. The IgG fraction was shown to have hepatic vascular endothelial specificity by indirect immunofluorescence. These primed recipients hyperacutely rejected both heart and liver allografts, which showed vascular deposition of IgG antibodies. Survival of either kind of graft was inversely proportional to the lymphocytotoxic antibody titer and length of time after placement of the last skin graft. Presensitization with a single heterotopic heart graft produced an even higher mixed IgG and IgM lymphocytotoxic antibody titer of 1:8,000 but with less IgG vascular endothelial specificity. These animals also hyperacutely rejected heart or liver grafts with tissue deposition of IgG but less consistently and with a weaker correlation with lymphocytotoxic antibody titers and time after sensitization. Sensitization with two pretransplant blood transfusions produced the lowest titer (1:500 to 1,000) and the least IgG vascular endothelial specificity. Liver allograft survival was routinely enhanced in these animals, and little effect was seen on heart grafts. Collectively, the experiments showed that the liver is not only resistant to antibody-mediated rejection relative to the heart but is more easily enhanced.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Inhibition of nitric oxide synthesis during endotoxemia promotes intrahepatic thrombosis and an oxygen radical-mediated hepatic injury.

Corynebacterium parvum-treated mice produce large amounts of circulating nitrogen oxides and develop a severe liver injury in response to lipopolysaccharide (LPS). Concurrent administration of NG-monomethyl-L-arginine not only suppresses nitric oxide synthesis in these animals but also profoundly increases the hepatic damage following LPS. In this report, we present evidence that the increased hepatic damage from inhibition of nitric oxide synthesis is mediated in part by superoxide and hydroxyl radicals. The hepatic damage induced by suppressing nitric oxide production during endotoxemia could be reduced by treating mice with superoxide dismutase and deferoxamine, scavengers of superoxide and hydroxyl radicals, respectively. This damage could also be prevented by treating mice with the anticoagulant heparin sodium. The results suggest that nitric oxide synthesis during endotoxemia is important in preventing hepatic damage by reducing oxygen radical-mediated hepatic injury and preventing intravascular thrombosis.

Animals

Composition of human islet cell preparations for transplantation.

To study the cellular composition of human islet cell isolates for transplantation, formalin-fixed and paraffin-embedded cell pellets were stained by the immunoperoxidase method with a panel of antibodies characterising endocrine, epithelial, soft tissue and haematolymphoid components. Immediately after separation, the isolates contained 30-80% islet cells, differing mainly in the content of islet and acinar cells, whereas the soft tissue, ductal/ductular and haematolymphoid elements comprised a relatively constant 10-20%. After 1 week in culture the islet cell content of less highly purified isolates (30-40% islets) dropped dramatically to 5%. The highly purified isolates (70-80% islets) showed only a minimal change in cellular composition; however, approximately two-thirds of islet cells were degranulated and did not stain for insulin. Haematolymphoid components were still present in all cultured isolates. We conclude that primarily mechanical purification methods and short-term culture are not sufficient to eliminate highly immunogenic cells. In addition, short-term culture is deleterious to the isolate if a significant number of acinar cells is still present after enrichment.

Adult

Simultaneous occurrence of primary sclerosing cholangitis and autoimmune chronic active hepatitis in a patient with ulcerative colitis.

The simultaneous occurrence of PSC and autoimmune CAH in a patient with ulcerative colitis is described. Although each disease is a well documented complication of UC, their combination has never been reported. The diagnosis of PSC was based on typical findings on ERCP and liver biopsy and that of CAH was based on typical findings on liver biopsy supported by HLA typings and a remarkable response to a combination of glucocorticoids and azathioprine. The difficulties in establishing the diagnosis and the management of such patients are discussed.

Adult

Incidence, prevalence, and clinical course of hepatitis C following liver transplantation.

Hepatitis C virus (HCV) is the agent responsible for posttransfusion hepatitis. The incidence, timing, and clinical course of HCV positive hepatitis in liver transplant recipients are unknown. Three hundred and seventeen donor-recipient liver transplant pairs were grouped on the basis of their pretransplant HCV antibody status. The biopsy findings were examined. Four distinct groups were identified on the basis of HCV serology: group I, both were negative; group II, donor was negative and recipient was positive; group III, donor was positive and recipient was negative; group IV, both were positive. The prevalence of anti-HCV positivity in recipients was 13.6%. The rate of seroconversion was 9.2%. Histologic hepatitis not ascribable to any specific cause other than non-A, non-B (NANB) hepatitis occurred in 13.8%. The incidence of histologic chronic active hepatitis was 1.6%, and none progressed to cirrhosis. The concordance rate for a positive anti-HCV serology and NANB hepatitis was 2.8%. Of the 35 patients (group II and IV) with positive anti-HCV serology pretransplant, only 17 were positive posttransplantation. Based on these data it can be concluded that posttransplant NANB hepatitis occurred in 13.8% of liver recipients. Twenty percent of these were anti-HCV positive. Progression to histologic chronic active hepatitis occurs over a period of 1-5 years in 1.6% of cases.

Adolescent

Immunopathology of antibodies as effectors of orthotopic liver allograft rejection.

We have come a long way in our understanding of antibodies as effectors of liver graft damage, but we still have much to learn. Animal heterografts provided the first evidence that livers are susceptible to antibody-mediated damage. The pathophysiologic events are similar to those of extrahepatic organ grafts, but the liver is relatively resistant and rapidity of graft destruction is slower, if it occurs at all. Nevertheless, the ABO isoagglutinins can predictably cause human liver allograft failure, often in a quickened, but rarely a hyperacute fashion. The liver is more resistant to lymphocytotoxins, and in many cases will suffer no apparent damage. However, when present, a spectrum of graft pathologic changes can be seen. Early manifestations include hemorrhagic necrosis and lesions mimicking "preservation" injury. Later on, ischemic biliary necrosis and small bile duct loss may be seen. The variability is likely related to a balance between destructive antibody class, specificity, and titers and the ability of the liver to withstand the assault. More precise characterization of lymphocytotoxic antibodies is needed in clinical practice. In addition, antigen distribution in the graft, release of soluble MHC antigens, the role of Kupffer cells and other mechanisms of liver resistance are likely areas of fruitful investigation.

ABO Blood-Group System

Nitric oxide synthesis serves to reduce hepatic damage during acute murine endotoxemia.

BACKGROUND AND METHODS: Nitric oxide synthesis occurs both in vitro and in vivo in response to inflammatory stimuli and can have profound effects on the local cellular environment. Hepatocytes, Kupffer cells, and endothelial cells produce nitric oxide in vitro, but the in vivo role of this reactive mediator in the liver is unknown. We assessed the role of nitric oxide synthesis during endotoxemia in mice by inhibiting its synthesis with NG-monomethyl-L-arginine after lipopolysaccharide injection and by determining the effects of this inhibition on hepatic damage. RESULTS: Injection of lipopolysaccharide in mice increased plasma nitrite and nitrate concentrations, the stable end products of nitric oxide metabolism, and caused mild hepatic damage as measured by increased circulating hepatocellular enzyme levels. NG-monomethyl-L-arginine decreased plasma nitrite and nitrate values, but increased the lipopolysaccharide-induced hepatic injury. NG-monomethyl-L-arginine caused no hepatic damage when given without lipopolysaccharide. The extent of hepatic damage with NG-monomethyl-L-arginine was proportional to the dose of lipopolysaccharide used and could be reduced with concurrent administration of L-arginine but not D-arginine. CONCLUSIONS: Nitric oxide synthesis provides a protective function against lipopolysaccharide-induced liver injury that increases in importance as the degree of endotoxemia increases. The production of nitric oxide is, therefore, an important part of the liver's response to a systemic inflammatory stimulus.

Acute Disease

Detection of intrahepatic human islets following combined liver-islet allotransplantation.

This article describes the localization of intact insulin-containing intrahepatic islets after combined liver-islet allotransplantation. The patient was a 36-year-old woman who underwent upper abdominal exenteration for neuroendocrine carcinoma; 289,000 islets were transplanted via portal vein infusion immediately after complete revascularization of the liver. Immunosuppression was with low-dose FK-506. OKT3 and steroids were used to treat one rejection episode 2 weeks after transplantation, but the patient subsequently developed multiple infections and died 109 days after transplantation. At autopsy, the transplanted liver did not show any sign of rejection and well-preserved islets were present in portal triads sampled from the anterior inferior edge of the right lobe. Immunohistochemical labeling confirmed the presence of insulin-containing cells. This finding indicated that human islets can survive after intrahepatic allotransplantation, despite positive cross-match with no HLA antigen match, suggesting that upper abdominal exenteration and liver transplantation may constitute a protective factor for the survival of allogeneic human islets.

Adult