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Hepatocyte membrane-bound IgG and circulating liver-specific autoantibodies in chronic liver disease: relation to hepatitis B virus serum markers and liver histology.

Hepatocytes isolated from 101 biopsies were examined for membrane-bound IgG. The sera of the patients were tested for anti-liver-specific lipoprotein by radioimmunoassay and for liver membrane autoantibody (by indirect immunofluorescence on isolated rabbit hepatocytes. The seven patients with normal liver or minor nonspecific alterations were negative for membrane IgG and serum antibodies. Membrane IgG with granular distribution was found in 41 patients [21 hepatitis B virus-related chronic active hepatitis (CAH), 3 cryptogenic CAH, 3 chronic persistent hepatitis, 6 prolonged viral hepatitis, 1 alcoholic cirrhosis, and 6 primary biliary cirrhosis]. Membrane IgG with linear fluorescence pattern was detected in 12 cases (4 autoimmune CAH, 3 HBsAg-positive CAH, 2 alcoholic cirrhosis, 1 anti-HBc positive CAH, 1 cryptogenic CAH, and 1 prolonged viral hepatitis). A strong association between granular IgG and serum HBsAg was found. Nuclear localization of IgG was found in 34 patients and correlated with the positivity of granular membrane IgG. The highest prevalence of anti-liver-specific lipoprotein was found in primary biliary cirrhosis and autoimmune CAH cases which were also positive for liver membrane autoantibody. No relationship was found between the presence of membrane IgG and circulating liver-specific autoantibodies. Membrane IgG and anti-liver-specific lipoprotein correlated with the presence of moderate and severe portal inflammatory infiltration but not with piecemeal necrosis or transaminase levels. Eleven of the twelve patients with linear membrane IgG presented chronic active liver disease with moderate to severe signs of liver damage. Therefore, it is suggested that, while granular membrane IgGs are related to hepatitis B virus, antigenic expression on the hepatocyte surface and/or the presence of immune complexes, linear membrane IgG could play a role in the immunopathogenesis of liver cell damage particularly in "autoimmune" cases which present high percentages of positive cells liver-specific autoantibodies.

Adult↗

Liver transplantation for acute liver failure from drug induced liver injury in the United States.

Studies of acute liver failure from drugs have included cases mostly attributed to acetaminophen (APAP) but have reported limited data on other drugs. We used the United Network for Organ Sharing (UNOS) liver transplant database from 1990 to 2002 to identify recipients and estimate a U.S. population-based rate of liver transplantation due to acute liver failure from drugs. Patients were identified if their diagnosis was acute hepatic necrosis from an implicated drug at the time of transplant. Liver transplantation for drug hepatotoxicity accounted for 15% of liver transplants for acute liver failure over the study period. In our cohort (n = 270), 206 (76%) recipients were female. APAP alone, or in combination with another drug, accounted for 133 (49%) cases. In the non-acetaminophen (non-APAP) group (n = 137), the most frequently implicated drugs were: isoniazid, n = 24 (17.5%); propylthiouracil, n = 13 (9.5%); and phenytoin and valproate in 10 (7.3%) cases each. One-year patient and graft survival for the entire cohort was 77 and 71%, respectively. Among Caucasians (n = 206) and African-Americans (n = 48), APAP only was implicated in 110 (53%) patients and 12 (25%) patients, respectively, and non-APAP drugs were implicated in 96 (47%) patients and 36 (75%) patients, respectively (P =.0004). Among African-Americans in the non-APAP group, 28 (78%) were women. In conclusion four drugs were implicated in 42% of patients undergoing liver transplantation for acute liver failure due to drugs other than APAP. The increased frequency of African-American women undergoing liver transplantation for non-APAP drug induced liver injury warrants further study.

Acetaminophen↗

Heterotopic liver transplantation in rats: effect of intrahepatic islet isografts and split portal blood flow on liver integrity after auxiliary liver isotransplantation.

BACKGROUND: Auxiliary heterotopic liver grafts atrophy in the absence of portal venous inflow; evidence suggests that an islet-derived hepatotrophic factor may exist in the portal drainage. Here we examine the effects of intrahepatic islet isografts in maintaining hepatocyte integrity in Wistar Furth rats with one of several types of arterialized auxiliary liver isografts. METHODS: In type 1 procedures the auxiliary liver was interposed into the recipient infrarenal vena cava and perfused through the graft portal vein with caval blood. In type 2 procedures the donor infrahepatic vena cava was anastomosed end-to-side to the recipient vena cava and the recipient portal vein was diverted to the graft portal vein. Both types of auxiliary grafts were arterialized; bile duct drainage was through the duodenum. Syngeneic islets were isolated and embolized into the portal veins of one half of the donor type 1 or native type 2 livers (1500 to 1700 islets). Finally, we performed six type 3 procedures in which a type 2 procedure was performed except that the portal blood flow was split so that the portal vein receiving the splenic, gastric, pancreatic, and duodenal drainage supplied the native liver and that the common mesenteric vein supplied the auxiliary graft with equivalent portal blood flow. Atrophy in heterotopic and native livers were compared for the three models after 3 months. RESULTS: Intrahepatic islets in type 1 auxiliary liver isografts without portal venous inflow did not prevent graft atrophy. Conversely, native livers deprived of portal venous inflow in our type 2 procedures, regardless of the presence of intrahepatic islet isografts, atrophied relative to auxiliary liver grafts in which portal venous inflow was provided by diverting the recipient's portal vein to the graft. In type 3 recipients atrophy was greater in the native livers than in the grafts. CONCLUSIONS: The results of our study suggest that islet-derived factors are not sufficient to prevent hepatocellular atrophy in auxiliary rat liver transplantation models and that a potent hepatotrophic factor may exist in the venous drainage of the bowel distal to the duodenum.

Animals↗

Graft regeneration and host liver atrophy after auxiliary heterotopic liver transplantation for chronic liver failure.

We studied the size of the liver graft and the host liver in six consecutive patients undergoing auxiliary heterotopic liver transplantation for chronic end-stage liver disease. In all cases, a liver reduced in size by left lateral hepatectomy was inserted. The sizes of the graft and host liver were estimated by planimetry of two-dimensional di-isopropyl iminodiacetic acid scintigrams taken 3, 7, 21, 90 and 180 days after surgery. Graft size increased from a mean of 12.2 cm2 (95% confidence interval = 10.2 to 14.1) on day 3 to a maximum of 14.8 cm2 (95% confidence interval = 13.4 to 16.1) on day 21 and remained stable thereafter; in contrast, the host liver decreased in size from 9.6 cm2 (95% confidence interval = 6.8 to 12.3) on day 3 to 3.9 cm2 (95% confidence interval = 3.0 to 4.8) at mo 6. We conclude that in patients with chronic liver failure, an auxiliary allograft reduced in size and placed adjacent to the host liver shows regenerative growth within 3 wk, whereas the host liver atrophies in 3 to 6 mo.

Adult↗

The augmenter of liver regeneration induces mitochondrial gene expression in rat liver and enhances oxidative phosphorylation capacity of liver mitochondria.

BACKGROUND: The mammalian augmenter of liver regeneration gene encodes a protein involved in the unique process of liver regeneration. The augmenter of liver regeneration respective protein stimulates hepatocyte proliferation in hepatectomized rats and inhibits cytotoxic activity of liver-derived Natural Killer cells from intact rats. Augmenter of liver regeneration protein shares homology with a Saccharomyces Cerevisiae protein essential for the viability, oxidative phosphorylation and cell-division cycle. AIMS: To demonstrate if augmenter of liver regeneration protein, like the homologous in the yeast, plays a role in the regulation of biogenesis of mitochondria. METHODS: Augmenter of liver regeneration protein was injected in intact rats and, in the hepatic tissue, the expression of two genes located in two different regions of the mitochondrial genome, mitochondrial ATPase 6/8, and ND1 subunit, and of a nuclear gene, mitochondrial Transcription Factor A, were considered. In addition, cytochrome content and oxidative phosphorylation capacity of liver-derived mitochondria were evaluated. RESULTS: The augmenter of liver regeneration protein administration induces an increase in the mitochondrial gene expression and enhances cytochrome content and oxidative phosphorylation capacity of liver-derived mitochondria. CONCLUSIONS: The present data demonstrate a comparable role in the regulation of mitochondria biogenesis in the eukaryotic cell like the yeast protein. This phenomenon could be part of the complex mechanism through which augmenter of liver regeneration regulates hepatocyte proliferation.

Adenosine Triphosphatases↗

Depression of liver-specific gene expression in regenerating rat liver: a putative cause for liver dysfunction after hepatectomy.

We carried out studies on the expression of liver-specific genes during regeneration of the liver and searched for changes in the expression of oncogenes and housekeeping genes. Albumin and ornithine transcarbamylase genes were the liver-specific genes examined by Northern blot analysis, using total RNAs isolated from residual livers of Sprague-Dawley rats subjected to a 68% partial hepatectomy. The mRNA levels of both genes began to decrease 8 hr after hepatectomy, both reaching the lowest levels at 24 hr, and then recovered to some extent at 48 hr. In contrast, these levels in the housekeeping and growth-related genes were augmented during this period. This would suggest that there is a selective expression of growth-related and housekeeping genes, in preference to liver-specific genes during liver regeneration. The expression of these genes in the regenerating liver was simulated in primary cultured hepatocytes during the dedifferentiation processes. It would appear that the first step in regeneration of the residual liver is dedifferentiation, in which the depression of liver-specific genes may be linked to liver dysfunction following hepatectomy.

Animals↗

Extended liver resection and hepatic ischemia in pigs: a new, potentially reversible model to induce acute liver failure and study artificial liver support systems.

BACKGROUND: Extended hepatectomy is a valid model for the study of acute liver failure. Since the porcine liver is comparable in size, morphology and anatomy to the human liver, we describe a technique employing hepatic ischemia and extended liver resection to induce acute liver failure in a porcine model as a means of studying bioartificial liver support. METHOD: A subtotal (75-80% resection) extended left hepatectomy was performed in 7 pigs after 60 min warm ischemia of the future remnant liver. After resection, the animals were given the best supportive care and observed until death. RESULTS: All animals died within 18-48 h, none as a result of surgical complications. Gross appearance of the liver showed severe steatosis of the right lateral lobe, and histology revealed severe coagulative necrosis of the whole lobule. CONCLUSION: This technique of extended liver resection after hepatic ischemia in the porcine model may be useful for studies of potentially reversible acute liver failure and experimental bioartificial support.

Animals↗

Connective tissue components of the normal and fibrotic liver. I. Structure, local distribution and metabolism of connective tissue components in the normal liver and changes in chronic liver diseases.

The first part of this review describes the chemistry, the occurrence and the metabolism of extracellular connective tissue components in the liver. The normal liver contains typical connective tissue proteins (collagens, structural glycoproteins and proteoglycans) not only in vessel walls, perivascular areas and in the capsule, but they occur also in small amounts in the parenchyma, mainly in the space of Disse along the sinusoidal walls. The "interstitial" collagens type I and III represent the major amount of collagen in the normal as well as in fibrotic liver, showing a relative increase of type III in fibrosis. Basement membrane collagens type IV and V as well as the cysteine-rich collagenous components "7 S collagen" and "short chain collagen" have been shown to occur in extracts prepared after limited pepsin digestion. In the normal liver, basement membrane collagen can hardly be detected within the parenchyma by immunofluorescence microscopy; increased occurrence, however, can be shown along the sinusoids even in early stages of chronic liver diseases. The glycoprotein fibronectin was shown to be distributed very similarly to collagens type I and III, whereas the basement membrane specific glycoprotein laminin is restricted to vessel walls and the epithelial layer of bile ductuli in the normal liver but is also found in the parenchyma in fibrosis. Occurrence of proteoglycans is increased in fibrosis: a change in the composition of glycosaminoglycans from mainly heparan sulfate in the normal to dermatan- and chondroitin sulfate in the fibrotic liver was observed. It is not yet clear which cell type is mainly responsible for increased connective tissue synthesis in fibrosis. The occurrence of cells resembling smooth muscle cells ("myofibroblasts") in connective tissue septa of fibrotic livers and the fact that similar cells which actively synthesize collagen grow from explants of fibrotic livers may indicate the significance of this cell type in the process of liver fibrosis.

Basement Membrane↗

Augmenter of liver regeneration (ALR) may promote liver regeneration by reducing natural killer (NK) cell activity in human liver diseases.

Cytotoxicity of liver natural killer cells against regenerating hepatocytes has been reported as a possible mechanism of regeneration failure in fulminant hepatitis. An augmenter of liver regeneration (ALR) inhibits liver natural killer cell activity in rats. In this study, we measured hepatic expression of ALR mRNA, blood levels of ALR, and peripheral blood natural killer cell activity in patients with various types of acute liver disease to investigate the relationship between failure of liver regeneration and hepatic natural killer cells. Hepatic ALR mRNA expression was higher in liver disease patients than in non-liver disease controls, and a correlation was found between serum ALR values and hepatic levels of ALR mRNA. In acute liver injury, the serum ALR level also showed a negative correlation with NK activity. ALR was produced by and released from the liver at the time of hepatic injury. Our findings suggest that ALR may protect against failure of regeneration by inhibition of hepatic natural killer cell activity in acute liver injury.

Antibodies↗

Liver-type arginase in serum during and after liver transplantation: a novel index in monitoring conditions of the liver graft and its clinical significance.

We quantified liver-type arginase in sera of 47 patients undergoing partial liver transplantation with use of an ELISA method. The level of liver-type arginase fluctuated slightly beyond the normal range in successful liver recipients, while it changed more drastically or precipitously in unsuccessful ones, accompanying or unaccompanying elevation of AST and ALT levels. A higher elevation pattern of the arginase level (above 100 ng ml-1) was observed in each of the unsuccessful recipients with critical condition, except for one patient. Other hepatic markers (LDH, ALP, and T-BIL) remained relatively unchanged until the terminal stage of deceasing patients. The finding that the liver-type arginase emerged in large quantity in the blood stream immediately after reperfusion of the liver graft indicates that the enzyme leaks out of hepatocytes damaged, presumably, by storage in the absence of circulation. A half-life of the liver-type arginase in the human blood was estimated to be 1 h, that is clearly shorter than that of AST. The short half-life of the arginase appears to be ascribable, at least partly, to formation of an immune complex with circulating autoantibody which appears in many liver recipients. These results suggest that liver-type arginase behaves uniquely in the serum among many hepatic enzymes, and could serve as a distinct marker of hepatic lesions, particularly during and after liver transplantation.

Adolescent↗

Detection of metastatic liver disease. Use of liver scans and biochemical liver tests.

The records of 94 patients with a known diagnosis of extrahepatic cancer having liver scan, biochemical liver tests (alkaline phosphatase, SGOT, lactic dehydrogenase, and bilirubin levels, and subsequent liver biopsy within a six-week period were reviewed. The sensitivity, specificity, and accuracy of the scan and biochemical tests in the detection of metastatic liver disease were calculated. The most sensitive single examination was the group of biochemical liver tests. Liver scans performed in the presence of normal biochemical test results were insensitive when compared with the liver scan alone or the liver scan in the presence of abnormal biochemical test results. The specificity and accuracy of all tests and test combinations were statistically equivalent. Screening for hepatic metastases in patients with cancer is best accomplished with the more sensitive and less expensive group of biochemical liver tests, reserving the liver scan for those patients with abnormal biochemical test results.

Alkaline Phosphatase↗

435-bp liver regulatory sequence in the liver fatty acid binding protein (L-FABP) gene is sufficient to modulate liver regional expression in transgenic zebrafish.

Liver fatty acid binding protein (L-FABP) is a small protein that is thought to play an important role in the intracellular binding and trafficking of long chain fatty acids in the liver. Expression of the gene encoding the zebrafish liver fatty acid binding protein is regulated by a 435-bp distal region (-1944 to -1510) of the L-FABP promoter. The 435-bp sequence is sufficient for gene activation in the liver primordia (or bud) and continues to be active in the adult liver when positioned adjacent to the SV40 basal promoter and linked directly to green fluorescent protein. The 435-bp sequence region has two distinct liver regulatory elements, A (-1944 to -1623) and B (-1622 to -1510), and contains multiple putative consensus binding sites. The element A sequence includes two consensus HFH and one HNF-1alpha site and the element B sequence includes one consensus HNF-3beta site. Deletion of an internal 435-bp fragment (-1944 to -1510) including the A and B elements totally ablated the liver-specific activity of the zebrafish L-FABP gene promoter. Deletion of either of the two elements reduces the liver activity. Mutation of the HNF-1alpha site or either of the two HFH sites in the A element or the HNF-3beta site in the B element significantly altered specificity in the liver primordia of transient expression embryos. The importance of the HNF-1alpha consensus binding site in the A element and the HNF-3beta consensus binding site in the B element within the 435-bp distal region of the L-FABP promoter region suggests that combinatorial interactions between multiple regulatory factors are responsible for the gene expression of L-FABP in the liver.

Animals↗

Reduced size liver transplantation, split liver transplantation, and living related liver transplantation in relation to the donor organ shortage.

Because of the shortage of cadaveric donors, three techniques of partial liver grafting have been developed. These techniques are placed in perspective in relation to the organ shortage. Reduced size liver transplantation (RSLTx) is widely used and has results comparable to those from whole liver grafting. However, this technique, while benefitting pediatric patients, reduces the adult donor liver pool. It also makes inefficient use of an available adult donor liver. In split liver transplantation (SPLTx), the whole liver is used after bipartition for two recipients. The results are comparable to those of RSLTx. The problem with SPLTx is that it is a very demanding technique applied only in centers with extensive experience with liver resection and reduction. Living related liver transplantation (LRLTx) yields excellent results; however, it places an otherwise healthy person at risk. It is argued that instead of performing risky operations on healthy persons, the health authorities should take specific measures to alleviate the organ shortage. In the meantime, SPLTx should be developed further because of its optimal use of donor tissue. As for LRLTx, its excellent results and the present shortage of size-matched pediatric liver donors justify its use, at least for now.

Adult↗

The use of reduced-size liver transplants in children, including split livers and living related liver transplants.

One of the key problems facing children awaiting liver transplantation is the shortage of donor organs. Surgical procedures that address this problem include: reduced-size liver transplantation (RLT), split liver transplantation (SLT), and living related liver transplantation (LRLT). RLT makes more of the current donor pool accessible to the pediatric recipient. SLT furnishes 2 liver grafts from 1 cadaveric donor, and LRLT provides an innovative supply of donor organs. This report compares the results achieved with RLT, SLT, and LRLT to those seen with full-size orthotopic liver transplantation (OLT). Between November 1984 and February 1991, 457 liver transplants were performed at the University of Chicago. Two hundred fourteen of these transplants were placed into recipients less than 13 years of age. Of these 214 pediatric orthotopic liver transplants (OLT), 103 were full-size livers and 111 were some type of reduced graft (RLT, SLT, or LRLT). There were 57 RLT, 34 SLT, and 20 LRLT. The recipients of the reduced grafts (RLT, SLT, or LRLT) averaged 1.9 +/- 1.8 years of age and 9.6 +/- 6.4 kg compared to the recipients of the full-size livers who averaged 3.5 +/- 3.4 years of age and 14.1 +/- 8.8 kg (p = 0.0001). The most common indication for transplantation was biliary atresia (105 patients). Overall patient survival after primary full-size OLT was 71.8%. Reduced-size OLT (RLT, SLT, and LRLT) resulted in an overall patient survival of 72.6% after primary transplantation. Patient survivals for primary transplants with specific types of reduced-size grafts were: RLT 76.5% (after RLT was used routinely), SLT 66.7%, and LRLT 89.5%.(ABSTRACT TRUNCATED AT 250 WORDS)

Adolescent↗

Liver inflammation and cytokine production, but not acute phase protein synthesis, accompany the adult liver progenitor (oval) cell response to chronic liver injury.

Oval cells are facultative liver progenitor cells, which are invoked during chronic liver injury in order to replenish damaged hepatocytes and bile duct cells. Previous studies have observed inflammation and cytokine production in the liver during chronic injury. Further, it has been proposed that inflammatory growth factors may mediate the proliferation of oval cells during disease progression. We have undertaken a detailed examination of inflammation and cytokine production during a time course of liver injury and repair, invoked by feeding mice a choline-deficient, ethionine-supplemented (CDE) diet. We show that immediately following initial liver injury, B220-expressing leucocytes transiently infiltrate the liver. This inflammatory response occurred immediately before oval cell numbers began to expand in the liver, suggesting that the two events may be linked. Two waves of liver cytokine production were observed during the CDE time course. The first occurred shortly following commencement of the diet, suggesting that it may represent a hepatic acute phase response. However, examination of acute phase marker expression in CDE-fed mice did not support this hypothesis. The second wave of cytokine expression correlated with the expansion of oval cell numbers in the liver, suggesting that these factors may mediate oval cell proliferation. No inflammatory signalling was detected following withdrawal of the injury stimulus. In summary, our results document a close correlation between inflammation, cytokine production and the expansion of oval cells in the liver during experimental chronic injury.

Acute-Phase Proteins↗

DNA ploidy and liver cell dysplasia in liver biopsies from patients with liver cirrhosis.

There is controversy among pathologists when assessing the presence or absence of liver cell dysplasia in liver biopsies taken from cirrhotic patients. The objective of the present study was to determine the DNA ploidy pattern of hepatocytes of patients with liver cirrhosis and its relationship to liver cell dysplasia. A total of 48 male patients diagnosed with liver cirrhosis based on clinical, laboratory and histopathological criteria were included in the study. A liver biopsy was taken from each patient; one part of the biopsy was subjected to histopathology, and the other to flow cytometry. The histopathological examination revealed liver cell dysplasia in 60% of patients with liver cirrhosis (62% of them had large cell dysplasia [LCD] and 38% had small cell dysplasia [SCD]). Abnormal DNA content (aneuploidy) was found in 81.5% of positive liver cell dysplasia specimens and found only in 11.1% of negative liver cell dysplasia specimens, with a statistically significant difference (P<0.001). Aneuploidy was found more commonly in LCD but without significant difference (P>0.05) in comparison with SCD. In conclusion, SCD (similar to LCD) is also associated with aneuploidy and elevated DNA index, and may carry the same risk for progression to hepatocellular carcinoma.

Adult↗

Kinetic aspects of hemoglobin.haptoglobin-receptor interaction in rat liver plasma membranes, isolated liver cells, and liver cells in primary culture.

125I-Hemoglobin.haptoglobin injected intravenously into rats was incorporated into liver parenchymal cells as evidenced by a cell separation technique. A mixture of freshly isolated liver parenchymal and nonparenchymal cells failed to internalize and degrade the 125I-hemoglobin.haptoglobin added, although it retained the ability to bind the molecule. The liver parenchymal cells in primary culture also lacked the ability to degrade 125I-hemoglobin.haptoglobin, although they bound the molecule more extensively as compared with the freshly isolated liver cells. It was confirmed that the 125I-hemoglobin.haptoglobin which was bound to the freshly isolated liver parenchymal cells localized on the outer surface of liver plasma membranes. Scatchard plots revealed the existence of two binding sites for 125I-hemoglobin-haptoglobin on the isolated liver plasma membrane: an apparent high affinity binding site (Kd = 1.3 X 10(-7) M) and an apparent low affinity binding site (Kd = 4.0 X 10(-6) M) at 37 degrees C. In contrast, freshly isolated liver parenchymal cells had only an apparent low affinity binding site (Kd = 1.4 X 10(-6) M) at 37 degrees C. Impairment of the apparent high affinity binding site during the isolation procedure with collagenase seemed to be related to loss of the ability to internalize and degrade the 125I-hemoglobin.haptoglobin molecules into the freshly isolated liver parenchymal cells or liver parenchymal cells in primary culture.

Animals↗