Model for end-stage liver disease (MELD) exception for unusual metabolic liver diseases.
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Alcoholic liver disease (ALD) and its complications is still one of the most frequent causes of death in the Western world. Treatment modalities for both alcoholic steatohepatitis (ASH; the major inflammatory complication of ALD) and alcoholic liver cirrhosis are insufficient. Severe ASH is associated with a high mortality; although glucocorticoid treatment has been reported to improve survival, meta-analyses of clinical trials performed to date have failed to show a convincing benefit of such an approach. Most of the progress in understanding these diseases, especially ASH, has come from studies of cytokines. Various proinflammatory cytokines, such as tumor necrosis factor (TNF), have been proposed to have an important role in the pathophysiology of ALD and its complications. Pilot studies on the use of anti-TNF drugs, such as pentoxifylline or infliximab, in the treatment of ASH have now been performed with various levels of success. The treatment of patients with alcohol-related cirrhosis is mainly symptomatic and no therapies are currently available except orthotopic liver transplantation for end-stage liver disease. Independent of the stage of disease, abstinence from alcohol is the cornerstone of management. New treatment modalities for these diseases are eagerly awaited.
The liver diseases of pregnancy are specific liver disorders during the pregnancy. The principal hepatic anomaly during hyperemesis gravidarum is a reversible augmentation of liver enzymes under reanimation. Intrahepatic cholestasis of pregnancy occur during the last 2 trimesters of pregnancy, manifested usually by pruritus preceeding a jaundice. The liver enzymes and the serum biliary acids are augmented. The acute fatty liver of pregnancy occur during the last trimester of pregnancy leading to early interruption of pregnancy which would help to diminish the elevated level of maternal and fetal mortality. The HELLP syndrome usually observed during the toxemia of pregnancy, associate an hemolysis elevation of liver enzymes and low platelets.
TT virus (TTV) is transfusion-transmissible but its involvement in post-transfusion hepatitis is uncertain. To investigate the potential association of TTV with liver diseases, the prevalence of TTV DNA was tested by semi-nested PCR in 113 carriers of hepatitis C virus (HCV), 10 patients with acute liver failure, 11 patients with cryptogenic cirrhosis and 200 control blood donors. Thirty-seven of these patients underwent liver transplantation and were tested pre- and post-transplantation. TTV DNA was semi-quantified in serial samples from seven patients with unexplained post-transplant hepatitis. TTV genotyping was performed on samples from 28 patients by sequence analysis. The prevalence of TTV DNA in blood donors was 1.5% and 17% in HCV infected haemophiliacs. In patients with acute or chronic liver disease or hepatitis, 6 to 27% prevalence was observed. After liver transplantation, the prevalence of TTV DNA increased from 16 to 46% (P < 0.01). In patients who developed unexplained hepatitis post-transplantation, TTV viraemia did not parallel ALT levels. TTV DNA either increased in titre or became detectable shortly after transplantation, suggesting that either TTV was transfusion-transmitted, or, more likely, that immunosuppression caused a recurrence of low level or undetectable TTV viraemia. TTV had considerable genomic diversity in the N22 region, corresponding to at least 4 genotypes. Genotype 2 was found in 14/28 patients.
This study measured cardiac output before and 1 or 2 yr after orthotopic liver transplantation in 23 patients. Cardiac output was measured by thermodilution before transplantation and by first-pass radionuclide angiocardiography at follow-up. Study patients were selected as those doing well clinically and by standard laboratory tests at 1-yr and 2-yr reevaluations with no evidence of rejection: six had mild recurrent hepatitis shown on biopsy samples. Hepatocyte function was normal at the time of the study as shown by galactose elimination capacity of 442 +/- 90 mg/min. Medications were cyclosporine and prednisone in all patients, azathioprine in 10 patients and a combination of antihypertensive therapy to maintain diastolic blood pressure less than 90 mm Hg in 20 patients. Mean (+/- S.D.) pretransplantation cardiac output was 9.1 +/- 3.1 L/min and remained elevated at 8.3 +/- 2.1 L/min 1 yr, and 9.6 +/- 2.6 L/min (n = 13) 2 yr after transplantation. A significant (p less than 0.001) correlation was found between pretransplant and follow-up cardiac output. End diastolic, end systolic and stroke volumes are all increased in a pattern similar to that seen in end-stage cirrhosis. These data show that the high cardiac output of the hyperdynamic state of advanced liver disease persists after liver transplantation. The mechanisms and consequences of this require further study.
BACKGROUND/AIMS: A low serum ceruloplasmin level is considered a diagnostic test for Wilson's disease. To examine whether it is useful to detect presymptomatic patients with Wilson's disease, serum ceruloplasmin was determined by radial immunodiffusion (normal: 20-60 mg/dl) in all patients (n = 2867) admitted for evaluation of a liver disease in 1993 and 1994. METHODS: Patients with levels lower than 20 mg/dl were further evaluated by determination of serum copper concentration, urine copper excretion and ophthalmological examination. If possible, a liver biopsy was performed and the hepatic copper content was determined by flame atomic absorption spectroscopy. RESULTS: Seventeen patients had serum ceruloplasmin levels < 20 mg/dl. One had asymptomatic Wilson's disease (no Kayser-Fleischer rings or neurological symptoms). In the other 16 patients Wilson's disease was excluded. Based on elevated hepatic copper concentration, there were considered as heterozygous carriers of the WD gene. The remaining patients had various liver diseases (acute viral hepatitis in three, chronic hepatitis in two, drug-induced liver disease in three, alcoholic induced liver disease in two) or malabsorption (n = 3). CONCLUSIONS: The positive predictive value of low serum ceruloplasmin was only 5.9%. Although helpful for identifying presymptomatic Wilson's disease, screening by determination of serum ceruloplasmin in unselected patients with clinical or laboratory evidence of liver disease is neither feasible nor cost effective.
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Because the liver performs multiple functions, no single laboratory test or battery of tests is sufficient to provide a complete estimate of the function of the liver in every clinical situation. A broad array of biochemical tests are used to assess the many functions of the liver and to evaluate patients with suspected or established liver disease. These tests are referred to collectively as "liver function tests" (LFTs). LFTs are used to screen people for the presence of liver disease, suggest the underlying cause, estimate the severity, assess prognosis, and monitor the efficacy of therapy. Abnormal LFTs may be the first indication of sub clinical liver disease and may thereby guide further diagnostic evaluation. After the existence of hepatic dysfunction is recognized, the specific pattern of liver test abnormalities may suggest the category of the underlying liver disease, such hepatitis, biliary obstructions, or infiltrative liver disease. The value of screening healthy, asymptomatic persons for liver disease with the use of LFTs is controversial and may not be cost-effective. If screening is performed a panel of tests (e.g., AST, alkaline phosphatase, bilirubin, albumin) is preferable to using a single test because of superior sensitivity and specificity for liver disease and lower cost than the sum of individually performed tests.
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We examined the hemostatic abnormality of liver disease using hemostatic molecular markers, i.e. TAT, FPA and SFMC for coagulation, B beta 15-42, FDP, D dimer and PIC for fibrinolysis, t-PA and TM for vessel wall. The molecular markers for coagulation were generally increased in cases of liver disease, which was most sensitively reflected by FPA. On the other hand, it was postulated that SFMC was a marker reflecting the complication of DIC in these cases. Hyperfibrinolysis of liver disease was sensitively reflected by the increase of B beta 15-42, and an occasional increase of SFMC or FDP was thought to indicate the complication of DIC in these cases. A high correlation was found between t-PA and TM. It was postulated that the increase of the both markers in liver disease was due to deteriorated clearance by liver dysfunction, although TM is regarded as a marker reflecting endothelial injury. It was expected that visualization of hemostatic disorder of liver disease was made practical with the use of radar chart of these molecular markers.
Mucosal addressin cell adhesion molecule (MAdCAM-1) plays a pivotal role in T-lymphocyte homing to the gut. Given the strong association between the autoimmune liver diseases primary sclerosing cholangitis and autoimmune hepatitis and inflammatory bowel disease, we investigated the role of MAdCAM-1 in recruiting mucosal lymphocytes to the liver. MAdCAM-1 was strongly expressed on inflamed portal vein/sinusoidal endothelium in autoimmune mediated liver disease. In modified Stamper-Woodruff assays, MAdCAM-1 on hepatic vessels supported adhesion of alpha4beta7+ lymphocytes (i.e., gut-derived T cells) from patients with inflammatory bowel disease and primary sclerosing cholangitis. This adhesion was inhibited by pretreatment with blocking antibodies to MAdCAM-1, alpha4beta7, or the integrin alpha4 chain indicating that MAdCAM-1 in inflamed liver is functionally active. Circulating lymphocytes from patients with primary sclerosing cholangitis showed rolling adhesion on MAdCAM-1 transfectants in a flow-based adhesion assay that could be blocked by anti-MAdCAM-1 or anti-alpha4beta7 mAbs. These findings indicate that, under certain circumstances, vessels in the human liver support adhesion of alpha4beta7+ mucosal lymphocytes via binding to aberrantly expressed MAdCAM-1 on liver endothelium. This provides a mechanism to explain the hepatic recruitment of mucosal lymphocytes in inflammatory liver disease complicating inflammatory bowel disease.
BACKGROUND: The prevalence of nonalcoholic fatty liver disease (NAFLD) is rarely reported in Taiwan. GOALS: To determine the prevalence and risk factors of NAFLD in an adult population of Taiwan. STUDY: The cross-sectional community study examined 3245 adults in a rural village of Taiwan. The diagnostic criteria for NAFLD included no excessive alcohol intake, no chronic viral hepatitis, no known etiologies of liver disease, and ultrasonography consistent with fatty liver. RESULTS: The prevalence of NAFLD was 11.5% (372/3245). The risk factors for NAFLD in the general population were male sex [odds ratio (OR), 1.44; 95% confidence interval (CI), 1.09-1.90], elevated alanine aminotransferase (ALT) (OR, 5.66; 95% CI, 3.99-8.01), obesity (OR, 7.21; 95% CI, 5.29-9.84), fasting plasma glucose > or =126 mg/dL (OR, 2.08; 95% CI, 1.41-3.05), total cholesterol > or =240 mg/dL (OR, 1.50; 95% CI, 1.06-2.13), triglyceride > or =150 mg/dL (OR, 1.76; 95% CI, 1.32-2.35), and hyperuricemia (OR, 1.53; 95% CI, 1.16-2.01). Age > or =65 years was inversely related to NAFLD (OR, 0.53; 95% CI, 0.36-0.77). The only NAFLD risk factors among nonobese subjects were age between 40 and 64 years (OR, 2.35; 95% CI, 1.34-4.11, P=0.003), elevated ALT (OR, 15.45; 95% CI, 8.21-29.09, P<0.001), and triglyceride > or =150 mg/dL (OR, 2.48; 95% CI, 1.42-4.32, P=0.001). In subjects with NAFLD, the prevalence of elevated ALT in the presence of each metabolic risk factor, such as obesity, fasting plasma glucose > or =126 mg/dL, total cholesterol > or =240 mg/dL, triglyceride > or =150 mg/dL, and hyperuricemia, did not differ from that of subjects with normal ALT levels. CONCLUSIONS: NAFLD is closely associated with elevated ALT, obesity, diabetes mellitus, hypercholesterolemia, hypertriglyceridemia, and hyperuricemia. Among the metabolic disorders, only hypertriglyceridemia was related to NAFLD in nonobese subjects. Serum ALT level was not a good predictor of metabolic significance in subjects with NAFLD.
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Nonalcoholic fatty liver disease is a condition gaining increasing recognition as a cause of cirrhosis and end-stage liver disease. The condition appears identical to alcoholic liver disease histologically, yet occurs in patients with negligible alcohol intake. Nonalcoholic fatty liver disease covers a spectrum of diseases ranging from simple fatty deposition in the liver to fat and inflammation and finally to fibrosis and cirrhosis. Conditions most frequently found in association with nonalcoholic fatty liver disease include obesity, Type 2 diabetes, and hyperlipidemia. Although the exact etiology of nonalcoholic fatty liver disease is not clear, insulin resistance is thought to play an important factor. Patients typically present with asymptomatic serum aminotransferase elevations of 2-3 times normal. Symptoms may include fatigue and abdominal pain. The clinical course is difficult to predict due to a lack of research in the natural history of the disease. It is known a percentage of patients progress to end-stage liver disease and may require liver transplantation. No medical treatment has been found to be totally effective. Patients who are overweight or obese should be encouraged in gradual weight reduction that has been associated with improvement in liver test abnormalities.
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Although several liver diseases of childhood, particularly biliary atresia (BA) and cystic fibrosis (CF) liver disease (CFLD) are characterized by hepatic fibrosis, the pathogenesis of this process is incompletely understood. The cytokine transforming growth factor-beta1 (TGF-beta1) has been implicated in hepatic fibrosis in experimental animals, in which both the hepatic expression and plasma concentration of this cytokine are increased. The objective of our study was to determine whether there are similar alterations of TGF-beta1 in patients with hepatic fibrosis secondary to either BA and/or CFLD. The study design was as follows. In study 1, plasma TGF-beta1 was assessed by ELISA in 9 children with BA undergoing liver transplantation, 11 patients with CFLD, and appropriate control subjects. In study 2, hepatic expression of TGF-beta1 protein (assessed immunohistochemically) and hepatic fibrosis were scored semiquantitatively, on a 1-3 scale, by blinded investigators, in archival liver biopsy specimens from 10 children with BA, 10 with CFLD, and from 10 older children with normal hepatic histology, as well as in 4 patients with liver diseases of various etiologies. Simultaneous plasma and liver TGF-beta1 studies were performed in 8 patients with liver disease. Results were as follows. Plasma TGF-beta1 values were inversely correlated with age in healthy subjects (r=-0.54, p < 0.0001). The plasma TGF-beta1 protein of children with BA was decreased (13+/-2 ng/mL) compared with values for healthy children (42+/-6 ng/mL, n=10, p < 0.005). Similarly, the plasma TGF-beta1 concentration in patients with CFLD was also decreased compared with values for children with CF and normal serum liver profiles (n=14) (2+/-1 ng/mL versus 12+/-1, p < 0.05). However, the plasma TGF-beta1 concentration was increased in two patients with other types of liver disease. The hepatic expression of TGF-beta1 was increased in the presence of hepatic fibrosis in all types of liver diseases studied. Forty-six percent of patients had both marked hepatic fibrosis and marked TGF-beta1 labeling; 86% of samples without fibrosis showed no TGF-beta1 labeling, p=0.007. In conclusion, these studies have established the association of hepatic TGF-beta1 protein and hepatic fibrosis in several common liver diseases of childhood. Our data also suggest that, in children, plasma TGF-beta1 does not appear to be a useful marker of hepatic expression of this cytokine.
The authors examined the pretransplant prevalence of comorbid physical and psychological disorders in 112 alcoholic liver disease patients who received liver transplant. Fifty-six percent of the patients had comorbid hepatitis C or hepatitis B virus, 40% had used other substances in addition to alcohol, 25% met the criteria for a lifetime DSM-IV nonalcohol substance use disorder, 36% for a lifetime depressive disorder, and 12% for a lifetime anxiety disorder. The findings suggest the need for pretransplant psychiatric evaluation of alcoholic liver disease patients to identify nonalcohol substance use disorders and other psychiatric disorders that may require treatment.
Alcoholic liver disease presents a wide spectrum of clinical manifestations ranging from mild asymptomatic fatty liver to alcoholic hepatitis and severe life-threatening liver failure with ascites, hemorrhaging esophageal varices, and encephalopathy. Although still poorly understood, the mechanism of this injury is probably the result of numerous direct toxic and metabolic effects of alcohol on the hepatocyte. Therapy consists primarily of abstinence and supportive care. However, several newer treatments are actively being studied. These include prednisolone, anabolic steroids, glucagon and insulin, propylthiouracil, and cyanidanol. Colchicine is promising as an agent to inhibit fibrosis. Complications of cirrhosis, including ascites and variceal hemorrhage, are the result of end stage disease. A return to old techniques of ascitic fluid management suggests that therapeutic large-volume paracentesis with albumin infusion is a safe and effective form of therapy. Variceal hemorrhage is best treated with sclerotherapy, vasoconstrictors, and balloon tamponade. Little has been done to alter the ultimately dismal prognosis and long-term survival of alcoholic liver disease.