Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0023890 (cirrhosis)
42,195 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

An asymptomatic 70-year-old Hispanic woman with type 2 diabetes was found in 2004 to have an AST of 132 U/L, ALT 146 U/L, alkaline phosphatase 1107 U/L, total serum bilirubin 3.5 mg/dL, and albumin 2.9 g/dL. Viral hepatitis testing was negative. Serum IgG, IgA, and IgM were all elevated, antimitochondrial antibody was weakly positive, and antinuclear antibody was negative. Liver biopsy was reported to show "evolving cirrhosis with marked lymphoid hyperplasia." Although the indication was nowhere stated, she was prescribed ursodeoxycholic acid 500 mg b.i.d, on which her biochemical tests initially improved. One year later she developed itching and jaundice. Imaging studies revealed multiple gallstones. An MRCP was suggestive of cirrhosis with a questionable common bile duct stricture, and she underwent ERCP with removal of gallbladder and common bile duct stones and placement of a biliary stent. A periampullary mass, which proved to be a somatostatinoma, was excised in 2006 via an open laparotomy, at which the stent was removed and a second liver biopsy performed. It was reported as showing chronic active hepatitis, activity stage 2, and fibrosis grade 3 with bridging. Her subsequent course was complicated by recurrent bleeding from small bowel arteriovenous malformations. Seen for the first time at Columbia University Medical Center in January 2007, she complained of continuing pruritus. AST was 69 U/L, ALT 43 U/L, alkaline phosphatase 491 U/L, and total bilirubin 3.3 mg/dL. Serum albumin was 2.6 g/dL. Antinuclear antibodies, negative in 2004, were now positive at 1:320, and antimitochondrial M2 antibodies were strongly positive. Serum IgG and IgA, but NOT IgM, were elevated. Review of her outside liver biopsies revealed features of primary biliary cirrhosis (PBC) in the first, and of both PBC and autoimmune hepatitis (AIH) in the second. The patient exhibits an overlap syndrome, in which both histologic and serologic features of AIH evolved in a setting initially most suggestive of PBC alone. The phenomenon of autoimmune overlap syndromes is discussed.
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PMID:Evolution from primary biliary cirrhosis to primary biliary cirrhosis/autoimmune hepatitis overlap syndrome. 1829 83

Non-alcoholic fatty liver disease (NAFLD) has been increasingly recognized as the most common pathological conditions affecting the liver. In concert with the increase in Body Mass Index in developed countries that has occurred during the last decades, more and more individuals referred for evaluation of abnormal liver tests are found to have NAFLD. In most cases, the increase in fat within the liver is not associated with impaired liver structure or function in the long-term. However, liver steatosis should be considered to be a marker of the metabolic syndrome. A minority of patients with NAFLD develop liver cirrhosis but NAFLD is probably the most common underlying cause of cryptogenic cirrhosis. Patients with NAFLD have an increased cardiovascular mortality as well as increase in liver related complications compared with matched controls. The diagnostic evaluation of a patient with suspected NAFLD depends heavily on the setting. In whom and when a liver biopsy is indicated is controversial. An adequate history is of major importance and when alcohol is suspected to be a contributing factor to the liver steatosis, several biochemical and clinical parameters may differentiate alcoholic fatty liver and NAFLD. Unfortunately, no histological gold standard is available for non-alcoholic steatohepatitis (NASH) and there is still a significant diversity among pathologist concerning the minimal requirements for the term NASH. Management of patients with NAFLD should be aimed at fighting the metabolic risk factors such as visceral obesity, hyperglycemia, type II diabetes mellitus (DM) and hypertriglyceridemia. DM has been shown to be a predictor of worsening of fibrosis. Successful lifestyle modification with increased exercise and decreased food intake is able to remove the accumulation of liver fat and can reverse insulin resistance. Unfortunately, there are no well-controlled, randomized trials of weight control as therapy for NAFLD. Some pharmacological pilot trials have been undertaken in NAFLD, but no proved treatment for all patients with NAFLD and/or NASH is available at the current time.
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PMID:The clinical aspects of non-alcoholic fatty liver disease. 1829 64

Nonalcoholic fatty liver disease (NAFLD) is associated with obesity, insulin resistance, and type 2 diabetes. NAFLD represents a large spectrum of diseases ranging from (i) fatty liver (hepatic steatosis); (ii) steatosis with inflammation and necrosis; and (iii) cirrhosis. Although the molecular mechanism leading to the development of hepatic steatosis in the pathogenesis of NAFLD is complex, recent animal models have shown that modulating important enzymes in fatty acid synthesis in liver may be key for the treatment of NAFLD. This review discusses recent advances in the field.
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PMID:Contribution of de novo fatty acid synthesis to hepatic steatosis and insulin resistance: lessons from genetically engineered mice. 1831 65

Hepatitis C virus (HCV) is a major cause of chronic liver diseases, including steatosis, cirrhosis and hepatocellular carcinoma, and epidemiological studies indicate that HCV is also associated with insulin resistance and type 2 diabetes mellitus. The HCV core protein is not only a viral structural component but also a pathogenic factor, since its expression leads to the development of liver steatosis, insulin resistance and hepatocellular carcinoma in mice. The nuclear proteasome activator PA28gamma/REGgamma, which specifically binds to the core protein, is required for the virulence of the core protein. Elucidation of the mechanisms by which HCV core protein participates in the above conditions may provide clues toward the development of novel therapeutic measures for chronic hepatitis C.
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PMID:Hepatitis C virus core protein: its coordinate roles with PA28gamma in metabolic abnormality and carcinogenicity in the liver. 1832 62

Nonalcoholic fatty liver disease (NAFLD) is characterized by a wide spectrum of liver damage spanning steatosis, nonalcoholic steatohepatitis (NASH), cryptogenic liver cirrhosis, and even to hepatocellular carcinoma. Investigations in the last few years have focused on NASH, a relatively aggressive form of liver disease, due largely to the explosion of information provided by clinical and basic science studies related to the widespread presence of risk factors, such as obesity, type II diabetes mellitus, and dyslipidemia. This is especially important given that obesity and type II diabetes mellitus have recently reached epidemic proportions in Korea. The pathogenesis of NASH is multifactorial, with insulin resistance and increased fatty acid possibly being important factors in the accumulation of hepatocellular fat, and oxidant stress, lipid peroxidation, mitochondrial dysfunction, and dysregulation of variable cytokines possibly being important causes of hepatocellular injury in steatotic liver. Because not all steatotic livers progress to NASH, some other environmental factors or a combination of genetic factors are thought to be required for progression to NASH and fibrosis. Lifestyle modifications continue to be the cornerstone therapy in NAFLD, but some insulin-sensitizing drugs might be more effective in treating NASH. Many pilot trials for antioxidants and lipid-lowering and hepatic protective agents have yielded promising initial results in improving liver enzymes or features of liver histology. However, the efficacy of these agents remains questionable. Despite recent gains in understanding NASH, several issues related to its natural history, pathogenesis, and treatment remain unresolved.
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PMID:[Nonalcoholic steatohepatitis: pathogenesis and treatment]. 1836 54

This paper summarizes several important studies published during the previous year that have an impact on the practice of inpatient internal medicine, because they either modify or reinforce current practices. The selected domains include the treatment of thrombo-embolic disease, the role of implantable defibrillators in left cardiac failure, the management of cerebro-vascular disease, of community-acquired pneumonia, and of type 2 diabetes, as well as the prevention of spontaneous bacterial peritonitis in cirrhosis and of osteoporosis fractures. Some data stimulating our reflection on the integration of medical education in health care centres and on the validity of some scientific publications are also presented.
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PMID:[Update in hospital internal medicine (2007): a selection]. 1838 36

Nonalcoholic fatty liver disease (NAFLD), the most common cause of steatosis, is associated with visceral obesity and insulin resistance. With more severe risk factors (obesity, type 2 diabetes [T2D], metabolic syndrome), steatosis may be complicated by hepatocellular injury and liver inflammation (steatohepatitis or NASH). NASH can lead to perisinusoidal fibrosis and cirrhosis. Fat-laden hepatocytes are swollen, and in steatohepatitis, further swelling occurs due to hydropic change (ballooning) of hepatocytes to cause sinusoidal distortion, as visualized by in vivo microscopy, reducing intrasinusoidal volume and microvascular blood flow. Involvement of other cell types (sinusoidal endothelial cells, Kupffer cells, stellate cells) and recruitment of inflammatory cells and platelets lead to dysregulation of microvascular blood flow. In animal models, the net effect of such changes is a marked reduction of sinusoidal space (approximately 50% of control), and a decrease in the number of normally perfused sinusoids. Such microvascular damage could accentuate further liver injury and disease progression in NASH. The fatty liver is also exquisitely sensitive to ischemia-reperfusion injury, at least partly due to the propensity of unsaturated fatty acids to undergo lipid peroxidation in the face of reactive oxygen species (ROS). This has important clinical consequences, particularly limiting the use of fatty donor livers for transplantation. In this review, we discuss available data about the effects of steatosis and steatohepatitis on the hepatic microvascular structure and sinusoidal blood flow, highlighting areas for future investigation.
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PMID:Hepatic microcirculation in fatty liver disease. 1848 15

The significance of gallbladder wall thickness (GBWT) in regard to gallbladder disease (GBD) is not completely understood. Thickening of the gallbladder wall has been observed in patients with acute calculous and acalculous cholecystitis and chronic cholecystitis. However, various pathologic processes, such as gallbladder cancer and nonbiliary disorders such as liver cirrhosis and viral hepatitis, could also cause thickening of the gallbladder wall. To date, there is no report available on the genetic factors influencing GBWT. Therefore we sought to estimate the heritability (h2) of GBWT and to perform a genome-wide search to identify the susceptibility genes for GBWT, using data from the San Antonio Family Diabetes/Gallbladder Study (SAFDGS), a family study of Mexican Americans. GBWT was measured by ultrasound. After adjusting for the significant effects of age, sex, GBD (i.e., asymptomatic gallstones), metabolic syndrome, and duration of type 2 diabetes (T2DM), GBWT was found to be under significant and appreciable additive genetic influences (h2 +/- SE = 0.38 +/- 0.09, P < 0.0001). The strongest evidence for linkage occurred between markers D11S912 and D11S968 on chromosome 11q24-q25 (LOD = 2.7), where we have already shown suggestive evidence for linkage of GBD (LOD = 2.7) in a subset of our SAFDGS data. Potential evidence for linkage occurred at markers D1S1728 (1p31.1; LOD = 1.4) and D16S748 (16p13.1; LOD = 1.4), respectively. In conclusion, our study provides suggestive evidence for linkage of GBWT on chromosome 11q in Mexican Americans, and future tasks of mapping susceptibility gene(s) for GBD and its related traits, such as GBWT, in this chromosomal region can be fruitful.
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PMID:Autosomal genome-wide linkage analysis to identify loci for gallbladder wall thickness in Mexican Americans. 1850 42

Non-alcoholic fatty liver disease, defined as the presence of macrovascular steatosis in the presence of less than 20 gm of alcohol ingestion per day, is the most common liver disease in the USA. It is most commonly associated with insulin resistance/type 2 diabetes mellitus and obesity. It is manifested by steatosis, steatohepatitis, cirrhosis, and, rarely, hepatocellular carcinoma.Hepatic steatosis results from an imbalance between the uptake of fat and its oxidation and export. Insulin resistance, predisposing to lipolysis of peripheral fat with mobilization to and uptake of fatty acids by the liver, is the most consistent underlying pathogenic factor. It is not known why some patients progress to cirrhosis; however, the induction of CYP 2E1 with generation of reactive oxygen species appears to be important.Treatment is directed at weight loss plus pharmacologic therapy targeted toward insulin resistance or dyslipidemia. Bariatric surgery has proved effective. While no pharmacologic therapy has been approved, emerging data on thiazolidinediones have demonstrated improvement in both liver enzymes and histology. There are fewer, but promising data, with statins which have been shown to be hepatoprotective in other liver diseases. The initial enthusiasm for ursodeoxycholic acid has not been supported by histologic studies.
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PMID:Treatment of non-alcoholic fatty liver disease. 1851 64

Liver fibrosis is a dynamic process consisting of the chronic activation of the wound healing reaction in response to reiterated liver damage, leading to the excessive deposition of fibrillar extracellular matrix into the liver and eventually, if the cause of injury is not removed, to liver cirrhosis. The term "adipokines" identifies a group of polypeptide molecules secreted primarily by adipose tissue, which exert local, peripheral and/or central actions. Additionally to their well-established role in controlling adipose tissue physiology, adipokines have been shown to be involved in different obesity-related diseases, such as hypertension, atherosclerosis and type 2 diabetes. Accumulating data demonstrate that obesity and insulin resistance are associated with a more severe and faster progression of the fibrogenic process in different chronic liver diseases. Therefore, numerous recent studies have analyzed the role played by adipokines in the hepatic wound healing process, identifying novel roles as modulators of liver pathophysiology. This review summarizes the more significant and recent findings concerning the role played by adipocyte-derived molecules, such as leptin, adiponectin and resistin, in the liver fibrogenic process. The actions of different adipokines on the biology of liver resident cells, as well as their effects in different animal models of liver injury are discussed. The variations in the circulating levels and in the intrahepatic expression of these molecules occurring in patients with different chronic liver diseases will be also analyzed.
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PMID:The role of adipokines in liver fibrosis. 1860 1


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