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Clinical factors that affect blood gases in non-smoking women with chronic liver disease.

Chronic liver disease is often accompanied by hypoxaemia. We investigated the clinical factors that were related to the arterial oxygen tension (PaO2) in 40 women, all non-smokers with chronic liver disease. They were positive for hepatitis C virus (HCV) antibody and had no evidence of cardiopulmonary disease. Arterial blood was collected from patients at rest (> 15 min) for analysis of blood gases. We determined the correlation between blood gas tension and the clinical variables, i.e. the presence or absence of skin manifestations such as cutaneous spider nevi and palmar erythema, the presence or absence of splenomegaly, vital capacity, forced expiratory volume in one second, V25/body height, serum alanine aminotransferase (AST), serum asparate aminotransferase (ALT), serum cholinesterase, serum gamma-globulin/total protein, excretion of indocyanine green at 15 min (15-min retention rate, ICG level), blood level of ammonia, blood level of endotoxin, plasma level of glucagon and the serum level of type IV collagen-7S. The mean level of PaO2 was 78 +/- 11 (range: 43-95) torr. The mean alveolar-arterial oxygen tension gradient (A-aDO2) was 19 +/- 13 (range: 2-60) torr. Multiple regression analysis used PaO2 and A-aDO2 as objective variables, and the clinical findings as explanatory variables. The explanatory variables that were significantly correlated with blood gas values were ICG level, blood level of endotoxin and presence of skin manifestations. The ICG level showed a high correlation with blood gas values; the ICG level increased, the PaO2 decreased (r = -0.69), while the A-aDO2 showed a high positive correlation (r = +0.78, P < 0.001). Findings suggest that a reduction in hepatic blood flow and hepatocellular function interfere with the inactivation of vasoactive substances such as endotoxin by the liver, leading to the development of skin manifestations, the dilatation of intrapulmonary capillaries and the induction of hypoxaemia.

Adult↗

Peripheral elimination of growth hormone in chronic liver disease.

Chronic liver disease is associated with raised basal and TRH-stimulated PRL and GH levels. In a recent study we found the kidney to be the main site of prolactin elimination in patients with liver disease. In order to determine whether this is specific for PRL or a more general mechanism for polypeptide removal, we studied the elimination of GH, which resembles PRL in molecular weight and primary amino acid sequence, in 5 patients with portal hypertension and hepatic cirrhosis and 5 patients with noncirrhotic portal hypertension. Plasma GH levels were measured before and after TRH in peripheral, hepatic and renal vein samples, taken during diagnostic hepatic vein catheterization. An excessive paradoxical increase of GH after THR stimulation was found in 4 out of 5 cirrhotic patients but in none of the noncirrhotic individuals (p less than 0.025). After TRH the mean hepatic venous levels were significantly lower than the peripheral venous levels in 4 out of 5 noncirrhotic patients but in only 1 of the 5 cirrhotic patients (p less than 0.05). The mean renal vein GH levels were significantly lower than the peripheral levels in 3 out of 5 noncirrhotic patients and in none of the cirrhotic patients. In 2 patients in whom renal and hepatic plasma flow was measured, renal extraction of GH was found to be 0 to 6.4 micrograms, while liver extraction amounted to 22.1 and 34.7 micrograms of GH during the same 60-min period. Despite the similarity in molecular weight and primary amino acid sequence between PRL and GH, GH appears to be mainly taken up by the liver while PRL is mainly eliminated by the kidney in this group of patients with portal hypertension. This suggests that the renal elimination of prolactin is not solely dependent on glomerular filtration. The selective hepatic removal of growth hormone is probably related to a specific action of growth hormone on liver metabolism.

Adult↗

Palliative care for patients with end-stage liver disease ineligible for liver transplantation.

The proportion of patients with ESLD who will be managed without liver transplantation will increase in the near future, largely as a result of the increasing age of the population. Patients with ESLD are subject to many physical and psychosocial symptoms that negatively affect health-related quality of life. Sleep quality should be maximized by controlling pruritus and leg cramps. Many frequently used therapies are not supported by a strong evidence base. Advance directives should be addressed with all patients with ESLD, preferably in the outpatient setting before an acute deterioration. Medicare provides a hospice benefit for patients with ESLD, and referral to a hospice is appropriate for patients with an expected survival of 6 months or less.

Humans↗

Fat paradox in liver disease.

Alcoholic liver disease (ALD) is characterized by accumulation of neutral lipids in hepatocytes leading to micro and macro-vesicular steatosis and balloon cell degeneration. Hypercaloric alimentation and resultant obesity also cause similar changes as evident in non-alcoholic fatty liver disease (NAFLD). Thus, accumulation of lipids in hepatocytes is a pathologic hallmark of ALD and NAFLD. In contrast, quiescent hepatic stellate cells (HSC) are characterized by the intracellular content of not only vitamin A but also triglycerides, and HSC activation is associated with depletion of these lipids. In fact, our recent work demonstrates that adipogenic/ lipogenic transcriptional regulation rendered by PPARgamma, LXRa, and SREBP-1c is essential for the maintenance of the fat-storing, quiescence phenotype of HSC. Expression of these adipogenic transcription factors is lost in activated HSC and the treatment of the cells with the adipocyte differentiation cocktail or ectopic expression of PPARgamma or SREBP-1c causes a reversal of activated cells to the quiescent phenotype. In steatotic livers from ALD and NAFLD mouse models, the expression of these adipogenic transcription factors is induced while the normal control livers lack such expression. Thus, adipogenic regulation is essential for HSC quiescence while it makes hepatocytes steatotic. Interestingly, under the adipogenic conditions of ALD and NAFLD, HSC are still activated to cause fibrosis. This fat paradox in hepatocytes and HSC highlights contrasted significance of fat in these two cell types that depend on each other for their homeostatic control. It further suggests, activated HSC in steatotic livers may have defective insulin signaling or lipogenic regulation.

Adipocytes↗

Cell-mediated immunity in HBeAg-positive homosexuals with chronic liver disease.

Chronic liver disease developing after infection with the hepatitis B virus may be due to impairment of cell-mediated immunity (CMI). In a study of CMI by the lymphocyte transformation test to two mitogens and hepatitis B surface antigen (HBsAg) the response to the mitogens, phytohemagglutinin (PHA) and purified protein derivative (PPD), was normal in all of 15 male homosexuals with HBsAg-positive chronic liver disease, indicating a normal non-specific cellular immune response. By contrast, only one of the 15 patients showed a response to HBsAg, which may explain the high prevalence of chronic HBsAg carriage in these patients.

Adult↗

Diagnostic value of biochemical markers (NashTest) for the prediction of non alcoholo steato hepatitis in patients with non-alcoholic fatty liver disease.

BACKGROUND: Liver biopsy is considered the gold standard for assessing histologic lesions of non-alcoholic fatty liver disease (NAFLD). The aim was to develop and validate a new biomarker of non alcoholic steato hepatitis (NASH) the NashTest (NT) in patients with NAFLD. METHODS: 160 patients with NAFLD were prospectively included in a training group, 97 were included in a multicenter validation group and 383 controls. Histological diagnoses used Kleiner et al's scoring system, with 3 classes for NASH: "Not NASH", "Borderline", "NASH"). The area under the ROC curves (AUROC), sensitivity (Se), specificity (Sp), and positive and negative predictive values (PPV, NPV) were assessed. RESULTS: NT was developed using patented algorithms combining 13 parameters: age, sex, height, weight, and serum levels of triglycerides, cholesterol, alpha2macroglobulin, apolipoprotein A1, haptoglobin, gamma-glutamyl-transpeptidase, transaminases ALT, AST, and total bilirubin. AUROCs of NT for the diagnosis of NASH in the training and validation groups were, respectively, 0.79 (95%C I 0.69-0.86) and 0.79 (95% CI 0.67-0.87; P = 0.94); for the diagnosis of borderline NASH they were: 0.69 (95% CI 0.60-0.77) and 0.69 (95% CI 0.57-0.78; P = 0.98) and for the diagnosis of no NASH, 0.77 (95% CI 0.68-0.84) and 0.83 (95% CI 0.67-0.90; P = 0.34). When the two groups were pooled together the NashTest Sp for NASH = 94% (PPV = 66%), and Se = 33% (NPV = 81%); for borderline NASH or NASH Sp = 50% (PPV = 74%) and Se = 88% (NPV = 72%). CONCLUSION: In patients with non-alcoholic fatty liver disease, NashTest, a simple and non-invasive biomarker reliably predicts the presence or absence of NASH.

Algorithms↗

Waiting list removal rates among patients with chronic and malignant liver diseases.

Equitable liver allocation should ensure that nonelective removal rates are fairly distributed among waiting candidates. We compared removal rates for adults entered with nonmalignant (NM) (N = 9379) and hepatocellular cancer (HCC) (N = 2052) diagnoses on the Organ Procurement and Transplantation Network (OPTN) list between April 30, 2003, and December 31, 2004. Unadjusted removal rates for NM vs. HCC diagnoses were 9.4% vs. 8.7%, 13.5% vs. 16.9% and 19.1% vs. 31.8% at 90, 180 and 365 days, respectively after listing. For NM candidates, model for end-stage liver disease (MELD) score (RR = 1.16), age (RR = 1.03) and metabolic disease diagnoses (RR = 1.66) had higher risks of removal; and PSC (RR = 0.62) and alcoholic cirrhosis (RR = 0.82) had lower risks of removal. For HCC candidates, MELD score at listing (RR = 1.09), AFP (RR = 1.02), maximum tumor size (RR = 1.16) and age at listing (RR = 1.02) had increased risks of removal. The equation 1 - 0.920 exp[0.09369 (MELD at listing - 12.48) + 0.00193 (AFP - 97.4) + 0.1505 (maximum tumor size - 2.59) defined the probability of dropout for HCC candidates within 90 days of listing. We conclude that factors associated with the risk of removal for HCC are different from NM candidates, although MELD score at listing remains the most predictive for both groups. Liver transplant candidates with HCC may be prioritized using a risk score analogous to the MELD score.

Adolescent↗