Living donor liver transplantation and hepatitis C: lessons from the learning curve?
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Biomedical subjects
Publications and source records attributed to Xavier Forns.
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OBJECTIVES: To analyze the etiology, clinical presentation, and outcomes of patients with life-threatening cryoglobulinemic vasculitis. METHODS: We studied 209 consecutive patients with cryoglobulinemic vasculitis. A potentially life-threatening cryoglobulinemia was considered as the development of renal failure, vasculitic abdominal involvement, pulmonary hemorrhage, or central nervous system involvement. RESULTS: Twenty-nine (14%) patients had life-threatening cryoglobulinemic vasculitis. There were 17 women and 12 men, with a mean age of 57 years. In 17 (59%) patients, life-threatening cryoglobulinemia was the initial clinical feature of the disease. The 29 patients had a total of 33 life-threatening episodes, which included renal failure due to cryoglobulinemic glomerulonephritis (n = 18), intestinal vasculitis (n = 8), pulmonary hemorrhage (n = 4), and central nervous system involvement (n = 3). In comparison with a control group of age-sex-matched patients with milder cryoglobulinemic vasculitis, those with severe cryoglobulinemic vasculitis had a higher frequency of fever (28% versus 7%, P = 0.017), type II cryoglobulins (100% versus 59%, P = 0.008), low C3 levels (55% versus 20%, P = 0.001), and a higher mean value of cryocrit (11.4% versus 3.3%, P = 0.004). Nineteen (66%) of the 29 patients with life-threatening involvement died, with the mortality rate reaching 100% in patients with intestinal ischemia and pulmonary hemorrhage. CONCLUSION: Life-threatening cryoglobulinemic vasculitis was observed in 14% of our patients, with almost two-thirds of episodes occurring at the onset of the disease. Fever, high cryocrit levels, and low C3 levels were associated with this severe presentation. Two-thirds of the patients died, with mortality for pulmonary hemorrhage and intestinal ischemia reaching 100%.
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Spain has a medium endemicity of hepatitic C infection among central Europe countries and Italy. Prevalence of anti-HCV varies among regions and it ranges from 1.6 to 2.6%, which means that there may be between 480,000 and 760,000 people infected with hepatitis C virus in Spain. The prevalence is very low in people under 20 years of age and it increases from age 30 years. Prisoners and drug addicts have the highest infectious rates, between 40 and 98%. Some populations of immigrants also have a high prevalence of HCV infection, especially people from Asia and sub-Saharan countries, whereas people from Latin America have rates lower than those in the autochtones population. Spanish people with chronic hepatitis C were mainly infected via blood transfusions, IV drug use, or during some medical and surgical hospitalization. The reduction in the use of IV drugs and the programs of needle sharing, as well as the eradication of post-transfusional hepatitis, have led to a progressive reduction in the incidence of new infections (from 6.8 per 100,000 in-habitants in 1997 to 2.3 in 2003). Preliminary data suggest that an important rate of new hepatitis C cases owe to nosocomial transmission. Transmission is almost exclusively vertical in children. In spite of a two-third reduction of incident cases of hepatitis C in Spain in last few years, it is foreseeable that the number of patients with advanced HCV liver disease attended in the health-care system will increase in forthcoming years. This is due to the fact that many, still undiagnosed patients will be likely recognized for the first time as a result of some complication of the disease. All efforts to increase the screening of hidden cases of hepatitis C in primary health-care centers, allowing a prompt treatment before an advanced stage, will have a beneficial impact both in economic and social terms.
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Early prediction of response to therapy in genotype 1 chronic hepatitis C is difficult. Two predictive models, a pretreatment scoring model (PreT-SM) and a fourth week of therapy scoring model (4w-SM) were constructed in a cohort of 104 patients from a single center (estimation cohort) and validated in a cohort of 141 patients from four independent centers (validation cohort). Individual scores were calculated using variables independently associated with sustained virological response (SVR). Baseline viral load, aspartate aminotransferase/alanine aminotransferase ratio, serum cholesterol, and a numerical score for noninvasive estimation of liver fibrosis were included in the PreT-SM; HCV RNA clearance and PreT-SM scores were included in the 4w-SM. Receiver operating characteristic analysis revealed the area under the curve in the estimation cohort and in the validation cohort to be, respectively, 0.856 and 0.847 for the PreT-SM and 0.908 and 0.907 for the 4w-SM. Low scores were associated with SVR, high scores with non-SVR. The best cutoff scores from the PreT-SM (7 and 9.70) identified, respectively, 36% of patients with SVR and 41% of those with non-SVR from the validation cohort, with high accuracy (> or =90% positive predictive value [PPV] and specificity). Similarly, cutoff scores of 3.20 and 5.60 from the 4w-SM identified, respectively, 71% of patients with SVR and 53% of those with non-SVR from the same cohort with high accuracy (PPV and specificity >92%). In conclusion, these models predicted response to therapy before or after 4 weeks of treatment in approximately 60% of genotype 1 patients and may be valuable for the management of this condition.
Liver biopsy is essential in the follow-up of HCV-infected liver transplant recipients. The aim of this study was to prospectively compare percutaneous (PLB) versus transjugular liver biopsy (TLB) in the assessment of liver damage. We also explored the diagnostic value of hepatic venous pressure gradient (HVPG) to identify patients at risk of severe HCV disease recurrence after liver transplantation (LT). One hundred sixteen paired PLB and TLB (with HVPG measurement) were performed 3 or 12 months after LT in 80 patients. Concordance for necroinflammation and fibrosis was fair or good, particularly 1 year after LT (kappa > or = 0.6). At this point, a significant positive association was seen between the median HVPG and the fibrosis stage (2.5 mm Hg for F0; 5 mm Hg for F1, 6 mm Hg for F2, and 11.5 mm Hg for F3; Kruscal-Wallis < 0.001). Despite this strong association, portal hypertension (HVPG > or = 6 mm Hg) was detected in 1 (5%) of 22, 4 (16%) of 25, and 6 (60%) of 10 patients with fibrosis stages 0, 1, and 2, respectively. After a median follow-up of 38 months, clinical decompensation occurred in 15 (19%) of 80 patients. Although the presence of significant fibrosis (F2-F3) 1 year after transplantation was good to predict clinical decompensation (AUC: 0.80), an HVPG of 6 mm Hg or greater was extremely accurate at identifying patients at risk of disease progression (AUC: 0.96). In conclusion, HVPG determination is a valuable tool for follow-up in patients with HCV recurrence after LT.
Recurrence of hepatitis C after liver transplantation (LT) is the main cause of graft loss and retransplantation. Frequent liver biopsies are essential to follow-up hepatitis C virus (HCV)-induced liver damage. However, liver biopsy is an invasive and expensive procedure. We evaluated prospectively the diagnostic accuracy of noninvasive measurement of liver stiffness (by transient elastography) to assess the severity of hepatitis C recurrence after LT. For this purpose, we included 124 HCV-infected liver transplant recipients who underwent 169 liver biopsies and 129 hepatic hemodynamic studies with determination of hepatic venous pressure gradient (HVPG). Simultaneously, patients underwent measurement of liver stiffness. Liver fibrosis was mild (F0-F1) in 96 cases (57%) and significant (F2-F4) in 73 (43%). HVPG was normal (<6 mm Hg) in 69 cases (54%) and elevated (>or=6 mm Hg) in 60 (46%). Using a liver stiffness cutoff value of 8.5 kilopascals, the sensitivity, specificity, negative predictive value, and positive predictive value for diagnosis of fibrosis >or=F2 were 90%, 81%, 79%, and 92%, respectively. The area under the curve (AUC) for diagnosis of fibrosis >or=F2, >or=F3 and F4 were 0.90, 0.93, and 0.98, respectively. There was a close direct correlation between liver stiffness and HVPG (Pearson coefficient, 0.84; P < 0.001) and the AUC for diagnosis of portal hypertension (HVPG >or=6 mm Hg) was 0.93. Importantly, none of the individuals with liver stiffness below the cutoff value had either bridging fibrosis (F3) or cirrhosis (F4) or significant portal hypertension (HVPG >or=10 mm Hg). In conclusion, determination of liver stiffness is an extremely valuable tool to assess the severity of HCV recurrence after LT and in reducing the need of follow-up liver biopsies.
We analysed viral kinetics from a 2-day treatment with BILN 2061, a serine protease inhibitor of hepatitis C virus, in patients chronically infected with genotype 1 hepatitis C virus. The efficiency (E), describing inhibition of viral production, was above 99.45% in all patients with minor or moderate fibrosis receiving doses of 200mg and 500 mg twice daily and larger than in previous studies for interferon-based treatments. However, epsilon was slightly smaller in patients with cirrhosis given 200mg and markedly smaller in patients given 25 mg. Estimates of viral clearance and infected-cell loss support conclusions on these rates and on treatment mechanisms from previous studies on interferon-alpha-based treatments.
OBJECTIVE: To analyze the prevalence and clinical significance of liver involvement in patients with Sjögren's syndrome (SS), focusing on the characterization and differentiation of autoimmune versus chronic viral liver disease. METHODS: We investigated liver involvement (clinical signs, analytical data, chronic viral infections, and autoantibodies) in 475 consecutive patients with SS. All patients fulfilled 4 or more of the 1993 European Community Study Group criteria for SS. RESULTS: Liver involvement was detected in 129 (27%) patients. After ruling out chronic illnesses or use of hepatotoxic drugs, the main etiologies were chronic viral liver disease in 64 (13%) cases [chronic hepatitis C virus (HCV) infection in 63 and HBV infection in one] and autoimmune liver diseases in 24 (5%; primary biliary cirrhosis in 16 patients and type-1 autoimmune hepatitis in 8). The analytical liver profile was not useful in differentiating between viral and autoimmune liver disease. In contrast, patients with SS and autoimmune liver disease presented higher mean values of erythrocyte sedimentation rate (p = 0.044), circulating gammaglobulins (p = 0.007), and a higher prevalence of antinuclear antibodies (p < 0.001), antimitochondrial antibodies (p < 0.001), anti-smooth muscle antibodies (p = 0.026), anti-Ro/SSA (p < 0.001), and anti-La/SSB (p = 0.01), while patients with chronic viral liver disease had a higher frequency of cryoglobulinemia (p < 0.001) and hypocomplementemia (p < 0.001). CONCLUSION: Chronic viral liver disease (associated overwhelmingly with HCV) was the main cause of liver involvement in our patients with SS, with a prevalence of 13%, nearly 3-fold greater than that observed for autoimmune liver involvement. The immunological pattern played a key role in the differentiation of viral (predominance of cryoglobulins and low complement levels) and autoimmune (higher frequency of autoantibodies) liver involvement.
Virological assessment of HCV infection relies on a series of assays that are essential for diagnostic purposes and to adopt therapeutic decisions. Diagnostic assays can be classified in three groups: assays that are designed to detect specific antibodies to HCV; techniques that detect and quantify viral load; and tests aimed at determining the infecting HCV type. In general, the use of these assays is similar in HCV infected patients as in those co-infected with HCV and HIV. Co-infected patients, however, have some inherent characteristics (deficient immune status, high HCV-RNA concentrations, particular genotype distribution, low response to antiviral therapy) that make the interpretation of such assays slightly different. Regarding assays to detect antibodies to HCV, last generation tests have a similar sensitivity in mono-infected and co-infected individuals. HCV-RNA testing might be helpful in anti-HCV negative individuals with clinical or analytical suspicion of liver disease. Genotype determination in patients co-infected with HCV and HIV should be performed by methods relying on sequence analysis, since serotyping assays have shown a lower sensitivity in co-infected cohorts. HCV-RNA concentration is a strong predictor of response to therapy. Due to the higher viral load of co-infected patients compared to HCV mono-infected individuals, those assays with a wide dynamic range seem more appropriate to monitor viral load during treatment.
BACKGROUND: In the liver transplantation (LTx) setting, there are several situations where measurement of hepatitis C virus (HCV)-RNA concentration may provide relevant information. However, HCV-RNA quantification is expensive and not routinely available in all laboratories. An assay to quantify total HCV core antigen in serum has been recently developed. The aim of this study was to compare the performance of HCV-RNA and HCV core antigen determination in a cohort of 116 HCV-infected patients who underwent LTx. METHODS: HCV-RNA and HCV core antigen concentrations were determined in serum samples (n=435) obtained before LTx and at weeks 4, 12, and 48 after LTx. RESULTS: There was an excellent correlation between HCV-RNA and HCV core antigen levels (r=0.802 P<0.001), with an equivalence of 9,900 IU/mL of HCV-RNA per pg/mL of HCV core antigen. The determination of core antigen was linear in samples containing between 20,000 and 2,500,000 IU/mL of HCV-RNA and highly reproducible (mean coefficient of variation, 15%). Overall, HCV core antigen tested positive in 378 (92%) of 410 samples with detectable HCV-RNA (>600 IU/mL); the percentage increased to 98% in samples taken later than 4 weeks after LTx. In fact, almost all samples (369 of 375 [98.4%]) with HCV-RNA levels higher than 20,000 IU/mL were positive for HCV core antigen, whereas 56 of 57 samples with undetectable core antigen had HCV-RNA levels below 50,000 IU/mL. CONCLUSIONS: The performance of total HCV core antigen immunoassay is appropriate for monitoring viral load in HCV-infected patients undergoing LTx and might be considered a useful alternative to HCV-RNA testing.
BACKGROUND/AIMS: The existence of an extrahepatic hepatitis C virus replication compartment is an important question for optimizing therapy and preventing the infection of liver grafts. An extraheptic replication compartment could be indicated if viral decline during the anhepatic phase is not a single exponential. However, the duration of the anhepatic phase is too short (0.5-2h) to allow such analysis. Here we mathematically analyze viral decline during liver transplantation beyond the period of the anhepatic phase and examine the possibility of viral compartmentalization. METHODS: Viral load of 30 patients undergoing liver transplantation was frequently measured. Simulation and non-linear fitting of differential equation models were used to test different compartmentalization hypotheses. RESULTS: In 16 of the patients (56%), a bi-phasic viral decline was observed which is explained by the existence of a second replication compartment. This extrahepatic compartment is responsible for about 3.1% of virus in circulation and the mean half-life of its infected cells is 2.6 days. The remaining patients, with a single exponential decline, have either a second compartment with relatively low contribution or no second compartment. CONCLUSIONS: These results provide a first quantitative picture of the extrahepatic hepatitis C viral contribution and may suggest new approaches for viral clearance.
Despite its medical and legal implications, there are no prospective studies analyzing the incidence and mechanisms involved in the nosocomial transmission of hepatitis C virus (HCV) in liver units. This study prospectively investigates the nosocomial transmission of HCV in the liver unit of a tertiary care center from August 2000 to October 2002. The median prevalence of HCV infection among hospitalized patients was 50%. Anti-HCV-negative patients admitted to the liver unit during the study period were prospectively followed, and serum markers of HCV infection were repeated 6 months after discharge. All known risk factors for HCV transmission (including the physical allocation of HCV-infected and noninfected patients during hospitalization) were recorded. Complete follow-up data were available in 1301 (84.5%) of 1540 patients. Six patients (0.46%) acquired HCV infection (annual incidence: 0.27/100 admissions). Phylogenetic analyses of recovered HCV sequences identified the source of infection as an HCV-infected roommate (3 cases) and a patient receiving care by the same nurse team (1 case). The most relevant risk factors associated with HCV acquisition were duration of hospitalization (>10 days; OR, 35; 95% CI, 1.96-622) and hospitalization with an HCV-infected roommate (>5 days; OR, 12; 95% CI, 1.39-103). In fact, HCV infection occurred in 1.7% of the 357 patients hospitalized longer than 10 days. In conclusion, HCV nosocomial infection appears to occur via patient-to-patient transmission in liver units, particularly in individuals who require long hospitalizations. Continuous reinforcement of universal prevention measures and, when possible, isolation of patients at higher risk might further reduce nosocomial HCV transmission.
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The quasispecies nature of hepatitis C virus (HCV) may have important implications concerning resistance to antiviral agents. To determine whether HCV NS5A quasispecies composition and dynamics are related to responsiveness to combined interferon (IFN) and ribavirin therapy, extensive sequence analyses of cloned RT-PCR amplification products of HCV-1b NS5A quasispecies of sequential isolates from 15 treated (nine sustained responders and six non-responders) and three untreated patients were performed. Accumulation of mutations in NS5A during therapy was relatively frequent in the V3 domain, but unusual elsewhere. Amino acid changes were the result of the imposition of minor variants that were already present before treatment and always occurred within the first week of therapy. Before treatment, the complexity and diversity of quasispecies were lower in isolates from responders than in those from non-responders, particularly in the V3 domain, where differences in nucleotide entropy (0.35 vs 0.64, P=0.003), genetic distance (0.0145 vs 0.0302, P=0.05) and non-synonymous substitutions (0.0102 vs 0.0203, P=0.036) were statistically significant. These differences became more apparent during treatment, because complexity and diversity remained stable or tended to increase in non-responders, whereas they tended to decrease in responders. These observations suggest that the composition and dynamics of HCV NS5A quasispecies, particularly in the V3 domain, may play a role in the response to combined IFN/ribavirin therapy.
The chronic infection by the hepatits C virus represents a serious sanitary problem affecting 1-3% of the world-wide population. It is transmitted by sexual route, vertical route and mainly after blood exposure by percutanea route. While HIV shares similar routes of transmission, the co-infection HCV-HIV is very frequent and the chronic hepatopathy and complications associated with its clinical course are an important cause of morbi-mortality in this population. The gold standard of the treatment for the HCV, has been the interferon and later the combination therapy of interferon plus ribavirine. Currently, the combination of ribavirine and a new pegilated formulation of the interferon has become the standard in the treatment reaching rates of sustained viral response around 40-80%.