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1.
Braz. j. med. biol. res ; 36(6): 739-745, June 2003. tab
Article in English | LILACS | ID: lil-340666

ABSTRACT

The hypothesis of the role of iron overload associated with HFE gene mutations in the pathogenesis of nonalcoholic steatohepatitis (NASH) has been raised in recent years. In the present study, biochemical and histopathological evidence of iron overload and HFE mutations was investigated in NASH patients. Thirty-two NASH patients, 19 females (59 percent), average 49.2 years, 72 percent Caucasians, 12 percent Mulattoes and 12 percent Asians, were submitted to serum aminotransferase and iron profile determinations. Liver biopsies were analyzed for necroinflammatory activity, architectural damage and iron deposition. In 31 of the patients, C282Y and H63D mutations were tested by PCR-RFLP. Alanine aminotransferase levels were increased in 30 patients, 2.42 + or - 1.12 times the upper normal limit on average. Serum iron concentration, transferrin saturation and ferritin averages were 99.4 + or - 31.3 g/dl, 33.1 + or - 12.7 percent and 219.8 + or - 163.8 æg/dl, respectively, corresponding to normal values in 93.5, 68.7 and 78.1 percent of the patients. Hepatic siderosis was observed in three patients and was not associated with architectural damage (P = 0.53) or with necroinflammatory activity (P = 0.27). The allelic frequencies (N = 31) found were 1.6 and 14.1 percent for C282Y and H63D, respectively, which were compatible with those described for the local population. In conclusion, no evidence of an association of hepatic iron overload and HFE mutations with NASH was found. Brazilian NASH patients comprise a heterogeneous group with many associated conditions such as hyperinsulinism, environmental hepatotoxin exposure and drugs, but not hepatic iron overload, and their disease susceptibility could be related to genetic and environmental features other than HFE mutations


Subject(s)
Humans , Male , Female , Adult , Middle Aged , Fatty Liver , Iron Overload , Mutation , Alanine Transaminase , Biopsy , Cohort Studies , Fatty Liver , Ferritins , Polymerase Chain Reaction , Polymorphism, Restriction Fragment Length , Transferrin
2.
Braz. j. med. biol. res ; 35(3): 329-335, Mar. 2002. tab
Article in English | LILACS | ID: lil-304676

ABSTRACT

The hemochromatosis gene, HFE, is located on chromosome 6 in close proximity to the HLA-A locus. Most Caucasian patients with hereditary hemochromatosis (HH) are homozygous for HLA-A3 and for the C282Y mutation of the HFE gene, while a minority are compound heterozygotes for C282Y and H63D. The prevalence of these mutations in non-Caucasian patients with HH is lower than expected. The objective of the present study was to evaluate the frequencies of HLA-A antigens and the C282Y and H63D mutations of the HFE gene in Brazilian patients with HH and to compare clinical and laboratory profiles of C282Y-positive and -negative patients with HH. The frequencies of HLA-A and C282Y and H63D mutations were determined by PCR-based methods in 15 male patients (median age 44 (20-72) years) with HH. Eight patients (53 percent) were homozygous and one (7 percent) was heterozygous for the C282Y mutation. None had compound heterozygosity for C282Y and H63D mutations. All but three C282Y homozygotes were positive for HLA-A3 and three other patients without C282Y were shown to be either heterozygous (N = 2) or homozygous (N = 1) for HLA-A3. Patients homozygous for the C282Y mutation had higher ferritin levels and lower age at onset, but the difference was not significant. The presence of C282Y homozygosity in roughly half of the Brazilian patients with HH, together with the findings of HLA-A homozygosity in C282Y-negative subjects, suggest that other mutations in the HFE gene or in other genes involved in iron homeostasis might also be linked to HH in Brazil


Subject(s)
Humans , Animals , Male , Adult , Middle Aged , Hemochromatosis , HLA-A Antigens , Age of Onset , Amino Acid Substitution , Base Sequence , Brazil , Genetic Testing , Hemochromatosis , Heterozygote , Homozygote , Mutation , Prevalence
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