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Value of hepatic iron measurements in early hemochromatosis and determination of the critical iron level associated with fibrosis.

The role of the measurement of hepatic iron in the diagnosis of genetic hemochromatosis was studied, with particular reference to the differentiation of early hemochromatosis from alcoholic siderosis and the critical hepatic iron concentration associated with fibrosis in hemochromatosis. Hepatic iron was measured in 30 homozygous relatives of 17 hemochromatosis probands, 8 heterozygous relatives, 51 patients with alcoholic liver disease and 40 control subjects. Hepatic iron concentrations were greatly increased in the majority of homozygous hemochromatosis subjects, and there was little overlap with the other groups. In the absence of alcoholism, fibrosis or cirrhosis in hemochromatosis was present only with hepatic iron concentrations above a threshold of approximately 400 mumoles per gm (22.3 mg per gm) dry weight. In some heterozygous hemochromatosis subjects and in some alcoholic patients, hepatic iron concentrations were in the range seen in young homozygous subjects. However, an age-related rise in hepatic iron was seen only in hemochromatosis homozygotes, and calculation of an hepatic iron index (hepatic iron/age) resulted in a clear distinction between homozygotes and the other three groups. It is concluded: that chemical measurement of hepatic iron concentration, when corrected for the age of the subject, reliably distinguishes early hemochromatosis from alcoholic siderosis, and, that there appears to be a threshold level of hepatic iron above which there is a high risk of fibrosis.

Adolescent↗

Usefulness of biochemical screening of diabetic patients for hemochromatosis.

We assessed the prevalence of previously unrecognized hemochromatosis among patients in whom diabetes mellitus was diagnosed after the age of 30 yr, and we evaluated the positive predictive value of biochemical screening tests for hemochromatosis in diabetic subjects. Thirty-eight of 572 patients screened (6.6%) had a serum ferritin level greater than 324 micrograms/L; 16 patients had normal levels on repeat testing. Four patients' serum ferritin levels fell to less than 400 micrograms/L. Seven of 18 patients with a persistently elevated serum ferritin level did not undergo a liver biopsy because of a recognized cause of hyperferritenemia (carcinoma, alcoholism, or systemic lupus erythematosus). The diagnosis of hemochromatosis seemed certain in 1 of 3 patients who were not biopsied for technical reasons. Of 8 patients biopsied, 2 had hemochromatosis, 4 had fatty liver, 1 had hemosiderosis, and 1 had a chronic inflammatory cell infiltrate with no iron deposition. Of 4 patients with a raised transferrin saturation level, 2 had raised serum ferritin levels and hemochromatosis, 1 had raised serum ferritin and hemosiderosis on liver biopsy, and 1 had a normal transferrin saturation level on repeat testing. Two of 3 cases of hemochromatosis had other clinical markers of the condition. Therefore, routine screening of diabetic patients for hemochromatosis is not necessary, because patients with hemochromatosis will often have other clinical features of the disease. When screening diabetic patients for hemochromatosis, it should be remembered that a persistently raised serum ferritin level has a low positive predictive value (16.6%) and that a normal transferrin saturation level does not exclude the diagnosis.

Adult↗

Prevalence of genetic hemochromatosis in a cohort of Italian patients with diabetes mellitus.

BACKGROUND: Few data exist on the prevalence of genetic hemochromatosis among diabetic patients. OBJECTIVE: To compare the prevalence of genetic hemochromatosis in diabetic patients and a matched control group and to evaluate the accuracy of iron-related indexes in detecting hemochromatosis. DESIGN: Cross-sectional study. SETTING: Diabetes clinics of four hospitals in northern Italy. PATIENTS: 894 diabetic patients (117 with type 1 diabetes and 777 with type 2 diabetes) and 467 matched controls. MEASUREMENTS: Transferrin saturation and serum ferritin levels were measured in all study participants. After secondary iron overload was excluded as the cause of persistently elevated transferrin saturation and serum ferritin levels, liver biopsy was performed and siderosis was estimated semiquantitatively and quantitatively. A hepatic iron index greater than 1.9 was considered diagnostic for hemochromatosis. RESULTS: Hemochromatosis was diagnosed in 12 patients with type 2 diabetes (prevalence, 1.34% [95% CI, 0.7% to 2.3%]) and 1 control (prevalence, 0.2% [CI, 0.1% to 1.4%]; P = 0.032). The odds ratio of hemochromatosis in association with diabetes was 6.3 (CI, 1.1 to 37.7). Measurement of transferrin saturation was the most sensitive test for hemochromatosis. CONCLUSIONS: Genetic hemochromatosis is frequently not diagnosed in patients with diabetes, although it is a hallmark of the disease. Screening for hemochromatosis could be beneficial for patients with diabetes.

Adolescent↗

Screening for hereditary hemochromatosis: a systematic review for the U.S. Preventive Services Task Force.

BACKGROUND: The U.S. Preventive Services Task Force (USPSTF) has not previously considered screening for hereditary hemochromatosis for a recommendation as a clinical preventive service for primary care clinicians. PURPOSE: To conduct a focused systematic review of hereditary hemochromatosis screening relating to 2 USPSTF criteria, the burden of suffering and the potential effectiveness of a preventive intervention, to determine whether evidence is sufficient for a USPSTF recommendation. DATA SOURCES: MEDLINE, CINAHL, and Cochrane Library databases from 1966 through February 2005. The authors supplemented literature searches with source materials from experts in the field and the bibliographies of key reviews and included studies. STUDY SELECTION: Studies were retrieved to answer 3 key questions: 1) What is the risk for developing clinical hemochromatosis among those with a homozygous C282Y genotype? 2) Does earlier therapeutic phlebotomy of individuals with primary iron overload due to hereditary hemochromatosis reduce morbidity and mortality compared with treatment after diagnosis in routine clinical care? 3) Are there groups at increased risk for developing hereditary hemochromatosis that can be readily identified before genetic screening? The authors critically appraised studies using quality criteria specific to their design. DATA EXTRACTION: The authors abstracted all studies into evidence tables using condition definitions and diagnostic criteria. DATA SYNTHESIS: Data were insufficient to define a very precise estimate of penetrance. Available data suggest that up to 38% to 50% of C282Y homozygotes may develop iron overload, with up to 10% to 33% eventually developing hemochromatosis-associated morbidity. Prevalence of C282Y homozygosity is higher in family members of probands and other high-risk patient groups defined by signs, symptoms, and phenotypic screening. LIMITATIONS: This review considered genetic screening for HFE-related hereditary hemochromatosis in C282Y homozygotes only. Available research is limited, is based solely on observational designs, and is plagued by poor or inconsistent reporting. CONCLUSIONS: Research addressing genetic screening for hereditary hemochromatosis remains insufficient to confidently project the impact of, or estimate the benefit from, widespread or high-risk genetic screening for hereditary hemochromatosis.

Cost of Illness↗

Hemochromatosis. Common genes, uncommon illness?

OBJECTIVE: To increase family physicians' awareness of the prevalence of hemochromatosis and to suggest strategies for diagnosis and management of hemochromatosis with the goal of decreasing the development of associated life-threatening conditions. QUALITY OF EVIDENCE: A MEDLINE search from January 1966 to January 2002 using the MeSH term hemochromatosis/therapy found no randomized controlled trials. A further search from January 1990 to January 2002, using the heading hemochromatosis and subheadings diagnosis, epidemiology, genetics, and therapy, found articles with level II evidence (case-control and cross-sectional studies) and level III evidence (descriptive studies and reports from expert committees). Articles were selected based on clinical relevance. MAIN MESSAGE: Hemochromatosis is the most common hereditary condition in populations of Northern European descent, affecting three to five people per thousand. Many of these people remain undiagnosed with this condition. The iron overload associated with hemochromatosis can lead to serious, life-threatening conditions, such as diabetes, hepatic cirrhosis, primary liver cancer, and cardiomyopathy. Family physicians can screen patients they suspect are at risk of hemochromatosis with simple indirect serum iron measurements (transferrin saturation and serum ferritin) and with widely available genetic tests (C282Y and H63D). Studies of families can help uncover further cases of hemochromatosis; population screening is currently under study. CONCLUSION: Family physicians can facilitate early diagnosis of hemochromatosis by maintaining a high index of suspicion in patients with early signs or symptoms or in high-risk groups, and screening these patients for hemochromatosis.

Family Practice↗

Hemochromatosis and dietary iron supplementation: implications from US mortality, morbidity, and health survey data.

Trends in the mortality rates, morbidity rates, and hematologic screening parameters for hemochromatosis in the United States over the past 20 years were examined to assess whether dietary iron supplementation is a precipitating factor for hemochromatosis. From 1968 through 1987, there was an increase in the overall hemochromatosis mortality rates attributable to white women. From 1979 through 1987, the hospitalization rates for hemochromatosis ranged from 4 to 13 per 100,000 persons in Medicaid data (1984) and the National Hospital Discharge Survey (1979-1987) and are similar to estimates in the literature from 1955. Although the iron nutritional status of persons under 55 years of age increased from the first to the second National Health and Nutrition Examination Survey, there was no corresponding increase at the 95th percentile in the hemochromatosis screening parameters--serum iron concentration and transferrin saturation. A hypothetical scenario was used to examine the progression from homozygous gene frequency to phenotypic expression. It is concluded that clinical hemochromatosis is rarer than prevalence estimates of 100 to 500 per 100,000 persons predicted by gene frequency. In addition, there is no strong evidence of an increase in hemochromatosis from mortality, morbidity, or health survey data, which implies that dietary iron supplementation begun in 1940 has not accelerated manifestations of hemochromatosis. Any increase in hemochromatosis since iron fortification can probably be attributed to accuracy in diagnosis and enhanced awareness of the disease by physicians rather than to environmental factors.

Adolescent↗

Mapping the locus for hereditary hemochromatosis: localization between HLA-B and HLA-A.

We studied a family with HLA-linked hereditary hemochromatosis in which an informative recombination occurred within the HLA region. The father, an obligate heterozygote for hereditary hemochromatosis, had HLA haplotypes A2,B13 and A11,B27. The mother, also an obligate heterozygote, had HLA haplotypes A29,B44 and A2,B7. Three haplotypes were found among three homozygous affected offspring. Two affected siblings were HLA-identical with haplotypes A2,B13 and A29,B44. The proband had HLA haplotypes A2,B13 and A2,B44, the latter a recombinant haplotype inherited from her mother. Since the maternal hemochromatosis allele was linked to the A29,B44 haplotype, and since the proband has hemochromatosis, the maternal hemochromatosis allele was transmitted to the proband with the B44 antigen. This is the first known example of recombination in an individual with HLA-linked hemochromatosis in whom the hemochromatosis allele appeared to segregate with the HLA-B antigen instead of the -A antigen. The possibility of either a double reciprocal recombination event or a gene conversion event cannot be excluded. Combined with earlier observations of segregation of the hemochromatosis allele with the A locus in HLA recombinants, the findings in this pedigree map the hemochromatosis locus between the HLA-B and HLA-A loci rather than outside the HLA region.

Adult↗

Arthritis in hemochromatosis or iron storage disease.

PURPOSE OF REVIEW: Hemochromatosis is a common autosomal recessive condition characterized by increased iron absorption and tissue deposition. Recognition of this condition is important because phlebotomy can be life saving. This review examines recent studies of articular manifestations in hemochromatosis and the frequency of hemochromatosis genes in the general population and in selected patients with various types of arthritis. RECENT FINDINGS: Genetic mutations in the HFE gene are present in most patients with hemochromatosis. Several studies have shown a higher frequency of homozygous or heterozygous HFE mutations in individuals with various types of arthritis compared with unselected populations. Although important, the lack of characterization of arthritis in the controls of these studies limits their impact. One recent study compared arthritis symptoms in individuals with HFE mutations, newly identified through a large screening program, with individuals lacking such mutations from the same population. Individuals with hemochromatosis genotypes reported a higher frequency of some arthritis symptoms than did controls. Although these differences were not statistically significant, the low number of individuals with hemochromatosis genotypes limited the statistical power of this study. SUMMARY: Arthritis symptoms are common in individuals with hemochromatosis and can have a significant impact on their quality of life. Although the genetic defect associated with hemochromatosis is common in whites, the frequency with which these genotypes cause clinical disease remains unclear. More detailed study of arthritis symptoms and signs over time in individuals with and without mutations in the HFE gene is necessary to determine the contribution of HFE genes to arthritis in the population.

Arthritis↗

Lack of hepatic transferrin receptor expression in hemochromatosis.

The major part of hepatocellular iron is derived from uptake of transferrin-bound iron by means of nonspecific fluid-phase endocytosis and specific, saturable binding on high-affinity transferrin receptors. We investigated the expression of transferrin receptors on hepatocytes in liver biopsies of 22 cases of hemochromatosis (21 primary hemochromatosis and 1 secondary hemochromatosis), using immunohistochemical demonstration of the human transferrin receptor with the specific monoclonal antibody OKT9. Fifty liver biopsies (normal and pathological) without demonstrable iron storage (Perls' stain negative) served as controls. In the controls, membranous and/or cytoplasmic transferrin receptor expression was always present on hepatocytes, albeit in variable numbers and patterns without obvious relation to the underlying liver disease. In 19 of 22 hemochromatosis cases with severe iron overload, OKT9 immunoreactivity on hepatocytes was completely absent. Three hemochromatosis cases showed few hepatocytes positive for OKT9. One showed mild iron overload, while the second, a successfully treated case, was free of iron. The remaining hemochromatosis case was a known alcoholic with severe iron overload. Since OKT9 binding to the transferrin receptor is not blocked by previous binding of transferrin, the findings show that in advanced hemochromatosis hepatocytes do not express transferrin receptors. This finding is in keeping with the inverse relation between transferrin receptor expression and exogenous iron supply in various cell cultures. These results indicate that in hemochromatosis,apparently as a result of progressive iron overload,transferrin receptor expression on hepatocytes disappears.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Alcoholism in hereditary hemochromatosis revisited: prevalence and clinical consequences among homozygous siblings.

The relationship between alcoholism and hereditary hemochromatosis remains controversial. Previous studies have included patients with alcoholic siderosis rather than hereditary hemochromatosis. In this retrospective study, the clinical features, iron status, alcohol history, liver histology, and long-term survival were reviewed in 105 homozygotes for hemochromatosis using rigid diagnostic criteria including an HLA identical sibling with iron overload. Heavy alcohol consumption (>80 g ethanol/day) was found in 15 percent of hemochromatosis patients. Histological features of alcoholic liver disease (Mallory's hyaline bodies, pericentral fibrosis, polymorphonuclear infiltrate, and fatty infiltration) were uncommon in hemochromatosis. Hemochromatosis patients with heavy alcohol consumption had a higher prevalence of cirrhosis than hemochromatosis patients without heavy alcohol consumption. Hepatic iron concentration and hepatic iron index did not significantly differ between these two hemochromatosis groups. Long-term survival was significantly reduced in patients with heavy alcohol consumption (mean follow-up, 9.22 years). This suggests that chronic alcohol consumption has an additive hepatotoxic effect despite the paucity of histological features of alcoholic liver disease.

Alcoholism↗

Population-based screening for hemochromatosis using phenotypic and DNA testing among employees of health maintenance organizations in Springfield, Missouri.

BACKGROUND: Hemochromatosis reportedly affects 3 to 8 persons per 1,000 and is associated with an elevated risk of morbidity and mortality. We sought to ascertain its prevalence in a community and to assess the association between phenotype and genotype. METHODS: All health maintenance organization employees were invited to participate in hemochromatosis screening using a repeated elevation of the transferrin saturation test as the case definition (> or = 50% in women and > or = 60% in men with no other cause). Iron overload from hemochromatosis was defined as serum ferritin concentration > or = 95th percentile and mobilizable iron > or = 99th percentile for age and sex, or hepatic iron index > or = 1.9. The HFE gene was analyzed for mutations. RESULTS: Participation among employees was 28% (1,653 of 6,000); 83% were women. The prevalence of hemochromatosis was 8 per 1,000 (13 of 1,653), and the prevalence of iron overload from hemochromatosis was 4 per 1,000 (5 of 1,653). Compared with those who had no HFE mutation, the relative risk (RR) for hemochromatosis was greatest for C282Y homozygotes (RR = 147), compound heterozygotes (RR = 19), and H63D homozygotes (RR = 9). Overall, 38% of participants had at least one HFE mutation. Screening based on an initial elevated transferrin saturation test had the best sensitivity, whereas DNA testing offered the best specificity and predictive value positive for iron overload disease. CONCLUSIONS: In this population, we found a greater than expected prevalence of hemochromatosis and demonstrated a clear association with the HFE genotype. Promotion of screening is complicated by controversies in case definition and the large number of persons who will be detected before they have clinically significant iron loading, in whom the risk of clinical disease is unknown. Larger screening studies in more diverse populations are necessary to characterize the burden of disease and to follow those at risk (based on HFE or iron status measures) to establish the natural history of hemochromatosis.

Adult↗

Predictive value of family history in diagnosis of hereditary hemochromatosis.

Our objective was to study the predictive value of the family history in the initial diagnosis of hereditary hemochromatosis. Sixty five hemochromatosis proband patients and 66 control patients with chronic liver disease were assessed for a family history of hemochromatosis, cirrhosis, diabetes, and arthritis. There were no significant differences in the frequency of cirrhosis, diabetes, and arthritis between hemochromatosis patients and control patients. A family history of hemochromatosis was present in 3.6% of hemochromatosis patients and none of the control patients. Multivariate discriminative analysis demonstrated that the combination of cirrhosis, diabetes, and arthritis could only predict the diagnosis of hemochromatosis in 48% of cases. We conclude that a family history of cirrhosis, arthritis, and diabetes is not more common in hemochromatosis patients compared to control patients with chronic liver disease.

Arthritis↗

Hemochromatosis patients as voluntary blood donors.

The present study was designed to investigate hemochromatosis patients' suitability as blood donors as well as their perceptions and experience with the current public donation system. Participants were gathered from a list of current hemochromatosis patients (n=120) and members of the Canadian Hemochromatosis Society (n=1000). Of the 1120 surveys mailed out to these groups, 801 surveys were returned completed. The sample respondents had a mean age of 57.44 years (SD=12.73; range 19 to 87 years), and 57% were men. It was found that 20% (160) of the respondents have donated blood since their diagnosis; however, only 12% of the respondents indicated that they use voluntary blood donation as a means of maintaining their iron levels. Forty per cent of the respondents indicated that they had been refused from voluntary donation. Despite the fact that in May 2001 the Canadian Blood Services, in collaboration with the Canadian Hemochromatosis Society, began a promotion campaign to encourage hemochromatosis patients to become voluntary blood donors, the present study found that 15% of the respondents reported having been refused from the voluntary blood donation service due to the diagnosis of hemochromatosis. With respect to quality of life, it was found that individuals who donate blood were generally healthier with respect to physical functioning and bodily pain, however, these findings may indicate that hemochromatosis patients who are healthier are better able to donate at public blood banks, rather than that voluntary blood donation has an effect on the donors' physical functioning over phlebotomy clinic users. These study findings suggest that although there may be other medical factors limiting individuals from donating, hemochromatosis patients are interested in being voluntary blood donors and this potential resource is currently under-used.

Adult↗

Screening for hemochromatosis in primary care settings.

Interest in including screening for hemochromatosis in the routine medical care of adults has grown in recent years. In March 1997, at a meeting on iron overload at the Centers for Disease Control and Prevention, the directors of four hemochromatosis screening programs described the major challenges that they faced and the lessons that they learned in implementing their programs. Seven issues were consistently described as important challenges: 1) changes in case definitions of hemochromatosis, 2) selection of screening threshold values and identification of false-positive cases, 3) variability and lack of standardization in screening test measurements, 4) physician education, 5) informed consent and concerns about medical and genetic discrimination, 6) patient compliance with screening and therapy, and 7) incidental detection of iron deficiency. The two programs that have been completed report a prevalence of iron overload from hemochromatosis of 4.2 to 4.5 per 1000 persons screened; this is consistent with findings in the recent literature. All programs report that screening is feasible and propose that hemochromatosis be defined by repeated elevated serum transferrin saturation values(with or without DNA test results) rather than by the clinical outcome of excessive iron in tissue. The goal of screening programs is to diagnose iron status disorders, particularly hemochromatosis, before they lead to iron overload and chronic disease states. Further research is needed on the ability of genetic and phenotypic tests to predict the clinical expression of hemochromatosis. The experiences outlined in this report highlight practical issues that need to be addressed when iron status screening for hemochromatosis is implemented. It is hoped that this information will facilitate similar efforts in other health care settings.

Adult↗

Iron overload, public health, and genetics: evaluating the evidence for hemochromatosis screening.

Population screening for hemochromatosis done by using the transferrin saturation test has been advocated by experts to permit the initiation of therapeutic phlebotomy before the onset of clinical disease. The discovery of a gene associated with hemochromatosis has made DNA testing another option for screening and diagnosis. In this paper, U.S. Preventive Services Task Force criteria are used to evaluate the evidence for the usefulness of population screening done by using iron measures or genetic testing. Published clinical research offers little evidence to suggest that population screening for hemochromatosis done by using genetic testing improves clinical outcomes. Although one recently discovered mutation, C282Y, accounts for 60% to 92% of cases of the disease in series of patients with hemochromatosis, uncertainties remain about the clinical penetrance of various genotypes; the accuracy of genetic testing; and the ethical, legal, and social effects of genetic testing. Before population screening for hemochromatosis done by using transferrin saturation testing can be recommended, laboratory standardization needs to be addressed and questions about risk for clinical disease in asymptomatic persons with mutations or early biochemical expression of disease require resolution. Evidence from case series suggests that hemochromatosis may be associated with liver cancer, other liver disease, diabetes, bradyarrhythmias, and arthritis. In all studies but one, however, estimation of the magnitude and significance of this risk is limited by lack of adequate comparison groups. The need for population data to answer questions about penetrance among asymptomatic persons should not impede efforts to increase the detection and treatment of hemochromatosis in persons found to have elevated iron measures a family history of hemochromatosis, or consistent early signs and symptoms of the disease.

Hemochromatosis↗

Hereditary hemochromatosis masquerading as rheumatoid arthritis.

Early erroneous diagnosis of rheumatic disease is common in subjects with arthropathy due to hereditary hemochromatosis. A 71-year-old male with chronic obstructive pulmonary disease and monoclonal gammopathy underwent hip replacement and was referred to our Department because of altered liver function tests. Test results were negative for hepatitis B surface antigen and hepatitis C virus, and positive for rheumatoid factor. A diagnosis of rheumatoid arthritis had been made on the basis of compatible joint involvement and laboratory data and steroid treatment prescribed. Since his serum ferritin was 3249 ng/mL, genetic testing for hereditary hemochromatosis was carried out and revealed homozygosity for Cys282Tyr mutation in the HFE gene. Liver biopsy disclosed cirrhosis compatible with hemochromatosis. Following a review of the patients' radiographs, the diagnosis of hemochromatosis arthropathy was made. Phlebotomies and family screening for hereditary hemochromatosis were done. The most logical explanation for the positive rheumatoid factor result in this subject are his age and the presence of two chronic diseases involving long-standing antigenic stimulation and monoclonal gammopathy of uncertain significance. It is important to distinguish rheumatoid arthritis from hemochromatosis arthropathy for several reasons: patients with hereditary hemochromatosis do not require corticosteroid treatment; in case of erroneous diagnosis of rheumatoid arthritis, phlebotomy is not started early, and familial genetic counseling is not considered. In male subjects with positive rheumatoid factor and joint and liver disease, hereditary hemochromatosis should be considered. More liberal use of genetic testing is justified in such cases.

Aged↗

Risk of primary non-hepatocellular malignancies in hereditary hemochromatosis.

OBJECTIVE: The relationship between hemochromatosis, a genetic iron disorder, and the risk of hepatocellular carcinoma is well-documented. However, the true incidence of non-hepatocellular malignancies remains ill defined. We performed a retrospective cohort study to identify a possible association between hereditary hemochromatosis and the development of non-hepatocellular carcinomas. MATERIALS AND METHODS: After appropriate institutional review board approval, an extensive chart review was completed on all patients with hereditary hemochromatosis diagnosed between 1986 and 2001. The diagnosis was based on either a genetic study to identify the Cys282Tyr and the His63Asp mutations on the HLA-H gene and/or hepatic tissue diagnosis, in conjunction with a treatment history of therapeutic phlebotomy. Data collection also included documentation of associated malignancies, the presence of co-morbid medical illnesses, and risk factors for cancer. Our database was age-standardized to the United States population using the National Cancer Institute's Surveillance Epidemiology and End Results (SEER) program data to obtain a standardized incidence ratio (SIR) of non-hepatocellular malignancies in our study population. RESULTS: Fifty-nine patients (49 males, 10 females) with a mean age of 46 years (range: 10-68 years) met the criteria for the diagnosis of hereditary hemochromatosis. Of these, 13 patients (22%) had a biopsy-proven diagnosis of a primary non-hepatocellular malignancy giving an age-adjusted SIR of 1.40 (p < 0.04). Histologically, the types of malignancy included: 3 patients with colorectal cancer; 2 patients with gastric carcinoma, 3 patients with prostate cancer; 2 patients with breast cancer; 1 patient with acute myelogenous leukemia, one patient with Hodgkin's lymphoma and one patient with non-Hodgkin's lymphoma. CONCLUSION: While an association between hemochromatosis and hepatocellular carcinoma is well-described, there also appears to be a relationship between hemochromatosis and the development of non-hepatocellular malignancies. Since increased iron stores alone have not been proven to be premalignant in recent studies, interplay between genetic factors in hemochromatosis may play a role as a risk factor in the development of an associated malignancy. Larger cohorts of subjects with hereditary iron overload disorders are needed to confirm our findings. Furthermore, if a causal association between hemochromatosis and common carcinomas does indeed exist, such patients may be candidates for individualized, rigorous cancer screening programs.

Adolescent↗

Monocyte membrane ferritin in hemochromatosis.

To further evaluate a possible abnormality in the reticuloendothelial cells in hemochromatosis, the binding of a monoclonal anti-human liver ferritin antibody to monocytes was studied in 19 patients with hemochromatosis, 8 patients with secondary iron overload, 1 patient with hyperferritinemia without iron overload, and 15 normal volunteers. Binding of the antibody to the monocytes was analyzed using a fluorescence-activated cell sorter (FACS). Binding of the anti-ferritin antibody to monocytes was demonstrated in 34.7 +/- 4.5% (mean +/- standard error) of the monocytes in untreated hemochromatosis patients (mean serum ferritin = 2294 +/- 415 micrograms/L), 6.75 +/- 2.03% in treated hemochromatosis patients (mean serum ferritin = 263 +/- 85 micrograms/L), 12.3 +/- 2.7% of the monocytes in the secondary iron overload patients (mean serum ferritin = 2476 +/- 867 micrograms/L), 4.1% in the patient with hyperferritinemia (serum ferritin = 1192) and 4.1 +/- 0.5% of the monocytes in the normal volunteers (mean serum ferritin = 55.2 +/- 11.9 micrograms/L). % binding of anti-ferritin antibody was significantly greater in hemochromatosis patients compared to patients with secondary iron overload (p less than 0.05) despite a comparable degree of iron overload in the secondary iron overload group. The addition of exogenous human ferritin to samples from treated hemochromatosis patients and normal volunteers did not significantly increase the % of monocytes binding anti-ferritin antibody. These results suggest that monocytes from iron-loaded hemochromatosis patients express increased surface ferritin which may represent release of ferritin and a metabolic defect characteristic of hemochromatosis.

Antibodies, Monoclonal↗