Search PubMed⌕ Search

Biomedical subjects

B R Bacon

Publications and source records attributed to B R Bacon.

At least 19 recordsLinked to original sources

Iron absorption and hepatic iron uptake are increased in a transferrin receptor 2 (Y245X) mutant mouse model of hemochromatosis type 3.

Hereditary hemochromatosis type 3 is an iron (Fe)-overload disorder caused by mutations in transferrin receptor 2 (TfR2). TfR2 is expressed highly in the liver and regulates Fe metabolism. The aim of this study was to investigate duodenal Fe absorption and hepatic Fe uptake in a TfR2 (Y245X) mutant mouse model of hereditary hemochromatosis type 3. Duodenal Fe absorption and hepatic Fe uptake were measured in vivo by 59Fe-labeled ascorbate in TfR2 mutant mice, wild-type mice, and Fe-loaded wild-type mice (2% dietary carbonyl Fe). Gene expression was measured by real-time RT-PCR. Liver nonheme Fe concentration increased progressively with age in TfR2 mutant mice compared with wild-type mice. Fe absorption (both duodenal Fe uptake and transfer) was increased in TfR2 mutant mice compared with wild-type mice. Likewise, expression of genes participating in duodenal Fe uptake (Dcytb, DMT1) and transfer (ferroportin) were increased in TfR2 mutant mice. Nearly all of the absorbed Fe was taken up rapidly by the liver. Despite hepatic Fe loading, hepcidin expression was decreased in TfR2 mutant mice compared with wild-type mice. Even when compared with Fe-loaded wild-type mice, TfR2 mutant mice had increased Fe absorption, increased duodenal Fe transport gene expression, increased liver Fe uptake, and decreased liver hepcidin expression. In conclusion, despite systemic Fe loading, Fe absorption and liver Fe uptake were increased in TfR2 mutant mice in association with decreased expression of hepcidin. These findings support a model in which TfR2 is a sensor of Fe status and regulates duodenal Fe absorption and liver Fe uptake.

Animals↗

Assessing evidence from clinical trials in chronic hepatitis C.

Hepatitis C is a global problem with significantly associated morbidity and mortality. Although some recent therapeutic advances have shown rates of sustained virologic remission of 50% or higher, combination therapy with interferon and ribavirin is often not well tolerated and is giving rise to a growing number of nonresponders. As a result, a large number of experimental drugs for the treatment of chronic hepatitis C are in development. As the clinical trial reports are made available, physicians need to become familiar with issues related to the design of these studies and to develop strategies to interpret the evidence they yield. The articles in this supplement describe the issues in clinical trial design and the evaluation of evidence from clinical trials in patients with chronic hepatitis C.

Antiviral Agents↗

Naturally variant autosomal and sex-linked loci determine the severity of iron overload in beta 2-microglobulin-deficient mice.

Hereditary hemochromatosis (HH) is a common chronic human genetic disorder whose hallmark is systemic iron overload. Homozygosity for a mutation in the MHC class I heavy chain paralogue gene HFE has been found to be a primary cause of HH. However, many individuals homozygous for the defective allele of HFE do not develop iron overload, raising the possibility that genetic variation in modifier loci contributes to the HH phenotype. Mice deficient in the product of the beta(2)-microglobulin (beta(2)M) class I light chain fail to express HFE and other MHC class I family proteins, and they have been found to manifest many characteristics of the HH phenotype. To determine whether natural genetic variation plays a role in controlling iron overload, we performed classical genetic analysis of the iron-loading phenotype in beta(2)M-deficient mice in the context of different genetic backgrounds. Strain background was found to be a major determinant in iron loading. Sex played a role that was less than that of strain background but still significant. Resistance and susceptibility to iron overload segregated as complex genetic traits in F(1) and back-cross progeny. These results suggest the existence of naturally variant autosomal and Y chromosome-linked modifier loci that, in the context of mice genetically predisposed by virtue of a beta(2)M deficiency, can profoundly influence the severity of iron loading. These results thus provide a genetic explanation for some of the variability of the HH phenotype.

Aging↗

Mouse strain differences determine severity of iron accumulation in Hfe knockout model of hereditary hemochromatosis.

Hereditary hemochromatosis (HH) is a common disorder of iron metabolism caused by mutation in HFE, a gene encoding an MHC class I-like protein. Clinical studies demonstrate that the severity of iron loading is highly variable among individuals with identical HFE genotypes. To determine whether genetic factors other than Hfe genotype influence the severity of iron loading in the murine model of HH, we bred the disrupted murine Hfe allele onto three different genetically defined mouse strains (AKR, C57BL/6, and C3H), which differ in basal iron status and sensitivity to dietary iron loading. Serum transferrin saturations (percent saturation of serum transferrin with iron), hepatic and splenic iron concentrations, and hepatocellular iron distribution patterns were compared for wild-type (Hfe +/+), heterozygote (Hfe +/-), and knockout (Hfe -/-) mice from each strain. Although the Hfe -/- mice from all three strains demonstrated increased transferrin saturations and liver iron concentrations compared with Hfe +/+ mice, strain differences in severity of iron accumulation were striking. Targeted disruption of the Hfe gene led to hepatic iron levels in Hfe -/- AKR mice that were 2.5 or 3.6 times higher than those of Hfe -/- C3H or Hfe -/- C57BL/6 mice, respectively. The Hfe -/- mice also demonstrated strain-dependent differences in transferrin saturation, with the highest values in AKR mice and the lowest values in C3H mice. These observations demonstrate that heritable factors markedly influence iron homeostasis in response to Hfe disruption. Analysis of mice from crosses between C57BL/6 and AKR mice should allow the mapping and subsequent identification of genes modifying the severity of iron loading in this murine model of HH.

Animals↗

Hemochromatosis: diagnosis and management.

HH should be distinguished from the other syndromes of iron overload. Many patients with HH have abnormal serum iron values before the development of any significant symptoms or clinical findings, and liver biopsy is less important in these patients. HFE mutation analysis has strengthened our ability to diagnose HH accurately and is useful in family studies. HFE mutations may play a contributory role in some patients with PCT, NASH, or chronic HCV. Generalized population screening for HH may someday become a reality and lead to the identification and treatment of more patients before they have tissue damage or increased morbidity. With the identification of the HFE gene, we are beginning to unravel many of the mysteries of both normal iron absorption and the disorder of iron metabolism found in patients with HH.

HLA Antigens↗

Molecular aspects of iron absorption and HFE expression.

Hereditary hemochromatosis, a disease of iron overload, occurs in about 1 in 200-400 Caucasians. The gene mutated in this disorder is termed HFE. The product of this gene, HFE protein, is homologous to major histocompatibility complex class I proteins, but HFE does not present peptides to T cells. Based on recent structural, biochemical, and cell biological studies, transferrin receptor (TfR) is a ligand for HFE. This association directly links HFE protein to the TfR-mediated regulation of iron homeostasis. Although evidence is accumulating that binding of HFE to TfR is critical for the effects of HFE, the final pieces in the HFE puzzle have not been established. This review focuses on recent advances in HFE research and presents a hypothetical model of HFE function.

Absorption↗

Combination of interferon and ribavirin in chronic hepatitis C: re-treatment of nonresponders to interferon.

Chronic infection with hepatitis C virus (HCV) may result in cirrhosis, liver failure, and hepatocellular carcinoma. A minority of patients have a sustained response to antiviral therapy, and nonresponders remain at risk of developing progressive liver disease. We conducted a randomized, controlled trial of therapy with the combination of interferon (IFN) and ribavirin in patients with chronic hepatitis C who had not responded to an initial course of therapy with IFN alone. A total of 124 patients were randomized to receive the combination of IFN and ribavirin for either 24 or 48 weeks and followed for an additional 24 weeks after stopping therapy. Thirty-eight treated patients (30.6%) achieved a sustained virologic response (undetectable HCV RNA at the 24-week follow-up point). This was associated with significant improvement in necroinflammatory activity noted on liver biopsy. Interestingly, there was not a statistically significant difference in response rates based on the duration of treatment; HCV genotype was the strongest predictor of a sustained response. Sustained responses were noted even in patients with poor predictive factors, including those with advanced hepatic fibrosis or cirrhosis, high levels of HCV RNA in serum, and those infected with HCV genotype 1. The study included 24 patients with normal serum alanine transaminase (ALT) values before therapy who had similar responses to those with initially elevated transaminase values. This study suggests that the combination of IFN and ribavirin is a useful modality of therapy in patients with chronic hepatitis C who did not respond to IFN alone.

Adult↗

A Chinese patient with non-HFE-linked iron overload.

The gene for hemochromatosis (HFE) was recently identified and contains two missense mutations: C282Y and H63D. The C282Y mutation is found homozygous in approximately 85% to 90% of patients of Northern European ancestry with hereditary hemochromatosis. There are no previous reports with results of genetic testing in Chinese patients with regard to iron overload. In this case report, we describe a Chinese woman with marked hepatic iron overload that was nonfamilial, with unusual biopsy findings, in whom neither the C282Y nor the H63D mutations in HFE were found.

Aged↗

Changes in serum lipoprotein profile during interferon therapy in chronic hepatitis C.

OBJECTIVES: Therapy with a interferon is associated with a rise in serum triglyceride levels, although this effect has not been well studied with newer forms of interferon or interferon in combination with ribavirin. METHODS: Review of combined data obtained from several prospective, randomized controlled clinical trials conducted in the clinical studies unit of a tertiary care referral center among patients with chronic hepatitis C undergoing treatment with various forms of a interferon, with or without the addition of ribavirin. Serum levels of triglycerides and cholesterol were measured before and during therapy. Changes in these levels were correlated with baseline characteristics. RESULTS: At baseline, the mean serum triglyceride level among 152 patients studied was 130 mg/dL (range 32-620) and was elevated above normal in three patients (2%). During therapy, triglyceride levels rose significantly early on and began to decline spontaneously after 12 wk, returning to baseline after stopping treatment. Triglyceride levels rose above 500 mg/dL in 18 patients (12%) and above 1000 mg/dL in two patients (1.3%) although none experienced acute complications or clinical symptoms. Serum cholesterol levels did not change significantly during therapy (mean at baseline 172 vs 168 mg/dL at 24 wk). Factors correlated with the rise in triglycerides included baseline triglyceride levels, HCV genotype, and the type of interferon used. CONCLUSIONS: Serum triglyceride levels increase consistently in patients with chronic hepatitis C treated with all forms of a interferon, often to very high levels. These changes do not seem to be associated with clinical signs or complications and triglyceride levels decline while patients are still on therapy and return to normal after stopping.

Adult↗

Spontaneous rupture of the liver upon revascularization during transplantation.

Spontaneous rupture of the liver has been described in association with many benign and malignant conditions. We report, to our knowledge, the first case of spontaneous rupture of the liver upon revascularization, requiring total hepatectomy and portocaval shunt, followed by successful retransplantation. Routine pathological examination of the explanted liver failed to reveal the etiology of the rupture. However, electron microscopy demonstrated abnormal collagen in the hepatic arterial wall compatible with a collagen disorder such as Ehlers-Danlos type IV disease. We conclude that the donor liver had a previously undiagnosed collagen disorder. Review of the literature does not preclude the use of livers from donors with a history of connective tissue disorders. Based on our experience one should exercise caution when using livers from such donors. With a history of connective tissue disorder in an immediate family member, further tests should be performed in the donor to rule out a subclinical connective tissue disorder. In addition, a review of all patients reported thus far to have undergone total hepatectomy and portocaval shunt, followed by liver transplantation as a two-stage procedure is presented.

Adult↗

Transferrin receptor 2: continued expression in mouse liver in the face of iron overload and in hereditary hemochromatosis.

Hereditary hemochromatosis (HH) is a common autosomal recessive disorder characterized by excess absorption of dietary iron and progressive iron deposition in several tissues, particularly liver. Liver disease resulting from iron toxicity is the major cause of death in HH. Hepatic iron loading in HH is progressive despite down-regulation of the classical transferrin receptor (TfR). Recently a human cDNA highly homologous to TfR was identified and reported to encode a protein (TfR2) that binds holotransferrin and mediates uptake of transferrin-bound iron. We independently identified a full-length murine EST encoding the mouse orthologue of the human TfR2. Although homologous to murine TfR in the coding region, the TfR2 transcript does not contain the iron-responsive elements found in the 3' untranslated sequence of TfR mRNA. To determine the potential role for TfR2 in iron uptake by liver, we investigated TfR and TfR2 expression in normal mice and murine models of dietary iron overload (2% carbonyl iron), dietary iron deficiency (gastric parietal cell ablation), and HH (HFE -/-). Northern blot analyses demonstrated distinct tissue-specific patterns of expression for TfR and TfR2, with TfR2 expressed highly only in liver where TfR expression is low. In situ hybridization demonstrated abundant TfR2 expression in hepatocytes. In contrast to TfR, TfR2 expression in liver was not increased in iron deficiency. Furthermore, hepatic expression of TfR2 was not down-regulated with dietary iron loading or in the HFE -/- model of HH. From these observations, we propose that TfR2 allows continued uptake of Tf-bound iron by hepatocytes even after TfR has been down-regulated by iron overload, and this uptake contributes to the susceptibility of liver to iron loading in HH.

Amino Acid Sequence↗

Hepatology in the new millennium. Advances in viral hepatitis, hepatic disorders, and liver transplantation.

The 1990s have been an exciting time for the field of hepatology. There has been a rapid expansion of knowledge, and new discoveries have revolutionized the field. It is now possible to characterize and treat many more liver diseases. Newer medications in the form of interferon alfa and nucleoside analogues have been added to the armamentarium for treatment of chronic viral hepatitis. Liver transplantation has been established as an effective therapy for patients with end-stage liver disease.

Forecasting↗

Morphology of liver repair following cholestatic liver injury: resolution of ductal hyperplasia, matrix deposition and regression of myofibroblasts.

BACKGROUND/AIMS: Myofibroblasts are the primary cells responsible for increased matrix deposition in hepatic fibrosis. Activation of hepatic stellate cells and portal fibroblasts to myofibroblasts during cholestatic liver injury is accompanied by increased expression of the activation marker, alpha-smooth muscle actin (SMA), and collagen genes. In contrast to our understanding of injury, the cellular mechanisms of liver repair are not well defined. This study was designed to examine the morphological relationship between bile duct hyperplasia, matrix deposition and myofibroblast phenotype in a model of chronic cholestatic liver injury and repair. METHODS: Reversible extrahepatic obstruction was accomplished in rats using a soft vessel loop suspended from the anterior abdominal wall: duct manipulation alone was performed in sham-operated controls. After 7 days, rats were either sacrificed or decompressed by release of the loop and subsequently sacrificed 2-10 days after reversal. Liver sections were obtained for in situ hybridization for procollagen alpha1(I) mRNA, immunohistochemical staining for SMA and cytokeratin 19, and histochemical staining for reticulin. RESULTS: Cholestatic livers demonstrated bile duct hyperplasia, which reversed to normal within 10 days after decompression. Fibrosis was also substantially reduced during this period. SMA-positive myofibroblasts were abundant and localized to regions adjacent to proliferating ducts and excess matrix in the obstructed animals. Decompressed livers showed a dramatic time-dependent reduction in the number of SMA-positive cells and in the expression of procollagen I mRNA. CONCLUSIONS: Our results show that the disappearance of bile duct hyperplasia after biliary decompression is accompanied by a similarly rapid loss of SMA-positive myofibroblasts. Both cellular events may abrogate enhanced matrix synthesis and allow repair to occur.

Actins↗

Iron reduction as an adjuvant to interferon therapy in patients with chronic hepatitis C who have previously not responded to interferon: a multicenter, prospective, randomized, controlled trial.

Hepatic iron concentration has consistently been observed as being directly correlated with the response to interferon therapy in chronic hepatitis C virus (HCV). We therefore conducted a randomized, controlled trial comparing iron reduction by phlebotomy with iron reduction followed by retreatment with interferon in 96 patients with chronic hepatitis C who had previously not responded to a course of interferon. During the initial phase when all patients were undergoing phlebotomy, we found that serum alanine transaminase (ALT) activities decreased but by less than 50% from baseline in 67 patients (89%), decreased by more than 50% in 12 patients (13%) and became normal in 9 patients (9%) with no overall change in HCV-RNA levels. Subsequently no patient in either treatment group achieved a sustained virologic response. Improvements in necroinflammatory changes were noted in liver biopsy specimens in those patients receiving phlebotomy plus interferon (mean index 8.59 vs. 7.37, P <. 05). A slight but not statistically significant decrease in histologic activity index was noted in those subjects treated by phlebotomy alone (mean index 8.4 vs. 7.75, P not significant). We conclude that, although prior phlebotomy therapy does not improve the rate of sustained response to interferon retreatment, it does result in less liver injury manifested by a decrease in serum transaminase activity and a slight improvement in liver histopathology.

Adult↗

Clinical improvement in patients with decompensated liver disease caused by hepatitis B after treatment with lamivudine.

Lamivudine is effective in inhibiting hepatitis B virus (HBV) replication, and its clinical use in patients with chronic hepatitis B is associated with improvements in serum aminotransferase levels and liver histopathologic characteristics. Few data are available on its use in patients with advanced liver disease. We report on the outcomes of 5 patients with hepatic decompensation caused by chronic hepatitis B treated long term with lamivudine. All patients were adult white men seropositive for hepatitis B surface antigen (HBsAg) and hepatitis B e antigen (HBeAg) before therapy. All 5 patients had biopsy-proven cirrhosis with clinical and biochemical evidence of hepatic decompensation. Two patients had Child's class C cirrhosis; 2 patients, class B; and 1 patient, class A (although this patient had persistent portasystemic encephalopathy and developed variceal bleeding). HBV DNA became undetectable in all patients and remained so throughout the study. Both patients with Child's class C and 1 patient with class B cirrhosis had significant clinical improvement. Child-Pugh scores improved from 12 to 7 and 11 to 7 in the 2 patients with Child's class C cirrhosis, and the patient with class B cirrhosis had complete resolution of troublesome encephalopathy. Serum aminotransferase, albumin, and total bilirubin levels improved significantly in 3 of 5 patients. One patient with Child's class B cirrhosis underwent orthotopic liver transplantation at week 13 after dramatic increases in liver tests and clinical worsening. The patient subsequently cleared HBeAg and HBsAg from serum posttransplantation. In conclusion, prolonged therapy with lamivudine resulted in improved serum biochemical values and loss of HBV DNA in patients with decompensated cirrhosis. Clinical improvements, reflected in Child-Pugh classification and functional status, may also occur, particularly among those with Child's class C disease initially.

Aged↗