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Biomedical subjects

B Wonke

Publications and source records attributed to B Wonke.

At least 37 records · Page 2Linked to original sources

Combination therapy with interferon alpha and ribavirin for chronic hepatitis C virus infection in thalassaemic patients.

Hepatitis C virus (HCV) infection is common in multi-transfused thalassaemic patients, and, in combination with transfusional iron overload, can result in progressive liver disease. Therapy with interferon-alpha causes a sustained loss of HCV in only 15-25% of patients, and there is as yet no established effective therapy for those who fail to respond. We have conducted a pilot study of combination anti-viral therapy for patients who failed to respond, or relapsed after an initial response to single-agent interferon-alpha. Patients were treated for 6 months with interferon-alpha 2b, given subcutaneously three mega units thrice weekly, together with ribavirin, orally 1 g daily. 11 patients were enrolled, their median age was 24.9 years. 8/10 evaluable patients had cirrhosis on biopsy, five were infected with HCV type 1 and all but one had initial HCV RNA titres > 10(6) genomes/ml. Five patients (45.5%) had a sustained virological response with loss of serum HCV RNA for > 6 months after finishing therapy. There was no clear association between response to therapy and age, histology, HCV genotype, or HCV RNA titre. Transfusion requirements were significantly increased during the treatment phase, probably due to ribavirin-induced haemolysis, and this necessitated intensification of iron chelation therapy. Serum ferritin levels decreased significantly in those who responded. These results suggest that combination therapy is potent in clearing HCV infection, and may provide effective second-line therapy for thalassaemic patients who have failed to respond to interferon-alpha monotherapy.

Adolescent↗

Incidence of endocrine complications and clinical disease severity related to genotype analysis and iron overload in patients with beta-thalassaemia.

The incidence of endocrine dysfunction in relation to the detailed genotype of beta-thalassaemia is investigated in this study. In addition, the association of genotype to specific clinical features of beta-thalassaemia is examined, together with the relationship between serum ferritin levels and endocrine complications. Ninety-seven patients were included, all with transfusion dependent beta-thalassaemia. Patients were divided into 2 categories; group 1 consisted of patients with a beta0/beta0 genotype with or without a concomitant alpha-globin gene deletion as well as patients with beta0/beta+ or beta+/beta+ genotype and normal alpha-globin chain synthesis. Group 2 included patients with beta+/beta+ or beta+/beta0 genotype and one alpha-globin chain deletion and those with a moderate amount of beta-globin chain synthesis (beta++) and normal alpha-globin chain synthesis. The results showed that group 1 patients were more likely to have severe clinical disease (p=0.005). Sixty-four patients (66%) had at least 1 endocrine disorder and 39 (40%) had multiple endocrinopathies; the most common abnormality was hypogonadotrophic hypogonadism (HH). There was a significant association between patients with group 1 genotypes and the presence of HH and impaired glucose tolerance or diabetes. A positive correlation was demonstrated between serum ferritin concentrations and the presence of thyroid or parathyroid dysfunction.

Adolescent↗

Relationship between the severity of beta-thalassaemia syndromes and the number of alleviating mutations.

Thalassaemia intermedia, defined as homozygous beta-thalassaemia in which patients are not transfusion-dependent, covers a wide range of clinical severity. It may arise because one or more genetic factors ameliorate the otherwise severe phenotype of thalassaemia major. Exactly which and how many such mutations are necessary to produce a thalassaemia intermedia phenotype is incompletely understood, although such information would be useful both clinically and for prenatal diagnosis. We examined DNA from 28 patients with thalassaemia intermedia resident in London and 28 matched patients with thalassaemia major, for 3 types of genetic modifying factors, namely; mild beta-thalassaemia mutations, the upstream XmnI G-gamma globin gene polymorphism, and alpha-globin gene deletions. The results show that the number of alleviating mutations present has a large influence on the phenotype of patients with homozygous beta-thalassaemias. A single alleviating mutation was present in 56% of thalassaemia intermedia subjects compared with 26% of thalassaemia major subjects. Two alleviating mutations were present in 33% of thalassaemia intermedia subjects compared with 1 thalassaemia major subject. No patients with thalassaemia major had 3 alleviating mutations, in contrast to 11% of those with thalassaemia intermedia. Although the findings did not account for the full range of phenotypic variation, such information is of potential value both in the clinical management and the prenatal diagnosis of homozygous beta-thalassaemia.

Adolescent↗

Iron chelation therapy.

Desferrioxamine (DFX) remains the most effective and safe iron chelator for treatment of patients with transfusional iron overload. It is usually given by intermittent subcutaneous infusions for 8-12 h on 4-6 days weekly using a battery-driven pump. Disposable balloon infusers provide a suitable method of giving continuous subcutaneous infusions with improved patient compliance. For patients with cardiac abnormalities due to iron overload, continuous intravenous desferrioxamine is essential to eliminate toxic plasma non-transferrin bound iron and to reduce body iron stores. Deferiprone (L1, l-2 dimethyl-3hydroxy-pyrid-4-one) is a less effective iron chelator but has the advantage of being orally active. Long-term trials in which patients have taken 75 mg/kg/day have shown that deferiprone is capable of maintaining body iron stores at safe levels in a proportion of thalassaemia major patients but body iron stores, assessed by liver biopsy remain at high levels (> 15.0 mg/g dry weight) in a substantial number of patients. These concentrations have been associated with tissue damage. Trials of increased doses of deferiprone (up to 100 mg/kg/day) or of combined therapy with daily deferiprone and DFX or 1 or 2 days each week are being carried out in an attempt to achieve lower body iron burden in these patients. Preliminary results show that the drugs can be given safely together and urine iron excretion produced is additive, implying that the drugs chelate different body iron pools. Patients previously well chelated with serum ferritin levels less than 2500 micrograms/L have the fewest side-effects from deferiprone and usually may be kept at the same level of body iron for periods of at least 4 years, assessed by serum ferritin and urine iron excretion. The side-effects of deferiprone result in some patients discontinuing therapy. These side-effects, especially arthropathy, mainly occur in previously poorly chelated and so the most heavily iron-loaded patients. Nausea and other gastrointestinal symptoms, agranulocytosis or milder degrees of neutropenia account with arthropathy for nearly all the withdrawals from deferiprone therapy. Patients with cardiomyopathy due to iron overload should be given intravenous DFX rather than deferiprone. Deferiprone, licensed for pharmaceutical use in India, awaits official approval for widespread clinical use in Western Europe and North America. Meanwhile, attempts to find new orally active iron chelators and improved methods of administration of desferrioxamine are in progress.

Deferiprone↗

Interaction of hemoglobin E and pyrimidine 5' nucleotidase deficiency.

A Bangladeshi family is described in which the genes for both hemoglobin E (Hb E) and pyrimidine 5' nucleotidase deficiency are segregating. An individual homozygous for both these conditions has a severe hemolytic anemia, whereas family members who are homozygous for Hb E are asymptomatic and those homozygous for pyrimidine 5' nucleotidase deficiency have the mild hemolytic anemia that is characteristic of this disorder. Globin-chain synthesis experiments have shown that the mechanism underlying the interaction between these two genotypes is a marked decrease in the stability of Hb E in pyrimidine 5' nucleotidase-deficient red blood cells (RBCs). It has also been found that in the enzyme-deficient RBCs in which Hb E is highly unstable, free alpha-chains, though not beta E-chains, acoumulate on the membrane. In view of the increasing evidence that the hemolysis associated with pyrimidine 5' nucleotidase deficiency results not only from an increase in the level of erythrocyte pyrimidines, but also from inhibition of the hexose monophosphate shunt activity in young erythrocytes, it is likely that the marked instability of Hb E in the enzyme-deficient cells results from oxidant damage acting on a mildly unstable Hb variant. These observations may have important implications for the better understanding of the pathophysiology of Hb E/beta-thalassemia, globally the commonest important form of thalassemia.

5'-Nucleotidase↗

Moderate reduction of beta-globin gene transcript by a novel mutation in the 5' untranslated region: a study of its interaction with other genotypes in two families.

We have identified two individuals of Greek Cypriot origin with thalassemia intermedia. Molecular analysis has shown that each individual is a compound heterozygote for a previously described beta zero thalassemia allele and a novel mutation, C-->G in position +33, in the 5' untranslated region of the beta globin gene. In both families the beta +33 allele is associated with the same beta haplotype (-++- ) suggesting that it is likely to be of a single origin, beta-cDNAs from normal and mutant beta alleles were isolated from peripheral blood reticulocytes using the technique of reverse transcription-polymerase chain reaction. Because the beta +33 (C-->G) mutation creates a cutting site for the restriction enzyme NlalV, we could demonstrate by differential restriction analysis that the beta gene with +33 mutation showed 25% to 35% residual activity compared with normal. The additive effect of this moderate deficit in beta globin production with the beta zero thalassemia mutation would explain the clinical phenotypes observed in the two probands. In contrast, two siblings of one proband who were also compound heterozygotes for the same beta thalassemia mutations, as well as heterozygotes for a nondeletional alpha thalassemia variant, and two other compound heterozygotes for the beta +33 and a beta+ thalassemia allele were completely asymptomatic. Individuals heterozygous for the beta +33 C-G mutation alone are clinically and hematologically silent, with normal red blood cell indices and normal levels of hemoglobin (Hb) A2. A direct relationship between genotypic and phenotypic severity is clearly demonstrated in these cases with obvious implications for prenatal diagnosis.

Alleles↗

A novel delivery system for continuous desferrioxamine infusion in transfusional iron overload.

Fifteen iron-overloaded thalassaemia major (TM) patients and two homozygous sickle cell patients (SCD) were treated continuously for 7d each week with the novel 48 h continuous subcutaneous (s.c.) desferrioxamine (DFX) delivery device (code C1083, Baxter) and 10 TM patients received the 24 h continuous intravenous (i.v.) DFX delivery device (code C1071). The 27 patients had previously received conventional s.c. DFX for 8-10h on 5 or more days each week. The serum non-transferrin bound iron (NTBI) levels fell significantly in both groups within 12h of commencing the continuous infusion. In the s.c. group the mean level fell from 4.2 to 2.0 mumol/l (P = 0.001), whereas in the i.v. group the mean level fell from 3.6 to 0.1 mumol/l (P = 0.006) the initial levels being measured 12h after stopping conventional s.c. DFX. After 4 weeks there was a significant fall in serum ferritin in both groups (P = 0.009). The new DFX delivery device is effective at removing toxicfree iron from plasma and reducing body iron. Moreover, it is preferred by patients with much improved compliance compared to the conventional s.c. DFX pump.

Adolescent↗

Sperm concentrations and quality in beta-thalassaemia major.

We report semen analyses in eight patients with beta-thalassaemia major, with poor results in all but the youngest. The causation is multi-factorial, with iron deposition in the pituitary gland resulting from life-long dependence on blood transfusions being a major factor. We speculate on other contributing causes, but further research is required to elucidate these. Improving haematological care means that these men are increasingly surviving to adult life. Relevant techniques to enable them to achieve their desire for fatherhood are considered.

Adolescent↗

Pharmacokinetics of the oral iron chelator deferiprone (L1) in patients with iron overload.

Single oral dose pharmacokinetics of the iron chelator deferiprone (L1) were studied in 24 patients with chronic iron overload and correlated with 24 h urinary iron excretion (UIE) and creatinine clearance. Absorption of L1 was rapid with a t1/2 of 22.2 +/- 17.7 (mean +/- SD) min. The elimination half-life (elt1/2) of the drug was 91.1 +/- 33.1 min and of its metabolite, L1-glucuronide (L1G) 147.7 +/- 52.0 min. Creatinine clearance of the patients correlated significantly with the elimination t1/2 of L1G (r = -0.79, P = 0.002). There was also a significant correlation between 24 h UIE in the 14 patients studied and L1 versus time area under the curve (AUC) (P = 0.007). The total amount of L1 recovered in urine in 24 h comprised 77.9 +/- 13.3% of the L1 dose. L1 efficiency (the 24 h UIE divided by the amount of iron the oral dose of L1 is capable of binding) in the 14 patients was 3.8 +/- 1.9%. These data show for the first time that the urinary elimination of L1G is influenced by the renal function of the patient. Although no significant accumulation of L1 and L1G will occur in most of the patients if L1 is given more than once daily, in some patients with impaired renal function, L1G may accumulate.

Administration, Oral↗

Results of long-term deferiprone (L1) therapy: a report by the International Study Group on Oral Iron Chelators.

This report updates the combined experience of four centres involved in the long-term treatment of transfusional iron overload in 84 patients with the oral iron chelator deferiprone (L1) over 167 patient-years. The source of L1 was variable, including two university research laboratories and three pharmaceutical firms. Compliance was rated as excellent in 48%, intermediate in 36%, and poor in 16% of patients. On a mean L1 dose of 73-81 mg/kg/d, urinary iron excretion was stable, at around 0.5 mg/kg/d, with no indication of a diminishing response with time. Serum ferritin showed a very steady decrease with time from an initial mean +/- 1 SD of 4207 +/- 3118 to 1779 +/- 1154 micrograms/l after 48 months (P < 0.001). 17 patients abandoned L1 therapy. Major complications of L1 requiring permanent discontinuation of treatment included agranulocytosis (three), severe nausea (four), arthritis (two) and persistent liver dysfunction (one). The remaining patients abandoned treatment because of low compliance (three) and conditions unrelated to L1 toxicity (four). Lesser complications permitting continued L1 treatment included transient mild neutropenia (four), zinc deficiency (12), transient increase in liver enzymes (37), moderate nausea (three) and arthropathy (17). There was no treatment-related mortality. Although the complications associated with L1 treatment are significant and require close monitoring, they do not preclude effective long-term therapy in the vast majority of patients. Further well-controlled prospective studies of L1 are required in order to enable proper judgement of its suitability for general long-term clinical use.

Adult↗

Fertility in beta thalassaemia major: a report of 16 pregnancies, preconceptual evaluation and a review of the literature.

OBJECTIVES: To examine the pregnancies, mode of delivery and outcomes, review the literature on fertility and discuss preconceptual guidance for women with beta thalassaemia major. DESIGN: An observational study. SUBJECTS: Sixteen women with beta thalassaemia major. SETTING: Two collaborating London teaching hospitals. MAIN OUTCOME MEASURES: Pre-pregnancy assessment, pregnancy course, mode of delivery, gestational age at delivery and birthweight. RESULTS: There were 16 pregnancies in 11 women. Three of these pregnancies were terminated. Of the 13 deliveries, there were two normal deliveries, one forceps delivery and 10 caesarean sections. The main findings in a further five women seeking fertility treatment were of hypogonadotrophic hypogonadism, diabetes and cardiomyopathy. CONCLUSIONS: Pregnancy in women with beta thalassaemia major does not appear to have a deleterious effect on the course of the disease. No increased obstetric complications were encountered except for the high caesarean section rate, essentially due to cephalopelvic disproportion. A high incidence of cardiomyopathy and diabetes dictates a careful assessment before embarking on ovulation induction to treat the hypogonadotrophic hypogonadism which is common in these women.

Adult↗

Psychosocial and clinical burden of thalassaemia intermedia and its implications for prenatal diagnosis.

Twenty eight patients with thalassaemia intermedia and their parents were interviewed using specifically designed questionnaires to evaluate psychosocial burden. Hospital notes were analysed for clinical burden. A wide variation was found for both patients and parents, ranging from virtually unaffected to severely affected. Normal sexual function and setting up a family were mentioned by patients and parents as being particularly important for quality of life. Over half (58%) of the patients had problems with sexual maturation and functioning, and continuous monitoring of all patients with thalassaemia intermedia by a paediatric endocrinologist is therefore strongly indicated. Most parents said, in light of their experiences, that they would opt for prenatal diagnosis and termination of affected pregnancies even if a genotype predicting the mild form of disorder were discovered.

Abortion, Legal↗

Changes in transferrin saturation after treatment with the oral iron chelator deferiprone in patients with iron overload.

AIMS: To evaluate the changes in transferrin saturation in patients with iron overload following the oral administration of the iron chelator deferiprone; to assess the correlation between the degree of transferrin desaturation, the deferiprone dose, and urinary iron excretion. METHODS: Serum samples were obtained from 16 patients with iron overload at different time intervals following the oral administration of deferiprone (50 mg/kg). These samples were analysed using 6M urea/polyacrylamide gel electrophoresis (UPAGE). This method is able to resolve serum transferrin into four different forms (free iron, two forms of monoferric, and diferric). The deferiprone concentration in these samples was estimated using high pressure liquid chromatography (HPLC). Zero time samples (t0) from 10 patients were incubated with 150 microM deferiprone or normal saline either at room temperature or at 37 degrees C for 30 minutes and 24 hours, and also at -20 degrees C for six weeks. Samples were then analysed using UPAGE. RESULTS: A maximum decrease in transferrin saturation from (mean (SD)) 93.0 (10.6)% to 54.5 (17.2)% was observed 72.5 (50.0) minutes after deferiprone administration and in most of the patients coincided with peak deferiprone concentration. This was associated with a maximum rise in the percentage of iron free transferrin (apotransferrin) from 2.9 (7.0)% to 27.3 (17.8)%. The total amount of iron estimated to be removed from transferrin constituted 21.3 (20.2)% of the 24 hour urinary iron excretion measured during the study. When deferiprone (150 mumol/l) was incubated in vitro with t0 samples from 10 patients for 30 minutes and 24 hours at room temperature, 37 degrees C, and at -20 degrees C for six weeks, deferiprone was more efficient at removing iron from transferrin at 37 degrees C, with maximum transferrin desaturation accomplished within 30 minutes compared with 24 hours at room temperature. CONCLUSIONS: The results confirm that deferiprone can remove iron from transferrin when administered orally to patients with iron overload and that transferrin bound iron may, therefore, be a significant source of the iron chelated by deferiprone in vivo.

Administration, Oral↗

The effect of deferiprone (L1) and desferrioxamine on myelopoiesis using a liquid culture system.

Agranulocytosis was observed in a 63-year-old patient with myelodysplasia 6 weeks after commencing chelation with the oral iron chelator deferiprone (1,2-dimethyl-3-hydroxypyrid-4-one, L1) at a daily dose of 79 mg/kg. Using a liquid culture system no difference was observed when L1 toxicity to normal and patient myelopoiesis was compared (IC50: 150 v 172 microM respectively). L1 was found to be less toxic than desferrioxamine (DFX) (IC50: 150 v 9 microM respectively) to normal myelopoiesis. Delayed addition of iron to myeloid cultures containing an inhibitory concentration of L1 or DFX was associated with reversal of chelator-induced inhibition of myelopoiesis up to 6 h but not after 24 h. Further studies are needed to determine the incidence and elucidate the pathogenesis of agranulocytosis associated with L1 therapy.

Agranulocytosis↗