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Browsing by Author "Wickramarathne, N."

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    Blood transfusion therapy for β-thalassemia major and hemoglobin E β-thalassemia: adequacy, trends, and determinants in Sri Lanka.
    (John Wiley, 2019) Mettananda, S.; Pathiraja, H.; Peiris, R.; Wickramarathne, N.; Bandara, D.; de Silva, U.; Mettananda, C.; Premawardhena, A.
    BACKGROUND: Regular blood transfusion therapy still remains the cornerstone in the management of β-thalassemia. Although recommendations are clear for patients with β-thalassemia major, uniform transfusion guidelines are lacking for patients with hemoglobin E β-thalassemia. In this study, we aim to describe the adequacy, trends, and determinants of blood transfusion therapy in a large cohort of pediatric patients with β-thalassemia major and hemoglobin E β-thalassemia. METHODS/PROCEDURE: This cross-sectional study was performed among all regularly transfused patents with β-thalassemia aged 2 to 18 years attending three large thalassemia centers in Sri Lanka. Data were collected using an interviewer-administered questionnaire, perusal of clinical records, and physical examination of patients by trained doctors. RESULTS: A total of 328 patients (male 47%) were recruited; 83% had β-thalassemia major, whereas 16% had hemoglobin E β-thalassemia. Sixty-one percent of patients had low pretransfusion hemoglobin levels (< 9.0 g/dL) despite receiving high transfusion volumes (> 200 mL/kg/year) by a majority (56%). Median pretransfusion hemoglobin was significantly lower in patients with hemoglobin E β-thalassemia compared with β-thalassemia major (P < 0.001); however, there was no difference in requirement for high transfusion volumes over 200 mL/kg/year in both groups (P = 0.14). Hepatomegaly and splenomegaly were more common in hemoglobin E β-thalassemia and were associated with lower pretransfusion hemoglobin. Transfusion requirements were higher among patients with hepatitis C and in those who are underweight. CONCLUSIONS: Over 60% of regularly transfused patients with β-thalassemia have low pretransfusion hemoglobin levels despite receiving large transfusion volumes. Patients with hemoglobin E β-thalassemia are undertransfused and specific recommendations should be developed to guide transfusions in these patients.
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    Efficacy and Safety of Oral Hydroxyurea in Patients with Transfusion Dependent β Thalassaemia: a Randomized Double-Blind Placebo-Controlled Clinical Trial
    (Sri Lanka Medical Association, 2020) Yasara, N.; Wickramarathne, N.; Silva, I.; Hameed, N.; Attanayaka, A.M.K.R.; Jayasinghe, V.L.; Wickramasinghe, N.; Rodrigo, R.; Perera, L.; Mettananda, K.C.D.; Manamperi, A.; Premawardhena, A.; Mettananda, S.
    INTRODUCTION AND OBJECTIVES: Patients with β- thalassaemia require blood transfusions and iron chelation for life. Hydroxyurea is a licenced medication for sickle cell disease but its usefulness in transfusion dependent β-thalassaemia is unclear. Here, we aim to assess the efficacy and safety of oral hydroxyurea in patients with transfusion dependent β-thalassaemia. METHODS: A phase III randomized double-blind placebo-controlled clinical trial was conducted at Thalassaemia Unit of Colombo North Teaching Hospital in 2019. Forty-one patients with transfusion dependent β-thalassaemia were randomized into hydroxyurea (10-20mg/kg/day) or placebo (pharmaceutically inert capsule identical to hydroxyurea) groups. Transfused blood volume, pre-transfusion haemoglobin, haemoglobin F level and side effects were monitored monthly during 6- month treatment and 6-month follow-up periods. Adverse events were assessed by trained medical officers. The study was approved by ethics committee of University of Kelaniya and registered in Sri Lanka Clinical Trials Registry (SLCTR/ 2018/024). RESULTS: Of the 41 (hydroxyurea-20; placebo-21) patients, three discontinued treatment due to thrombocytopenia (hydroxyurea-2) and rash (placebo-1). Baseline characteristics of two groups were similar. Mean pre-transfusion haemoglobin (8.52+0.57 vs 8.38+0.55, p=0.45) and haemoglobin F levels (4.3+7.1% vs 3.1+1.9%, p=0.48) were higher in hydroxyurea group compared to placebo. Also, transfused blood volume was lower in hydroxyurea group (102+24ml/kg vs 111+27ml/kg, p=0.3). However, none were statistically significant. Based on elevation of haemoglobin F (>1.5% from baseline), we identified 6/18 patients as hydroxyurea responders. Hydroxyurea responders required significantly lower blood volume (87+13ml/kg) compared to non-responders (110+25ml/kg, p=0.05) and placebo group (111+27ml/kg, p<0.05) while maintaining higher pre-transfusion haemoglobin level (8.6+0.5 vs 8.4+0.5 and 8.3+0.5). No serious side effects were reported. CONCLUSIONS: One-third of patients with transfusion dependent β-thalassaemia responded to hydroxyurea treatment requiring 20% less blood compared to controls. No serious side effects were reported following hydroxyurea treatment.
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    Efficacy and safety of oral hydroxyurea in transfusion-dependent β-thalassaemia: a protocol for randomised double-blind controlled clinical trial
    (BMJ Publishing Group Ltd., 2020) Yasara, N.; Wickramarathne, N.; Mettananda, C.; Manamperi, A.; Premawardhena, A.; Mettananda, S.
    INTRODUCTION: Despite being one of the first diseases to be genetically characterised, β-thalassaemia remains a disorder without a cure in a majority of patients. Most patients with β-thalassaemia receive only supportive treatment and therefore have a poor quality of life and shorter life spans. Hydroxyurea, which has shown to induce fetal haemoglobin synthesis in human erythroid cells, is currently recommended for the treatment of sickle cell disease. However, its clinical usefulness in transfusion-dependent β-thalassaemia is unclear. Here, we present a protocol for a randomised double-blind controlled clinical trial to evaluate the efficacy and safety of oral hydroxyurea in transfusion-dependent β-thalassaemia. METHODS AND ANALYSIS: This single-centre randomised double-blind placebo-controlled clinical trial is conducted at the Thalassaemia Centre of Colombo North Teaching Hospital, Ragama, Sri Lanka. Adult and adolescent patients with haematologically and genetically confirmed transfusion-dependent β-thalassaemia are enrolled and randomised into the intervention or control group. The intervention group receives oral hydroxyurea 10-20 mg/kg daily for 6 months, while the control group receives a placebo which is identical in size, shape and colour to hydroxyurea without its active ingredient. Transfused blood volume, pretransfusion haemoglobin level, fetal haemoglobin percentage and adverse effects of treatment are monitored during treatment and 6 months post-treatment. Cessation or reduction of blood transfusions during the treatment period will be the primary outcome measure. The statistical analysis will be based on intention to treat. ETHICS AND DISSEMINATION: Ethical approval has been obtained from the Ethics Committee of Faculty of Medicine, University of Kelaniya (P/116/05/2018) and the trial is approved by the National Medicinal Regulatory Authority of Sri Lanka. Results of the trial will be disseminated in scientific publications in reputed journals.
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    Hydroxyurea for transfusion dependent β-thalassaemia: A randomized double-blind placebo-controlled clinical trial
    (Sri Lanka Medical Association, 2021) Yasara, N.; Wickramarathne, N.; Silva, I.; Hameed, N.; Attanayaka, A.M.K.R.; Jayasinghe, V.L.; Gunathilaka, P.A.C.K.; Wickramasinghe, N.; Rodrigo, R.; Perera, L; Perera, P.S.; Mettananda, K.C.D.; Manamperi, A.; Premawardhena, A.; Mettananda, S.
    Introduction and objectives Hydroxyurea induces fetal haemoglobin in vitro however, its clinical usefulness in β-thalassaemia is unclear. Here, we aim to assess the efficacy and safety of oral hydroxyurea in patients with transfusion dependent β-thalassaemia. Methods A phase 3 randomized double-blind placebo-controlled clinical trial was conducted at Colombo North Teaching Hospital in 2019/20. Sixty patients with transfusion dependent β-thalassaemia were randomized into hydroxyurea (10-20mg/kg/day) or placebo groups. Transfused blood volume, pre-transfusion haemoglobin, fetal haemoglobin and adverse effects were monitored during 6-month treatment and post-treatment periods. The study was approved by the ethics committee of University of Kelaniya and registered in Sri Lanka Clinical Trials Registry (SLCTR/2018/024). Results Fifty-four (hydroxyurea-27; placebo-27) patients completed the trial. Mean pre-transfusion haemoglobin (8.2±0.8g/ dLvs8.0±0.88g/dL, p=0.43) and fetal haemoglobin levels (7.9±11.2%vs4.6±4.3%, p=0.17) were higher in hydroxyurea group compared to placebo. Also, transfused blood volume was lower in the hydroxyurea group (94±29ml/kgvs102±28ml/kg, p=0.34). However, none were statistically significant. Based on elevation of fetal haemoglobin (>1.5% from baseline), we identified 12/27 patients who respond well to hydroxyurea (hydroxyurea-responders). Hydroxyurea-responders required significantly lower blood volume (77±27ml/kg) compared to non-responders (108±24ml/kg, p<0.01) and placebo group (102±28ml/kg, p<0.05). HbE β-thalassaemia sub-type (p<0.01) and Xmn1 polymorphism of γ-globin gene (p<0.05) were significant predictors of response to hydroxyurea. No serious side effects due to hydroxyurea were reported. Conclusion Over 40% of patients with transfusion dependent β-thalassaemia- specifically those with HbE β-thalassaemia and Xmn1 polymorphism of γ-globin gene- responded to hydroxyurea and required 25% less blood compared to controls. No serious adverse effects were reported following hydroxyurea treatment.
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    A randomised double-blind placebo-controlled clinical trial of oral hydroxyurea for transfusion-dependent β-thalassaemia
    (Nature Publishing Group, 2022) Yasara, N.; Wickramarathne, N.; Mettananda, C.; Silva, I.; Hameed, N.; Attanayaka, K.; Rodrigo, R.; Wickramasinghe, N.; Perera, L.; Manamperi, A.; Premawardhena, A.; Mettananda, S.
    Hydroxyurea is an antimetabolite drug that induces fetal haemoglobin in sickle cell disease. However, its clinical usefulness in β-thalassaemia is unproven. We conducted a randomised, double-blind, placebo-controlled clinical trial to evaluate the efficacy and safety of hydroxyurea in transfusion-dependent β-thalassaemia. Sixty patients were assigned 1:1 to oral hydroxyurea 10-20 mg/kg/day or placebo for 6 months by stratified block randomisation. Hydroxyurea treatment did not alter the blood transfusion volume overall. However, a significantly higher proportion of patients on hydroxyurea showed increases in fetal haemoglobin percentage (89% vs. 59%; p < 0.05) and reductions in erythropoietic stress as measured by soluble transferrin receptor concentration (79% vs. 40%; p < 0.05). Based on fetal haemoglobin induction (> 1.5%), 44% of patients were identified as hydroxyurea-responders. Hydroxyurea-responders, required significantly lower blood volume (77 ± SD27ml/kg) compared to hydroxyurea-non-responders (108 ± SD24ml/kg; p < 0.01) and placebo-receivers (102 ± 28ml/kg; p < 0.05). Response to hydroxyurea was significantly higher in patients with HbE β-thalassaemia genotype (50% vs. 0%; p < 0.01) and Xmn1 polymorphism of the γ-globin gene (67% vs. 27%; p < 0.05). We conclude that oral hydroxyurea increased fetal haemoglobin percentage and reduced erythropoietic stress of ineffective erythropoiesis in patients with transfusion-dependent β-thalassaemia. Hydroxyurea reduced the transfusion burden in approximately 40% of patients. Response to hydroxyurea was higher in patients with HbE β-thalassaemia genotype and Xmn1 polymorphism of the γ-globin gene.

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