Displaying publications 1 - 20 of 123 in total

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  1. Mahmud N, Maffei M, Mogni M, Forni GL, Pinto VM, Barberio G, et al.
    Genes (Basel), 2021 11 19;12(11).
    PMID: 34828427 DOI: 10.3390/genes12111821
    BACKGROUND: Hemoglobin A (Hb A) (α2β2) in the normal adult subject constitutes 96-98% of hemoglobin, and Hb F is normally less than 1%, while for hemoglobin A2 (Hb A2) (α2δ2), the normal reference values are between 2.0 and 3.3%. It is important to evaluate the presence of possible delta gene mutations in a population at high risk for globin gene defects in order to correctly diagnose the β-thalassemia carrier.

    METHODS: The most used methods for the quantification of Hb A2 are based on automated high performance liquid chromatography (HPLC) or capillary electrophoresis (CE). In particular Hb analyses were performed by HPLC on three dedicated devices. DNA analyses were performed according to local standard protocols.

    RESULTS: Here, we described eight new δ-globin gene variants discovered and characterized in some laboratories in Northern Italy in recent years. These new variants were added to the many already known Hb A2 variants that were found with an estimated frequency of about 1-2% during the screening tests in our laboratories.

    CONCLUSIONS: The knowledge recognition of the delta variant on Hb analysis and accurate molecular characterization is crucial to provide an accurate definitive thalassemia diagnosis, particularly in young subjects who would like to ask for a prenatal diagnosis or preimplantation genetic diagnosis.

    Matched MeSH terms: beta-Thalassemia/diagnosis; beta-Thalassemia/genetics*
  2. Munkongdee T, Tongsima S, Ngamphiw C, Wangkumhang P, Peerapittayamongkol C, Hashim HB, et al.
    Sci Rep, 2021 05 14;11(1):10352.
    PMID: 33990643 DOI: 10.1038/s41598-021-89641-2
    β-Thalassemia/HbE disease has a wide spectrum of clinical phenotypes ranging from asymptomatic to dependent on regular blood transfusions. Ability to predict disease severity is helpful for clinical management and treatment decision making. A thalassemia severity score has been developed from Mediterranean β-thalassemia patients. However, different ethnic groups may have different allele frequency and linkage disequilibrium structures. Here, Thai β0-thalassemia/HbE disease genome-wild association studies (GWAS) data of 487 patients were analyzed by SNP interaction prioritization algorithm, interacting Loci (iLoci), to find predictive SNPs for disease severity. Three SNPs from two SNP interaction pairs associated with disease severity were identifies. The three-SNP disease severity risk score composed of rs766432 in BCL11A, rs9399137 in HBS1L-MYB and rs72872548 in HBE1 showed more than 85% specificity and 75% accuracy. The three-SNP predictive score was then validated in two independent cohorts of Thai and Malaysian β0-thalassemia/HbE patients with comparable specificity and accuracy. The SNP risk score could be used for prediction of clinical severity for Southeast Asia β0-thalassemia/HbE population.
    Matched MeSH terms: beta-Thalassemia/blood; beta-Thalassemia/diagnosis*; beta-Thalassemia/genetics
  3. Wong YY, Alauddin H, Raja Sabudin RZA, Ithnin A, Jalil N, Abdul Latiff Z, et al.
    Malays J Pathol, 2021 Apr;43(1):95-100.
    PMID: 33903312
    The Siriraj I Gγ(Aγδβ)0-thalassaemia is a novel mutation involving a 118kb deletion of the β-globin gene cluster. It was first reported in 2012 in two unrelated families from the southern part of Thailand. The carriers in the heterozygous state are clinically asymptomatic. Nonetheless, its complex interaction with other β-thalassaemia could give rise to different clinical phenotypes, ranging from mild thalassaemia intermedia to thalassaemia major. We report here a case of a six-year-old Malay boy, presented with pallor, growth failure and hepatosplenomegaly. His haemoglobin at presentation was 9.2g/dL with a mean cell haemoglobin of 22.6pg and a mean cell volume of 69.9fl. His peripheral blood smear showed features of thalassaemia intermedia. Haemoglobin (Hb) analysis revealed markedly raised Hb F (83%), normal HbA2 levels and absent HbA. Deoxyribonucleic acid (DNA) analysis showed compound heterozygous IVS1-1 (G→T) β-globin gene mutation and Siriraj I Gγ(Aγδβ)0-deletion (genotype βIVS1-1/ β Siriraj I deletion). Both his father and elder sister are carriers of Siriraj I Gγ(Aγδβ)0-thalassaemia while his mother carries IVS1-1 (G→T) gene mutation. Clinically, the patient is transfusion dependent on six weekly regime. To the best of our knowledge, this is the first reported case in Malaysia involving unique Siriraj I Gγ(Aγδβ)0-thalassaemia and IVS1-1 (G→T) in a compound heterozygous state. In summary, detection of Siriraj I Gγ(Aγδβ)0-thalassaemia is essential as this deletion can lead to severe disease upon interaction with a β-thalassemia point mutation as demonstrated in our case. The establishment of effective carrier screening and genetic counselling is important to prevent its adverse consequences.
    Matched MeSH terms: beta-Thalassemia
  4. Nandakumal G, Ismail F, Mohamad NF, Lott PW, Chew KS, Ab Rahman S, et al.
    J Pediatr Hematol Oncol, 2021 04 01;43(3):101-103.
    PMID: 33560075 DOI: 10.1097/MPH.0000000000002077
    Hemolacria is a rare condition that causes a person to produce tears that are partially composed of blood. It can be a presenting feature of certain ocular and systemic conditions. Here, the authors describe an interesting case of a 12-year-old boy with an underlying beta-thalassemia trait, who presented with a 2-day history of bilateral blood-stained tears, and an episode of epistaxis. Ocular examination was normal, and syringing showed no nasolacrimal duct blockage. Systemic examination was unremarkable. Laboratory investigations confirmed type 2 von Willebrand disease. Management of hemolacria remains a clinical challenge given the rare occurrence of the disease. In this case report, the authors discuss the differential diagnosis and management approach to hemolacria.
    Matched MeSH terms: beta-Thalassemia/blood; beta-Thalassemia/complications; beta-Thalassemia/diagnosis
  5. Wee SY, Muhamed Said SS, Raja Sabudin RZA, Alauddin H, Ithnin A
    Malays J Pathol, 2020 Aug;42(2):195-201.
    PMID: 32860371
    INTRODUCTION: Differentiating between thalassaemia and iron deficiency anaemia (IDA) in hypochromic anaemia is a challenge to pathologists as it influences the choice of subsequent specialized confirmatory tests. In this study, we aimed to evaluate the performance of microcytic to hypochromic ratio (MicroR/ Hypo-He, M/H ratio) as a discriminant index in hypochromic anaemia.

    MATERIALS AND METHODS: A retrospective study was carried out on 318 subjects with hypochromic anaemia, which comprised 162 IDA and 156 thalassaemia trait subjects with α-thalassemia, β-thalassemia and HbE trait. Optimal cut-off value, sensitivity and specificity of M/H ratio for thalassaemia trait discrimination was determined using Receiver Operating Characteristic (ROC) analysis.

    RESULTS: Subjects with thalassaemia trait showed higher MicroR compared to IDA ( p< 0.001) while subjects with IDA demonstrated higher Hypo-He than thalassaemia trait (p < 0.001). M/H ratio was significantly higher in thalassaemia trait compared to IDA, with medians of 3.77 (interquartile range: 2.57 - 6.52) and 1.73 (interquartile range: 1.27 - 2.38), respectively (p < 0.001). M/H ratio ≥ 2.25 was the optimal cut-off value for discriminating thalassaemia trait from IDA in hypochromic anaemia, with the area under ROC curve (AUC) of 0.83, sensitivity of 80.8% and specificity of 71.6%.

    CONCLUSIONS: M/H ratio is a useful discriminant index to distinguish thalassaemia trait from IDA in hypochromic anaemia prior to diagnostic analysis for thalassaemia confirmation. High M/H ratio is suggestive of thalassaemia trait than of IDA. However, more studies are required to establish the role of M/H ratio as a screening tool for thalassaemia discrimination in hypochromic anaemia.

    Matched MeSH terms: beta-Thalassemia/diagnosis; beta-Thalassemia/pathology
  6. Rashid RA, Ankathil R
    Malays J Pathol, 2020 Aug;42(2):171-185.
    PMID: 32860369
    Gene therapy is a method of treatment of disease aimed at its molecular level. The progress of gene therapy, however, was as promising as it was tardy mainly due to the limitations in the resources and financial part of its development as well as owing to the rarity of most diseases it can offer its benefits to. The methods of gene therapy can vary depending on factors such as the physiology of tissue of interest, affinity of vectors to a certain type of cells, depth and accessibility of the tissue of interest, and size of the gene to be replaced or edited. The concept behind gene therapy has inspired scientists and clinicians alike leading to a rapid expansion of its clinical utility that has become so widespread to not only include diseases of monogenic origin, but also polygenic diseases, albeit not so commonly. This article delves into notable success stories of gene therapy which has been regarded as the beacon of medical novelty expected to blossom in the near future to provide a holistic, targeted, precise, and individualistic personalised-medicine as well as laying out the future hopes of gene therapy in the treatment of debilitating diseases such as solid tumours, AIDS, Tuberculosis, Diabetes Mellitus, psychiatric illnesses, which are still at a standstill, from a gene therapy point of view.
    Matched MeSH terms: beta-Thalassemia/therapy
  7. Mohd Ibrahim H, Muda Z, Othman IS, Mohamed Unni MN, Teh KH, Thevarajah A, et al.
    BMJ Open, 2020 06 29;10(6):e037974.
    PMID: 32601117 DOI: 10.1136/bmjopen-2020-037974
    OBJECTIVE: Thalassaemia is the most common inherited blood disorder in Malaysia. This study aims to report the current status of thalassaemia in Malaysia and provide a comprehensive understanding of the disease through data obtained from the Malaysian Thalassaemia Registry.

    DESIGN: Data were extracted from the Malaysian Thalassaemia Registry, a web-based system accessible to enrolled users through www.mytalasemia.net.my.

    SETTING: The Malaysian Thalassaemia Registry data was recorded from reports obtained from 110 participating government and university hospitals in Malaysia.

    PARTICIPANTS: The patients were those attending the 110 participating hospitals for thalassaemia treatment.

    INTERVENTION: Data were collected from the Malaysian Thalassaemia Registry from 2007 until the fourth quarter of 2018.

    PRIMARY OUTCOME MEASURE: 7984 out of 8681 patients with thalassaemia registered in the Malaysian Thalassaemia Registry were reported alive.

    RESULTS: Majority of the patients were reported in the state of Sabah (22.72%); the largest age group affected was 5.0-24.9 years old (64.45%); the largest ethnic group involved was Malay (63.95%); and the major diagnosis was haemoglobin E/β-thalassaemia (34.37%). From the 7984 patients, 56.73% were on regular blood transfusions and 61.72% were on chelation therapy. A small fraction (14.23%) has undergone splenectomy, while the percentage of patients with severe iron overload (serum ferritin ≥5000 µg/L) reduced over time. However, cardiac complications are still the main cause of death in patients with thalassaemia.

    CONCLUSION: Data gathered into the registry can be used to understand the progression of the disorder, to monitor iron overload management and to improve the outcomes of treatment, to enhance preventive strategies, reduce healthcare burden and improve the quality of life. Sustainability of the Malaysian Thalassaemia Registry is important for surveillance of thalassaemia management in the country and help the national health authorities to develop more effective policies.

    Matched MeSH terms: beta-Thalassemia
  8. Ngim CF, Lai NM, Hong JY, Tan SL, Ramadas A, Muthukumarasamy P, et al.
    Cochrane Database Syst Rev, 2020 05 28;5:CD012284.
    PMID: 32463488 DOI: 10.1002/14651858.CD012284.pub3
    BACKGROUND: Thalassaemia is a recessively-inherited blood disorder that leads to anaemia of varying severity. In those affected by the more severe forms, regular blood transfusions are required which may lead to iron overload. Accumulated iron from blood transfusions may be deposited in vital organs including the heart, liver and endocrine organs such as the pituitary glands which can affect growth hormone production. Growth hormone deficiency is one of the factors that can lead to short stature, a common complication in people with thalassaemia. Growth hormone replacement therapy has been used in children with thalassaemia who have short stature and growth hormone deficiency. This review on the role of growth hormone was originally published in September 2017 and updated in April 2020.

    OBJECTIVES: To assess the benefits and safety of growth hormone therapy in people with thalassaemia.

    SEARCH METHODS: We searched the Cochrane Haemoglobinopathies Trials Register, compiled from electronic database searches and handsearching of journals and conference abstract books. Date of latest search: 14 November 2019. We also searched the reference lists of relevant articles, reviews and clinical trial registries. Date of latest search: 06 January 2020.

    SELECTION CRITERIA: Randomised and quasi-randomised controlled trials comparing the use of growth hormone therapy to placebo or standard care in people with thalassaemia of any type or severity.

    DATA COLLECTION AND ANALYSIS: Two authors independently selected trials for inclusion. Data extraction and assessment of risk of bias were also conducted independently by two authors. The certainty of the evidence was assessed using GRADE criteria.

    MAIN RESULTS: We included one parallel trial conducted in Turkey. The trial recruited 20 children with homozygous beta thalassaemia who had short stature; 10 children received growth hormone therapy administered subcutaneously on a daily basis at a dose of 0.7 IU/kg per week and 10 children received standard care. The overall risk of bias in this trial was low except for the selection criteria and attrition bias which were unclear. The certainty of the evidence for all major outcomes was moderate, the main concern was imprecision of the estimates due to the small sample size leading to wide confidence intervals. Final height (cm) (the review's pre-specified primary outcome) and change in height were not assessed in the included trial. The trial reported no clear difference between groups in height standard deviation (SD) score after one year, mean difference (MD) -0.09 (95% confidence interval (CI) -0.33 to 0.15 (moderate-certainty evidence). However, modest improvements appeared to be observed in the following key outcomes in children receiving growth hormone therapy compared to control (moderate-certainty evidence): change between baseline and final visit in height SD score, MD 0.26 (95% CI 0.13 to 0.39); height velocity, MD 2.28 cm/year (95% CI 1.76 to 2.80); height velocity SD score, MD 3.31 (95% CI 2.43 to 4.19); and change in height velocity SD score between baseline and final visit, MD 3.41 (95% CI 2.45 to 4.37). No adverse effects of treatment were reported in either group; however, while there was no clear difference between groups in the oral glucose tolerance test at one year, fasting blood glucose was significantly higher in the growth hormone therapy group compared to control, although both results were still within the normal range, MD 6.67 mg/dL (95% CI 2.66 to 10.68). There were no data beyond the one-year trial period.

    AUTHORS' CONCLUSIONS: A small single trial contributed evidence of moderate certainty that the use of growth hormone for a year may improve height velocity of children with thalassaemia although height SD score in the treatment group was similar to the control group. There are no randomised controlled trials in adults or trials that address the use of growth hormone therapy over a longer period and assess its effect on final height and quality of life. The optimal dosage of growth hormone and the ideal time to start this therapy remain uncertain. Large well-designed randomised controlled trials over a longer period with sufficient duration of follow up are needed.

    Matched MeSH terms: beta-Thalassemia/complications*; beta-Thalassemia/genetics
  9. Abdullah UYH, Ibrahim HM, Mahmud NB, Salleh MZ, Teh LK, Noorizhab MNFB, et al.
    Hemoglobin, 2020 May;44(3):184-189.
    PMID: 32586164 DOI: 10.1080/03630269.2020.1781652
    Effective prevention of β-thalassemia (β-thal) requires strategies to detect at-risk couples. This is the first study attempting to assess the prevalence of silent β-thal carriers in the Malaysian population. Hematological and clinical parameters were evaluated in healthy blood donors and patients with β-thal trait, Hb E (HBB: c.79G>A)/β-thal and β-thal major (β-TM). β-Globin gene sequencing was carried out for 52 healthy blood donors, 48 patients with Hb E/β-thal, 34 patients with β-TM and 38 patients with β-thal trait. The prevalence of silent β-thal carrier phenotypes found in 25.0% of healthy Malaysian blood donors indicates the need for clinician's awareness of this type in evaluating β-thal in Malaysia. Patients with β-TM present at a significantly younger age at initial diagnosis and require more blood transfusions compared to those with Hb E/β-thal. The time at which genomic DNA was extracted after blood collection, particularly from patients with β-TM and Hb E/β-thal, was found to be an important determinant of the quality of the results of the β-globin sequencing. Public education and communication campaigns are recommended as apparently healthy individuals have few or no symptoms and normal or borderline hematological parameters. β-Globin gene mutation characterization and screening for silent β-thal carriers in regions prevalent with β-thal are recommended to develop more effective genetic counseling and management of β-thal.
    Matched MeSH terms: beta-Thalassemia/blood; beta-Thalassemia/diagnosis; beta-Thalassemia/genetics*; beta-Thalassemia/epidemiology*
  10. Azman NF, Abdullah WZ, Hanafi S, Diana R, Bahar R, Johan MF, et al.
    Ann Hematol, 2020 Apr;99(4):729-735.
    PMID: 32078010 DOI: 10.1007/s00277-020-03927-5
    HbE/Beta thalassemia (HbE/β-thalassemia) is one of the common genetic disorders in South East Asia. It is heterogeneous in its clinical presentation and molecular defects. There are genetic modifiers which have been reported to influence the disease severity of this disorder. The aim of this study was to determine the genetic polymorphisms which were responsible for the disease clinical diversity. A case-control study was conducted among Malay transfusion-dependent HbE/β-thalassemia patients. Patients who were confirmed HbE/β-thalassemia were recruited and genotyping study was performed on these subjects. Ninety-eight patients were selected and divided into moderate and severe groups based on clinical parameters using Sripichai scoring system (based on hemoglobin level, spleen size, growth development, the age of first transfusion and age of disease presentation). Forty-three (44.9%) and 55 (56.1%) patients were found to have moderate and severe clinical presentation, respectively. Genotyping analysis was performed using Affymetrix 6.0 microarray platform. The SNPs were filtered using PLINK and Manhattan plot by R software. From the GWAS results, 20 most significant SNPs were selected based on disease severity when compared between moderate and severe groups. The significant SNPs found in this study were mostly related to thalassemia complications such as rs7372408, associated with KCNMB2-AS1 and SNPs associated with disease severity. These findings could be used as genetic predictors in managing patients with HbE/β-thalassemia and served as platform for future study.
    Matched MeSH terms: beta-Thalassemia
  11. Cappellini MD, Viprakasit V, Taher AT, Georgiev P, Kuo KHM, Coates T, et al.
    N Engl J Med, 2020 03 26;382(13):1219-1231.
    PMID: 32212518 DOI: 10.1056/NEJMoa1910182
    BACKGROUND: Patients with transfusion-dependent β-thalassemia need regular red-cell transfusions. Luspatercept, a recombinant fusion protein that binds to select transforming growth factor β superfamily ligands, may enhance erythroid maturation and reduce the transfusion burden (the total number of red-cell units transfused) in such patients.

    METHODS: In this randomized, double-blind, phase 3 trial, we assigned, in a 2:1 ratio, adults with transfusion-dependent β-thalassemia to receive best supportive care plus luspatercept (at a dose of 1.00 to 1.25 mg per kilogram of body weight) or placebo for at least 48 weeks. The primary end point was the percentage of patients who had a reduction in the transfusion burden of at least 33% from baseline during weeks 13 through 24 plus a reduction of at least 2 red-cell units over this 12-week interval. Other efficacy end points included reductions in the transfusion burden during any 12-week interval and results of iron studies.

    RESULTS: A total of 224 patients were assigned to the luspatercept group and 112 to the placebo group. Luspatercept or placebo was administered for a median of approximately 64 weeks in both groups. The percentage of patients who had a reduction in the transfusion burden of at least 33% from baseline during weeks 13 through 24 plus a reduction of at least 2 red-cell units over this 12-week interval was significantly greater in the luspatercept group than in the placebo group (21.4% vs. 4.5%, P<0.001). During any 12-week interval, the percentage of patients who had a reduction in transfusion burden of at least 33% was greater in the luspatercept group than in the placebo group (70.5% vs. 29.5%), as was the percentage of those who had a reduction of at least 50% (40.2% vs. 6.3%). The least-squares mean difference between the groups in serum ferritin levels at week 48 was -348 μg per liter (95% confidence interval, -517 to -179) in favor of luspatercept. Adverse events of transient bone pain, arthralgia, dizziness, hypertension, and hyperuricemia were more common with luspatercept than placebo.

    CONCLUSIONS: The percentage of patients with transfusion-dependent β-thalassemia who had a reduction in transfusion burden was significantly greater in the luspatercept group than in the placebo group, and few adverse events led to the discontinuation of treatment. (Funded by Celgene and Acceleron Pharma; BELIEVE ClinicalTrials.gov number, NCT02604433; EudraCT number, 2015-003224-31.).

    Matched MeSH terms: beta-Thalassemia/drug therapy*; beta-Thalassemia/genetics; beta-Thalassemia/surgery; beta-Thalassemia/therapy
  12. Che Yaacob NS, Islam MA, Alsaleh H, Ibrahim IK, Hassan R
    Int J Hematol, 2020 Mar;111(3):352-359.
    PMID: 31894534 DOI: 10.1007/s12185-019-02806-8
    Hemoglobin (Hb) is an iron-containing metalloprotein that transports oxygen molecules from the lungs to the rest of the human body. Among the different variants of Hb, HbA1 is the most common and is composed of two alpha (αHb) and two beta globin chains (βHb) constructing a heterotetrameric protein complex (α2β2). Due to the higher number of AHSP genes, there is a tendency to produce approximately twice as much of α subunit as β subunit. Therefore, there is a chance of presenting excess α subunit leftover in human blood plasma; excess subunits subsequently bind with each other and aggregates β-thalassemia occurs due to lack of or reduced numbers of βHb subunit. Alpha-hemoglobin-stabilizing protein (AHSP) is a scavenger protein which acts as a molecular chaperon by reversibly binding with free αHb forming a complex (AHSP-αHb) that prevents aggregation and precipitation preventing deleterious effects towards developing serious human diseases including β-thalassemia. Clinical severity worsens if mutations in AHSP gene co-occur in patients with β-thalassemia. Considering the mechanism of action of AHSP and its contribution to ameliorating β-thalassemia severity, it could potentially be used as a modulatory agent in the treatment of β-thalassemia.
    Matched MeSH terms: beta-Thalassemia/genetics*
  13. Abdullah UYH, Ibrahim HM, Jassim HM, Salleh MZ, Kek TL, Fakhruzzaman Bin Noorizhab MN, et al.
    Biochem Biophys Rep, 2019 Jul;18:100635.
    PMID: 31061897 DOI: 10.1016/j.bbrep.2019.100635
    This is the first report of QQQ-mass spectrometric identification and quantification of the Hb subunits, alpha, beta, delta and gamma globin peptides, derived from enzymatic-digestion of proteins in the early unknown peaks of the Bio-Rad cation-exchange chromatography of haemoglobin. The objectives were to assess the relationship of the quantity of the free alpha, beta, delta and gamma globin chains with the phenotypic diversity of beta-thalassaemias (β-thal). The results demonstrate that the pools of free globin chains in red blood cells were correlating with the severity of the disease in patients with different phenotypes of β-thal. The mechanism and the regulation of synthesis of free globin chains pool in a normal individual and in patients with different β-thal phenotypes could arise from several mechanisms which will require further investigation. The role of the free globin pool in patients with β-thal for development of novel therapeutic approaches based on these potential targets requires further investigation. Pertinent biomarkers improves the diagnosis of the β-thal, especially in low-income countries where they are most common and allows more effective therapeutic intervention leading to more successful therapeutic outcome.
    Matched MeSH terms: beta-Thalassemia
  14. Abdullah UYH, Ibrahim HM, Mahmud NB, Salleh MZ, Kek TL, Noorizhab MNFB, et al.
    Hemoglobin, 2019 May;43(3):182-187.
    PMID: 31298599 DOI: 10.1080/03630269.2019.1632893
    This is the first report of quadrupole time-of-flight (Q-TOF) mass spectrometric identification of the hemoglobin (Hb) subunits, α, β, δ and γ peptides, derived from enzymatic-digestion of proteins in the early unknown peaks of the cation exchange chromatography of Hb. The objectives were to identify the unknown high performance liquid chromatography (HPLC) peaks in healthy subjects and in patients with β-thalassemia (β-thal). The results demonstrate the existence of pools of free globin chains in red blood cells (RBCs). The α-, β-, δ- and γ-globin peptides were identified in the unknown HPLC peaks. The quantification and role of the free globin pool in patients with β-thal requires further investigation. Identification of all types of Hb subunits in the retention time (RT) before 1 min. suggests that altered Hbs is the nature of these fast-eluting peaks. Relevancy of thalassemias to the protein-aggregation disorders will require review of the role of free globin in the pathology of the disease.
    Matched MeSH terms: beta-Thalassemia
  15. Sahrol Nizam Bin Abu Bakar, Al-Afiq Alias, Masrah Tata
    MyJurnal
    Introduction:Transfusion Transmitted Infections is occurring worldwide. The common organisms related reported in literature were Human Immunodefiency Virus, Hepatitis B and C Virus, bacterial contamination and Malaria par-asites. Meanwhile, Melioidosis is endemic disease in Malaysia and especially Sabah. Mortality due to Melioidosis septicaemia was also high. It ranges between 60%-80%. In Sabah, 74% of Thalassemia children were diagnosed with Bacteraemia Melioidosis and 50% had died due to the organisms. The incidence of Melioidosis Transfusion Transmitted Infection is rarely reported in the literature. Case Description: A 17-year-old girl was diagnosed having Beta thalassemia major since 5 years old and splenectomised 8 years ago. Currently on prophylaxis Penicillin and Ex-jade. She was admitted into hospital for monthly blood transfusion. Two days prior to admission, patient complained of having sore throat and cough but no fever and other complained. On examination, the tonsil enlarged and was treated as exudative tonsillitis. She was transfused with 2 pint packed cells within 2 days. No transfusion reaction noted. Day seven admission, she had high grade fever and redness of the right hand cannulation site and was treated as right hand cellulitis with intravenous Cloxacillin. Full blood count shows Total White Cell count was 24.9 x109 /L, Haemoglobin level was 9.3 g/dl and Platelets was 462x109/L. Blood for culture and sensitivity was taken and Chest X-ray noted haziness over the left mid and lower zone of the lung and was treated as Hospital Acquired Pneumonia. She was referred to tertiary hospital for further management. Her conditioned deteriorated and died at the casualty unit in the tertiary hospital. Blood culture was positive for Burkholderia pseudomallei. The case was reported to Dis-trict health office for further investigation. Blood donor tracing was done and was positive for Melioidosis through Elisa Antibody titre IgM for Melioidosis (1:320). The patient’s house and school were visited and investigated. All environmental samples were negative for Burkholderia pseudomallei. Conclusion: Its shows a relationship between blood donations infected with Burkholderia pseudomallei causing mortality of Beta Thalassemia patients. It is highly recommended to screen all blood products for communicable disease fatal organisms.
    Matched MeSH terms: beta-Thalassemia
  16. Asit Sena, Saidatul Norbaya Buang, Mohd Shahriel Md Daud, Soh Chin Li, Zaleha Sulaiman, Kaharnisah Mat Noor, et al.
    MyJurnal
    Introduction: Thalassaemia is an autosomal recessive disorder affecting 5 percent of the Malaysian population. The state of Sabah has the highest number of transfusion dependent thalassaemia and β-thalassaemia carrier in Malay-sia. For Malaysia to be successful in the prevention of thalassaemia, Sabah needs to be focused on the preventive activities in areas with high prevalence of β-thalassaemia carriers. Thus, identifying the mapping of β-thalassaemia is crucial for planning for prevention activities. The objective of this study was to identify the prevalence of β-thalas-saemia by districts and ethnic groups in Sabah. Methods: This study used data from Form 4 Thalassaemia Screening Records in 2017. The data were cleaned and analysed using Excel spreadsheet to calculate for the national and state specific prevalence of β-thalassaemia carrier. Subsequently, the data was used for mapping of high-risk districts and ethnic groups in Sabah. Results: A total of 31,655 Form 4 students from 242 secondary schools were screened in Sa-bah in 2017 and 1150 (3.6%) were diagnosed as β-thalassemia carrier. The prevalence of β thalassaemia carrier was higher in the West Coast of Sabah which include Kota Marudi District (11.1%), Nabawan (9.0%), Tambunan (8%), Tongod (7.5%), Ranau (7.0%), Kota Belud (5.0%), Kudat (4.6%), Tenom (4.1%) and Tuaran (4.0%). In the East Coast of Sabah, there was only the Beluran District (5.0%) had prevalence that higher than the state average. β-thalassae-mia carriers were more likely to be of Dusun, Kadazan Dusun followed by Bajau, Murut and Rungus ethnic group. Conclusion: The distribution of β-thalassaemia carrier in Sabah was concentrated in the West Coast of Sabah and more common among the Dusun, Kadazan Dusun followed by Bajau, Murut and Rungus ethnic group. Thus, the thalassaemia prevention activities should be focuses in these areas and ethnic groups.
    Matched MeSH terms: beta-Thalassemia
  17. Elfira Cassandra Enderik, Syahrizal Azizi Shaharudin, Gan, Siaw Yun, Tan, Wei Chong, Adong, Arthur James, Ho, Jackie Chit Khong, et al.
    MyJurnal
    Introduction: Long-term survival in beta-thalassaemia major is strongly influenced by adherence to iron chelation therapy. Identifying factors that influence the compliance remains the first step in improving iron chelation therapy. Objective:Due to increase in number of non-compliance to iron chelation therapy for patients in Hospital Keningau, Keningau, Sabah, we aim to evaluate the compliance, identify the factors and assess disease knowledge of patients so that preventive measurement can be formulated. Methodology: This was a cross-sectional study conducted in Hospital Keningau by a combination of self-administered and interviewer-administered survey. The survey consists of 3 domains – knowledge assessment based on 10 items, identifying factors for non-compliance and compliance to treatment. Percentage of compliance was measured based on amount taken reported by patients over the intended therapy. Association between knowledge and compliance was measured using Pearson’s Chi Square. Results: A number of 52 patients completed the survey. The average age was 18 ± 4.77 years. The mean knowledge score was 6.15 out of 10. The percentage of compliance to desferrioxamine was 78.2 ± 30.2% while for deferiprone it was 72.4 ± 32.6%. There were no association between knowledge score and compliance to desferrioxamine (p = 0.893) and deferiprone (p = 0.874). Lazziness and pain were the main reasons for non-compliance chosen by patients on desferrioxamine ABSTRACTCompliance and Barriers of Beta-Thalassaemia Patients towards Iron Chelation Therapy in Hospital Keningau, SabahElfira Cassandra Enderik1*, Syahrizal Azizi bin Shaharudin1, Gan Siaw Yun1, Tan Wei Chong1, Arthur James Adong1, Jackie Ho Chit Khong1, Shamadevi Pasupathi1, Maggie Low May Yee1, Sivaraj Raman1Borneo Journal of Medical Sciences (BJMS), Special Issue, Volume 2, March 2019: 7 – 81 Pharmacy Department, Hospital Keningau, Keningau, Sabah, Malaysia* Corresponding author’s email: elfira_11@yahoo.comBorneo Journal of Medical SciencesBJMSKeywords:thalassaemia, compliance, knowledge, factor NMRR Research ID: NMRR-18-404-39581
    8Borneo Journal of Medical Sciences (BJMS),Special Issue, Volume 2, March 2019: 7 – 811 (3): 35 – 38(19.2%) while for deferiprone it was lazziness (23.1%) and side effects (19.2%). The poor compliance was reflected on the high average ferritin levels of respondents (7573 ± 5749). Conclusion: Even though most adolescents had knowledge about their disease, it did not affect patients’ compliance to therapy. Lazziness was the most prominent factor for non-compliance in adolescents in our study. This might be because iron chelation therapy is usually seen as a hindrance to independence. Thus in order to improve compliances, further study is needed to investigate the association between compliance and the affecting factors identified in our study.
    Matched MeSH terms: beta-Thalassemia
  18. Lim, L. N., Yu, K. S., Chua, S. M., George, E., Lai, M. I., Wong, L., et al.
    MyJurnal
    Introduction: Filipino β°-deletion is predominant among the β-thalassaemia patients in the indigenous population of Sabah, Malaysia particularly among the Kadazandusun. Individuals who co-inherit with α- and β-thalassaemia will demonstrate milder clinical symptoms with modified complete blood count (CBC) and Hb subtype parameters. HBS1L-MYB variants act as one of the key regulator of haematopoiesis and erythropoiesis and display strong association
    with variation of HbF levels. Therefore, this study aims to evaluate the association between genetic variants in HBS1L-MYB with Hb subtypes level among Filipino β°-deletion carriers co-inherited with -α3.7 deletion. Methods: Filipino β°-deletion and -α3.7 deletion were identified using gap-polymerase chain reaction (PCR). A total of 34 subjects found with coinheritance of Filipino β°-deletion and -α3.7 deletion were subjected for HBS1L-MYB intergenic polymorphisms (HMIP) analysis. Hb subtypes level were quantified using BioRad Variant II Hb analyser. Genotyping of HBS1L-MYB variants rs9399137 and rs11759553 was done using own designed tetra primer ARMS-PCR. Results: The minor allele frequencies (MAF) of the two HMIP is found more than 0.05 (rs11759553, MAF=0.18 and rs9399137, MAF=0.15), indicating the significance of these variants among the study subjects. Significant difference was found between HbF level and HBS1L-MYB variant rs11759553 with p-value less than 0.05 (p=0.001). Subjects with homozygous genotype for rs11759553 (T/T) was found with higher HbF, followed by heterozygous (A/T) and wild type (A/A). rs11759553 and rs9399137 was found did not influence the level of HbA and HbA2. HMIP of rs11759553 and rs9399137 are found significant among Filipino β°-deletion carriers co-inherited with -α3.7deletion with its high minor allelic frequency and high HbF level. Strong association with HbF level was demonstrated when
    coinheritance of rs11759553. Conclusion: This study demonstrates that there are significant associations between certain genetic variants in HBS1L-MYB with Hb subtypes level among Filipino β°-deletion carriers co-inherited with -α3.7 deletion.
    Matched MeSH terms: beta-Thalassemia
  19. Mohamad AS, Hamzah R, Selvaratnam V, Yegapan S, Sathar J
    Hematol Rep, 2018 Sep 05;10(3):7210.
    PMID: 30344984 DOI: 10.4081/hr.2018.7210
    Human hemoglobin of G-Makassar variant has been reported very rarely with Beta Thalassemia. In year 1969 Hb GMakassar was first identified in Makassar, Sulawesi (Celebes), Republic of Indonesia. The disease was first published in 1969 and 33 years later it has been reported at a family of Thailand origin. We report a 45-yearold Malay man who was investigated for anemia and thrombocytopenia then diagnosed with Hb G-Makassar. This finding describes as a new Hemoglobin GMakassar discovered in Malaysia after 14 years diagnosed in Thailand.
    Matched MeSH terms: beta-Thalassemia
  20. Sultan S, Irfan SM, Zaidi SM
    Med J Malaysia, 2018 08;73(4):185-189.
    PMID: 30121679
    BACKGROUND: It is being increasingly recognised that thalassemia major patients, like intermedia, have increased propensity for thromboembolism. Deficiency of natural anticoagulants is more recently defined finding contributing to the hypercoagulable state. The aim this study is to determine natural anticoagulants levels and their correlation with maternal characteristics, haematological and biochemical markers.

    METHODS: This is a prospective case-control study. We registered 80 patients and 60 healthy controls from Jan 2009 to Dec 2013. Complete blood counts, prothrombin time, activated partial thromboplastin time, protein C, protein S, antithrombin, serum ferritin, liver enzymes; HbsAg and Anti- HCV were evaluated.

    RESULT: There were 42 males and 38 females with mean age of 12.30±5.50 years. The mean protein C, protein S and antithrombin in patients and control were 58.25±22.5 versus 110.67±22.60, 67.90±19.58 versus 98.70±21.54 and 89.73±18.09 versus 104.0±10.98 (p<0.001) respectively. Protein C was predominantly deficient in 65% followed by protein S and antithrombin in 35% and 20% respectively. Protein C deficiency divulged positive correlation with protein S deficiency (p = 0.035) and antithrombin deficiency with hemoglobin of ≤8gm% (p<0.0025). No significant correlation of prothrombotic markers was established with maternal characteristics, hepatic dysfunction, hepatitis and serum ferritin.

    CONCLUSION: Substantial decrement in prothrombotic markers, primarily protein C, may be implicated in elevated thrombosis; however follow-up data is required to establish definitive thromboembolic events.

    Matched MeSH terms: beta-Thalassemia/blood*
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