Medicine

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This repository contains the published and unpublished research of the Faculty of Medicine by the staff members of the faculty

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    Alpha thalassaemia and extended alpha globin genes in Sri Lanka
    (Elsevier-Academic Press, 2013) Suresh, S.; Fisher, C.; Ayyub, H.; Premawardhena, A.; Allen, A.; Perera, A.; Bandara, D.; Olivieri, N.; Weatherall, D.
    The α-globin genes were studied in nine families with unexplained hypochromic anaemia and in 167 patients with HbE β thalassaemia in Sri Lanka. As well as the common deletion forms of α(+) thalassaemia three families from an ethnic minority were found to carry a novel form of α(0) thalassaemia, one family carried a previously reported form of α(0) thalassaemia, --(THAI), and five families had different forms of non-deletional thalassaemia. The patients with HbE β thalassaemia who had co-inherited α thalassaemia all showed an extremely mild phenotype and reduced levels of HbF and there was a highly significant paucity of α(+) thalassaemia in these patients compared with the normal population. Extended α gene arrangements, including ααα, αααα and ααααα, occurred at a low frequency and were commoner in the more severe phenotypes of HbE β thalassaemia. As well as emphasising the ameliorating effect of α thalassaemia on HbE β thalassaemia the finding of a novel form of α(0) thalassaemia in an ethnic minority, together with an unexpected diversity of forms of non-deletion α thalassaemia in Sri Lanka, further emphasises the critical importance of micro-mapping populations for determining the frequency of clinically important forms of the disease.
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    Studies in haemoglobin E beta-thalassaemia
    (Wiley-Blackwell, 2008) Olivieri, N. F.; Muraca, G. M.; O Donnell, A.; Premawardhena, A.; Fisher, C.; Weatherall, D. J.
    Haemoglobin E beta-thalassaemia is the commonest form of severe thalassaemia in many Asian countries, but little is known about its natural history, the reasons for its clinical diversity, or its optimal management. Despite its frequency, haemoglobin E beta-thalassaemia is often managed in an ill-defined and haphazard way, usually by demand transfusion. We studied a cohort of Sri Lankan patients with haemoglobin Ebeta-thalassaemia over 5 years, and identified several genetic and environmental factors possibly contributing to the phenotypic diversity of the disorder. These included modifiers of haemoglobin F production, malaria and age-related changes in adaptation to anaemia. Our findings suggest that in many patients, haemoglobin E beta-thalassaemia can be managed without transfusion, even with low haemoglobin levels. Age-related changes in the pattern of adaptation to anaemia suggest that more cost-effective approaches to management should be explored.
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    Hemoglobin E-[beta] Thalassemia: Progress Report from the International Study Group
    (Wiley-Blackwell, 2005) Premawardhena, A.; de Silva, S.; Arambepola, M.; Olivieri, N. F.; Vichinsky, E. P.; Merson, L.; Muraco, G.; Allen, A.; Fisher, C.; Peto, T.; Weatherall, D. J.
    A long-term observational study of Hb E-beta-thalassemia in Sri Lanka is beginning to define some of the genetic and environmental factors that are responsible for its remarkable phenotypic variability. In this population there is a very small difference between the steady-state hemoglobin levels between the mild and severe phenotypes, and it has been possible to stop transfusion in many of those who have been on long-term treatment of this kind. These preliminary observations, made over the last 7 years, provide directions for future research into this increasingly important disease.
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