An Early Diagnosis of Thalassemia: A Boon to a Healthy Society

Nitu Nigam, Prithvi Kumar Singh, S. Bhatnagar, Sanjay Kumar Nigam, Anil Kumar Tripathi
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引用次数: 2

Abstract

The β-thalassemia is a hereditary blood disorders, characterized by reduced or absent synthesis of the hemoglobin beta chain that cause microcytic hypochromic anemia. An early diagnosis, economical test, awareness programs and prenatal screening will be a milestone for the eradication of this genetic disorder and to reduce burden of the health sector of a country subsequently the economics. Initially, the diagnosis of β-thalassemia depends on the hematological tests with red cell indices that disclosed the microcytic hypochromic anemia.Hemoglobin analysis shows the abnormal peripheral blood smear with nucleated red blood cells, and reduced amounts of hemoglobin A (HbA). In severe anemia, the hemoglobin analysis by HPLC reveals decreased quantities of HbA and increased the level of hemoglobin F (HbF).The decrease level of MCV and MCH are also associated with β-thalassemia. There are various different molecular techniques such as ARMS PCR, allele-specific PCR, Gap PCR, denaturing gradient gel electrophoresis, reverse dot blotting, DGGE, SSCP, HRM, MLPA, sequencing technology and microarray available to identify the globin chain gene mutations. These molecular techniques can be clustered for detection by mutation types and alteration in gene sequences.
地中海贫血的早期诊断:健康社会的福音
β-地中海贫血是一种遗传性血液疾病,其特征是血红蛋白β链合成减少或缺失,导致小细胞性低色性贫血。早期诊断、经济检测、提高认识规划和产前筛查将是根除这种遗传疾病和减轻国家卫生部门负担的一个里程碑。最初,β-地中海贫血的诊断依赖于红细胞指标的血液学检查,这些检查揭示了小细胞性低色性贫血。血红蛋白分析显示有核红细胞的异常外周血涂片,血红蛋白A (HbA)减少。在严重贫血中,高效液相色谱分析显示HbA含量降低,血红蛋白F (HbF)水平升高。MCV和MCH水平的降低也与β-地中海贫血有关。有各种不同的分子技术,如ARMS PCR、等位基因特异性PCR、Gap PCR、变性梯度凝胶电泳、反向点印迹、DGGE、SSCP、HRM、MLPA、测序技术和微阵列等,可用于鉴别珠蛋白链基因突变。这些分子技术可以通过突变类型和基因序列的改变进行聚类检测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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