© 2003 BMJ Publishing Group Ltd. & Association of Clinical Pathologists
ORIGINAL ARTICLE
Efficiency and cost effectiveness: PAGE-SSCP versus MDE and Phast gels for the identification of unknown ß thalassaemia mutations
Department of Genetics, Sanjay Gandhi Post Graduate Institute of Medical Sciences, Lucknow-226014, India
Correspondence to:
Correspondence to:
Dr S Agarwal, Department of Genetics, Sanjay Gandhi Post Graduate Institute of Medical Sciences, Lucknow-226014, India;
sarita{at}sgpgi.ac.in
Background: Prenatal diagnosis for ß thalassaemia has proved to be very effective in preventing the birth of an affected child and hence in controlling the disease. The success of prenatal diagnosis depends on the delineation of the underlying mutations in the population at risk. Each population carries a limited number of frequent defects (8991%) and a variable number of rare alleles (45%), whereas 23% of alleles remain uncharacterised. To offer prenatal diagnosis when the parental mutation is unknown, the application of a non-specific detection method (such as single stranded conformational polymorphism (SSCP)) to localise the mutation, followed by direct sequencing of the amplified gene sequence, is required. With this objective in mind, this study was designed to devise the best protocol and system of SSCP for the rapid screening of unknown mutations in the ß globin gene.
Methods: To detect mutations in this disease, three different systemsPhast gels, MDE gels, and polyacrylamide gelswere used under varying conditions.
Results: Polyacrylamide gels were found to be the most efficient, both in terms of resolution and cost.
Conclusion: Polyacrylamide gels are the most rapid, efficient, reliable, and cost effective means for DNA mutation analysis of the ß globin gene.
Keywords: prenatal diagnosis; ß thalassaemia; SSCP; Phast gels; MDE gels
Abbreviations: PCR, polymerase chain reaction; SSCP, single stranded conformational polymorphism
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