β-Thalassemia Microelectronic Chip: A Fast and Accurate Method for Mutation Detection
- 1 January 2004
- journal article
- Published by Oxford University Press (OUP) in Clinical Chemistry
- Vol. 50 (1) , 73-79
- https://doi.org/10.1373/clinchem.2003.023077
Abstract
Background: β-Thalassemia is one of the most common genetic diseases in humans. We developed an automated electronic microchip for fast and reliable detection of the nine most frequent mutations accounting for >95% of the β-thalassemia alleles in the Mediterranean area. Methods: We developed a microchip-based assay to identify the nine most frequent mutations (cd39C>T, IVS1-110G>A, IVS1-1G>A, IVS1-6T>C, IVS2-745C>G, cd6delA, −87C>G, IVS2-1G>A, and cd8delAA) by use of the Nanogen Workstation. The biotinylated amplicon was electronically addressed on the chip to selected pads, where it remained embedded through interaction with streptavidin in the permeation layer. The DNA at each test site was then hybridized to a mixture of fluorescently labeled wild-type or mutant probes. Results: Assays conditions were established based on the analysis of 700 DNA samples from compound heterozygotes or homozygotes for the nine mutations. The assays were blindly validated on 250 DNA samples previously genotyped by other methods, with complete concordance of results. Alternative multiplexed formats were explored: the combination of multiplex PCR with multiple addressing and/or hybridization allowed analysis of all nine mutations in the same sample on one test site of the chip. Conclusions: The open flexible platform can be designed by the user according to the local prevalence of mutations in each geographic area and can be rapidly extended to include the remaining mutations causing β-thalassemia in other regions of the world.Keywords
This publication has 11 references indexed in Scilit:
- Reliability of DHPLC in mutational screening of ?-globin (HBB) allelesHuman Mutation, 2002
- Active microelectronic chip devices which utilize controlled electrophoretic fields for multiplex DNA hybridization and other genomic applicationsElectrophoresis, 1999
- Single nucleotide polymorphic discrimination by an electronic dot blot assay on semiconductor microchipsNature Biotechnology, 1999
- The β-and -Thalassemia Repository (Ninth Edition; Part I)Hemoglobin, 1998
- Electric field directed nucleic acid hybridization on microchipsNucleic Acids Research, 1997
- Rapid determination of single base mismatch mutations in DNA hybrids by direct electric field controlProceedings of the National Academy of Sciences, 1997
- The amplification refractory mutation system (ARMS): A rapid and direct prenatal diagnostic technique for β-thalassaemia in SingaporePrenatal Diagnosis, 1994
- Denaturing gradient gel electrophoresis and direct sequencing of PCR amplified genomic DNA: a rapid and reliable diagnostic approach to beta thalassaemiaBritish Journal of Haematology, 1990
- Prenatal diagnosis of β‐thalassaemia in Mediterranean populations by dot blot analysis with DNA amplification and allele specific oligonucleotide probesPrenatal Diagnosis, 1989
- Genetic analysis of amplified DNA with immobilized sequence-specific oligonucleotide probes.Proceedings of the National Academy of Sciences, 1989