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Simultaneous Detection of Multiple Familial Hypercholesterolemia Mutations Facilitates an Improved Diagnostic Service in South African Patients at High Risk of Cardiovascular Disease

 

作者: Maritha J Kotze,   Gernot Kriegshäuser,   Rochelle Thiart,   Nico J P. de Villiers,   Charlotte L Scholtz,   Fritz Kury,   Anne Moritz,   Christian Oberkanins,  

 

期刊: Molecular Diagnosis  (ADIS Available online 2003)
卷期: Volume 7, issue 3  

页码: 169-174

 

ISSN:1084-8592

 

年代: 2003

 

出版商: ADIS

 

关键词: Genetic polymorphism;Familial hypercholesterolaemia, diagnosis;Cardiovascular disorders, diagnosis;Diagnostic tests

 

数据来源: ADIS

 

摘要:

AimDNA testing can provide a definitive diagnosis of familial hypercholesterolemia (FH), even in the absence of the clinical characteristics of this inherited cardiovascular disease (CVD) subtype. Our aim was to design a rapid diagnostic assay capable of simultaneously analyzing seven point mutations in the low-density lipoprotein receptor (LDLR) gene, which occur at high frequency in South African FH patients.MethodsThe test is based on multiplex DNA amplification and hybridization to membrane strips presenting a parallel array of immobilized allele-specific oligonucleotide probes.ResultsA reverse-hybridization assay for genotyping LDLR point mutations D154N, D200G, D206E, C356Y, G361V, V408M, and P664L was set-up and validated using pretyped human DNA samples, as well as recombinant plasmid clones containing mutant alleles. The procedure is rapid (6 hours) and may be automated to a large extent.ConclusionsThe new FH strip-assay forms an important part of the comprehensive cardiovascular genetic screen offered routinely to high-risk population groups in South Africa. A genetic approach based on FH testing in conjunction with other ‘genetic’ CVD risk factors is feasible and justified, since the spectrum of disease-related mutations have been defined to a large extent in the genetically distinct population groups of South Africa. Knowledge of a significantly increased CVD risk due to the presence of gene variations, which can be targeted for risk reduction by the avoidance of relevant environmental risk factors and the appropriate treatment, provides a powerful message to motivate people into implementing preventative measures based on their genetic profile.

 

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