Heat-transfer-based detection of SNPs in the PAH gene of PKU patients
Natalie Vanden Bon,1 Bart van Grinsven,2 Mohammed Sharif Murib,2 Weng Siang Yeap,2 Ken Haenen,2,3 Ward De Ceuninck,2,3 Patrick Wagner,2,3 Marcel Ameloot,1 Veronique Vermeeren,1 Luc Michiels11Biomedical Research Institute, Hasselt University, Diepenbeek, Belgium; 2Institute for Materials Research, H...
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doaj-2563b333efd84d9785d29b9c2386d86f2020-11-24T23:47:55ZengDove Medical PressInternational Journal of Nanomedicine1178-20132014-03-012014Issue 11629164016261Heat-transfer-based detection of SNPs in the PAH gene of PKU patientsVanden Bon Nvan Grinsven BMurib MSYeap WSHaenen KDe Ceuninck WWagner PAmeloot MVermeeren VMichiels L Natalie Vanden Bon,1 Bart van Grinsven,2 Mohammed Sharif Murib,2 Weng Siang Yeap,2 Ken Haenen,2,3 Ward De Ceuninck,2,3 Patrick Wagner,2,3 Marcel Ameloot,1 Veronique Vermeeren,1 Luc Michiels11Biomedical Research Institute, Hasselt University, Diepenbeek, Belgium; 2Institute for Materials Research, Hasselt University, Diepenbeek, Belgium; 3IMOMEC, Diepenbeek, BelgiumAbstract: Conventional neonatal diagnosis of phenylketonuria is based on the presence of abnormal levels of phenylalanine in the blood. However, for carrier detection and prenatal diagnosis, direct detection of disease-correlated mutations is needed. To speed up and simplify mutation screening in genes, new technologies are developed. In this study, a heat-transfer method is evaluated as a mutation-detection technology in entire exons of the phenylalanine hydroxylase (PAH) gene. This method is based on the change in heat-transfer resistance (Rth) upon thermal denaturation of dsDNA (double-stranded DNA) on nanocrystalline diamond. First, ssDNA (single-stranded DNA) fragments that span the size range of the PAH exons were successfully immobilized on nanocrystalline diamond. Next, it was studied whether an Rth change could be observed during the thermal denaturation of these DNA fragments after hybridization to their complementary counterpart. A clear Rth shift during the denaturation of exon 5, exon 9, and exon 12 dsDNA was observed, corresponding to lengths of up to 123 bp. Finally, Rth was shown to detect prevalent single-nucleotide polymorphisms, c.473G>A (R158Q), c.932T>C (p.L311P), and c.1222C>T (R408W), correlated with phenylketonuria, displaying an effect related to the different melting temperatures of homoduplexes and heteroduplexes.Keywords: mutation detection, heat-transfer resistance, melting temperature, nanocrystalline diamond, persistence lengthhttp://www.dovepress.com/heat-transfer-based-detection-of-snps-in-the-pah-gene-of-pku-patients-a16261 |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Vanden Bon N van Grinsven B Murib MS Yeap WS Haenen K De Ceuninck W Wagner P Ameloot M Vermeeren V Michiels L |
spellingShingle |
Vanden Bon N van Grinsven B Murib MS Yeap WS Haenen K De Ceuninck W Wagner P Ameloot M Vermeeren V Michiels L Heat-transfer-based detection of SNPs in the PAH gene of PKU patients International Journal of Nanomedicine |
author_facet |
Vanden Bon N van Grinsven B Murib MS Yeap WS Haenen K De Ceuninck W Wagner P Ameloot M Vermeeren V Michiels L |
author_sort |
Vanden Bon N |
title |
Heat-transfer-based detection of SNPs in the PAH gene of PKU patients |
title_short |
Heat-transfer-based detection of SNPs in the PAH gene of PKU patients |
title_full |
Heat-transfer-based detection of SNPs in the PAH gene of PKU patients |
title_fullStr |
Heat-transfer-based detection of SNPs in the PAH gene of PKU patients |
title_full_unstemmed |
Heat-transfer-based detection of SNPs in the PAH gene of PKU patients |
title_sort |
heat-transfer-based detection of snps in the pah gene of pku patients |
publisher |
Dove Medical Press |
series |
International Journal of Nanomedicine |
issn |
1178-2013 |
publishDate |
2014-03-01 |
description |
Natalie Vanden Bon,1 Bart van Grinsven,2 Mohammed Sharif Murib,2 Weng Siang Yeap,2 Ken Haenen,2,3 Ward De Ceuninck,2,3 Patrick Wagner,2,3 Marcel Ameloot,1 Veronique Vermeeren,1 Luc Michiels11Biomedical Research Institute, Hasselt University, Diepenbeek, Belgium; 2Institute for Materials Research, Hasselt University, Diepenbeek, Belgium; 3IMOMEC, Diepenbeek, BelgiumAbstract: Conventional neonatal diagnosis of phenylketonuria is based on the presence of abnormal levels of phenylalanine in the blood. However, for carrier detection and prenatal diagnosis, direct detection of disease-correlated mutations is needed. To speed up and simplify mutation screening in genes, new technologies are developed. In this study, a heat-transfer method is evaluated as a mutation-detection technology in entire exons of the phenylalanine hydroxylase (PAH) gene. This method is based on the change in heat-transfer resistance (Rth) upon thermal denaturation of dsDNA (double-stranded DNA) on nanocrystalline diamond. First, ssDNA (single-stranded DNA) fragments that span the size range of the PAH exons were successfully immobilized on nanocrystalline diamond. Next, it was studied whether an Rth change could be observed during the thermal denaturation of these DNA fragments after hybridization to their complementary counterpart. A clear Rth shift during the denaturation of exon 5, exon 9, and exon 12 dsDNA was observed, corresponding to lengths of up to 123 bp. Finally, Rth was shown to detect prevalent single-nucleotide polymorphisms, c.473G>A (R158Q), c.932T>C (p.L311P), and c.1222C>T (R408W), correlated with phenylketonuria, displaying an effect related to the different melting temperatures of homoduplexes and heteroduplexes.Keywords: mutation detection, heat-transfer resistance, melting temperature, nanocrystalline diamond, persistence length |
url |
http://www.dovepress.com/heat-transfer-based-detection-of-snps-in-the-pah-gene-of-pku-patients-a16261 |
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