Literature DB >> 21934286

SNP array analysis in constitutional and cancer genome diagnostics--copy number variants, genotyping and quality control.

N de Leeuw1, J Y Hehir-Kwa, A Simons, A Geurts van Kessel, D F Smeets, B H W Faas, R Pfundt.   

Abstract

Array-based comparative genomic hybridization analysis of genomic DNA was first applied in postnatal diagnosis for patients with intellectual disability (ID) and/or congenital anomalies (CA). Genome-wide single-nucleotide polymorphism (SNP) array analysis was subsequently implemented as the first line diagnostic test for ID/CA patients in our laboratory in 2009, because its diagnostic yield is significantly higher than that of routine cytogenetic analysis. In addition to the detection of copy number variations, the genotype information obtained with SNP array analysis enables the detection of stretches of homozygosity and thereby the possible identification of recessive disease genes, mosaic aneuploidy, or uniparental disomy. Patient-parent (trio) information analysis is used to screen for the presence of any form of uniparental disomy in the patient and can determine the parental origin of a de novo copy number variation. Moreover, the outcome of a genotype analysis is used as a final quality control by ruling out potential sample mismatches due to non-paternity or sample mix-up. SNP array analysis is now also used in our laboratory for patients with disorders for which locus heterogeneity is known (homozygosity pre-screening), in prenatal diagnosis in case of structural ultrasound anomalies, and for patients with leukemia. In this report, we summarize our array findings and experiences in the various diagnostic applications and demonstrate the power of a SNP-based array platform for molecular karyotyping, because it not only significantly improves the diagnostic yield in both constitutional and cancer genome diagnostics, but it also enhances the quality of the diagnostic laboratory workflow.
Copyright © 2011 S. Karger AG, Basel.

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Year:  2011        PMID: 21934286     DOI: 10.1159/000331273

Source DB:  PubMed          Journal:  Cytogenet Genome Res        ISSN: 1424-8581            Impact factor:   1.636


  15 in total

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2.  Genetic technologies in cancer investigation - applications in aggresive lymphoid malignancies.

Authors:  Nicoleta Mariana Berbec; Aurora Arghir; Anca Vitcu; Silvana Angelescu; Andrei Colita Amd; Anca Ciobanu; Sorina Mihaela Papuc; Andreea-Cristina Tutlan-Cunita; Anca Roxana Lupu
Journal:  Maedica (Buchar)       Date:  2012-01

3.  A 380-kb Duplication in 7p22.3 Encompassing the LFNG Gene in a Boy with Asperger Syndrome.

Authors:  A T Vulto-van Silfhout; A F M de Brouwer; N de Leeuw; C C Obihara; H G Brunner; B B A de Vries
Journal:  Mol Syndromol       Date:  2012-02-10

4.  Mate pair sequencing for the detection of chromosomal aberrations in patients with intellectual disability and congenital malformations.

Authors:  Sarah Vergult; Ellen Van Binsbergen; Tom Sante; Silke Nowak; Olivier Vanakker; Kathleen Claes; Bruce Poppe; Nathalie Van der Aa; Markus J van Roosmalen; Karen Duran; Masoumeh Tavakoli-Yaraki; Marielle Swinkels; Marie-José van den Boogaard; Mieke van Haelst; Filip Roelens; Frank Speleman; Edwin Cuppen; Geert Mortier; Wigard P Kloosterman; Björn Menten
Journal:  Eur J Hum Genet       Date:  2013-10-09       Impact factor: 4.246

5.  Identifying the similarities and differences between single nucleotide polymorphism array (SNPa) analysis and karyotyping in acute myeloid leukemia and myelodysplastic syndromes.

Authors:  Thiago Rodrigo de Noronha; Sandra Serson Rohr; Maria de Lourdes Lopes Ferrari Chauffaille
Journal:  Rev Bras Hematol Hemoter       Date:  2014-11-21

6.  High-density SNP arrays improve detection of HER2 amplification and polyploidy in breast tumors.

Authors:  Thomas V O Hansen; Jonas Vikesaa; Sine S Buhl; Henrik H Rossing; Vera Timmermans-Wielenga; Finn C Nielsen
Journal:  BMC Cancer       Date:  2015-02-06       Impact factor: 4.430

7.  Copy number variants in a sample of patients with psychotic disorders: is standard screening relevant for actual clinical practice?

Authors:  Noortje Wa Van de Kerkhof; Ilse Feenstra; Frank Mma van der Heijden; Nicole de Leeuw; Rolph Pfundt; Gerald Stöber; Jos Im Egger; Willem Ma Verhoeven
Journal:  Neuropsychiatr Dis Treat       Date:  2012-07-12       Impact factor: 2.570

8.  Combined array CGH plus SNP genome analyses in a single assay for optimized clinical testing.

Authors:  Joanna Wiszniewska; Weimin Bi; Chad Shaw; Pawel Stankiewicz; Sung-Hae L Kang; Amber N Pursley; Seema Lalani; Patricia Hixson; Tomasz Gambin; Chun-hui Tsai; Hans-Georg Bock; Maria Descartes; Frank J Probst; Fernando Scaglia; Arthur L Beaudet; James R Lupski; Christine Eng; Sau Wai Cheung; Carlos Bacino; Ankita Patel
Journal:  Eur J Hum Genet       Date:  2013-05-22       Impact factor: 4.246

9.  Best diagnostic approach for the genetic evaluation of fetuses after intrauterine death in first, second or third trimester: QF-PCR, karyotyping and/or genome wide SNP array analysis.

Authors:  Angelique Ja Kooper; Brigitte Hw Faas; Ilse Feenstra; Nicole de Leeuw; Dominique Fcm Smeets
Journal:  Mol Cytogenet       Date:  2014-01-16       Impact factor: 2.009

10.  DRUMS: Disk Repository with Update Management and Select option for high throughput sequencing data.

Authors:  Martin Nettling; Nils Thieme; Andreas Both; Ivo Grosse
Journal:  BMC Bioinformatics       Date:  2014-02-04       Impact factor: 3.169

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