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Title: Balanced into array: genome-wide array analysis in 54 patients with an apparently balanced de novo chromosome rearrangement and a meta-analysis
Author(s): Feenstra, I. (321517369)
Hanemaaijer, N.
Sikkema-Raddatz, B.
Yntema, H.G. (229521649)
Dijkhuizen, T. (158567978)
Lugtenberg, D. (29897987X)
Verheij, J.
Green, A.
Hordijk, R.
Reardon, W.
Vries, B. de (157142396)
Brunner, H.G. (112228682)
Bongers, E.M. (291348971)
Leeuw, N. de (181941376)
Ravenswaaij-Arts, C.M.A. van (230344143)
Publication year: 2011
Document type: Article / Letter to editor
Journal: European Journal of Human Genetics
ISSN: 1018-4813
Volume: vol. 19
Issue: iss. 11
Start page: p. 1152
End page: p. 1160
Annotation: Feenstra, Ilse Hanemaaijer, Nicolien Sikkema-Raddatz, Birgit Yntema, Helger Dijkhuizen, Trijnie Lugtenberg, Dorien Verheij, Joke Green, Andrew Hordijk, Roel Reardon, William Vries, Bert de Brunner, Han Bongers, Ernie Leeuw, Nicole de van Ravenswaaij-Arts, Conny Research Support, Non-U.S. Gov't England Eur J Hum Genet. 2011 Nov;19(11):1152-60. doi: 10.1038/ejhg.2011.120. Epub 2011 Jun 29.
Abstract: High-resolution genome-wide array analysis enables detailed screening for cryptic and submicroscopic imbalances of microscopically balanced de novo rearrangements in patients with developmental delay and/or congenital abnormalities. In this report, we added the results of genome-wide array analysis in 54 patients to data on 117 patients from seven other studies. A chromosome imbalance was detected in 37% of all patients with two-breakpoint rearrangements. In 49% of these patients, the imbalances were located in one or both breakpoint regions. Imbalances were more frequently (90%) found in complex rearrangements, with the majority (81%) having deletions in the breakpoint regions. The size of our own cohort enabled us to relate the presence of an imbalance to the clinical features of the patients by using a scoring system, the De Vries criteria, that indicates the complexity of the phenotype. The median De Vries score was significantly higher (P=0.002) in those patients with an imbalance (5, range 1-9) than in patients with a normal array result (3, range 0-7). This study provides accurate percentages of cryptic imbalances that can be detected by genome-wide array analysis in simple and complex de novo microscopically balanced chromosome rearrangements and confirms that these imbalances are more likely to occur in patients with a complex phenotype.
Subject: IGMD 3: Genomic disorders and inherited multi-system disorders
IGMD 3: Genomic disorders and inherited multi-system disorders DCN 2: Functional Neurogenomics
NCMLS 3A: Genetics and epigenetic pathways of disease IGMD 3: Genomic disorders and inherited multi-system disorders
Organization: Human Genetics
UMCN Extern
Appears in Collections:Academic bibliography

Please use this identifier to cite or link to this item: http://hdl.handle.net/2066/96666

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