Evolving applications of microarray analysis in prenatal diagnosis

被引:34
作者
Savage, Melissa S. [1 ]
Mourad, Mirella J. [1 ]
Wapner, Ronald J. [1 ]
机构
[1] Columbia Univ, Dept Obstet & Gynecol, Div Reprod Genet, New York, NY 10032 USA
关键词
array-based comparative genomic hybridization; microarray; prenatal diagnosis; COMPARATIVE GENOMIC HYBRIDIZATION; MENTAL-RETARDATION; CHROMOSOMAL MICROARRAY; DEVELOPMENTAL DELAY; DETECTION RATES; ACGH; ABNORMALITIES; IMBALANCES; ANOMALIES; SPECIMENS;
D O I
10.1097/GCO.0b013e32834457c7
中图分类号
R71 [妇产科学];
学科分类号
100211 ;
摘要
Purpose of review Evaluation of copy number variation by microarray analysis has significant advantages over standard metaphase karyotyping and is quickly becoming the primary means of postnatal genetic evaluation for neonates and infants with dysmorphic features or cognitive difficulties. Before this technology is routinely used for prenatal diagnosis, further evaluation of its value and the clinical dilemmas it may introduce requires further study. This article reviews the recent literature on array technology use in prenatal diagnosis. Recent findings The use of microarray analysis for routine prenatal diagnosis is still being investigated. Use in certain prenatal situations such as the fetus with structural anomalies or those who are stillborn appears to add important, clinically relevant information. There are a broad range of array designs available and recent research has focused on the appropriate design for prenatal testing. Patient counseling may occasionally be difficult because of the uncertain phenotype associated with some array findings. Summary We present a brief overview of microarray technology including benefits and limitations. Previous research regarding use of microarray in prenatal diagnosis including specific scenarios of anomalous fetuses and abnormal karyotype is reviewed. Current guidelines and the authors' recommendations are presented.
引用
收藏
页码:103 / 108
页数:6
相关论文
共 26 条
[1]   Comparison of targeted and whole genome analysis of postnatal specimens using a commercially available array based comparative genomic hybridisation (aCGH) microarray platform [J].
Aston, E. ;
Whitby, H. ;
Maxwell, T. ;
Glaus, N. ;
Cowley, B. ;
Lowry, D. ;
Zhu, X. L. ;
Issa, B. ;
South, S. T. ;
Brothman, A. R. .
JOURNAL OF MEDICAL GENETICS, 2008, 45 (05) :268-274
[2]   Enhanced detection of clinically relevant genomic imbalances using a targeted plus whole genome oligonucleotide microarray [J].
Baldwin, Erin L. ;
Lee, Ji-Yun ;
Blake, Douglas M. ;
Bunke, Brian P. ;
Alexander, Chad R. ;
Kogan, Amy L. ;
Ledbetter, David H. ;
Martin, Christa L. .
GENETICS IN MEDICINE, 2008, 10 (06) :415-429
[3]   The impact of human copy number variation on a new era of genetic testing [J].
Choy, K. W. ;
Setlur, S. R. ;
Lee, C. ;
Lau, T. K. .
BJOG-AN INTERNATIONAL JOURNAL OF OBSTETRICS AND GYNAECOLOGY, 2010, 117 (04) :391-398
[4]  
Committee ACOG, 2009, OBSTET GYNECOL, V114, P1161
[5]   Whole-genome microarray analysis in prenatal specimens identifies clinically significant chromosome alterations without increase in results of unclear significance compared to targeted microarray [J].
Coppinger, Justine ;
Alliman, Sarah ;
Lamb, Allen N. ;
Torchia, Beth S. ;
Bejjani, Bassem A. ;
Shaffer, Lisa G. .
PRENATAL DIAGNOSIS, 2009, 29 (12) :1156-1166
[6]   Cryptic deletions are a common finding in "balanced'' reciprocal and complex chromosome rearrangements: A study of 59 patients [J].
De Gregori, M. ;
Ciccone, R. ;
Magini, P. ;
Pramparo, T. ;
Gimelli, S. ;
Messa, J. ;
Novara, F. ;
Vetro, A. ;
Rossi, E. ;
Maraschio, P. ;
Bonaglia, M. C. ;
Anichini, C. ;
Ferrero, G. B. ;
Silengo, M. ;
Fazzi, E. ;
Zatterale, A. ;
Fischetto, R. ;
Previdere, C. ;
Belli, S. ;
Turci, A. ;
Calabrese, G. ;
Bernardi, F. ;
Meneghelli, E. ;
Riegel, M. ;
Rocchi, M. ;
Guerneri, S. ;
Lalatta, F. ;
Zelante, L. ;
Romano, C. ;
Fichera, Ma ;
Mattina, T. ;
Arrigo, G. ;
Zollino, M. ;
Giglio, S. ;
Lonardo, F. ;
Bonfante, A. ;
Ferlini, A. ;
Cifuentes, F. ;
Van Esch, H. ;
Backx, L. ;
Schinzel, A. ;
Vermeesch, J. R. ;
Zuffardi, O. .
JOURNAL OF MEDICAL GENETICS, 2007, 44 (12) :750-762
[7]   Diagnostic genome profiling in mental retardation [J].
de Vries, BBA ;
Pfundt, R ;
Leisink, M ;
Koolen, DA ;
Vissers, LELM ;
Janssen, IM ;
van Reijmersdal, S ;
Nillesen, WM ;
Huys, EHLPG ;
de Leeuw, N ;
Smeets, D ;
Sistermans, EA ;
Feuth, T ;
van Ravenswaaij-Arts, CMA ;
van Kessel, AG ;
Schoenmakers, EFPM ;
Brunner, HG ;
Veltman, JA .
AMERICAN JOURNAL OF HUMAN GENETICS, 2005, 77 (04) :606-616
[8]   Identification of clinically significant, submicroscopic chromosome alterations and UPD in fetuses with ultrasound anomalies using genome-wide 250k SNP array analysis [J].
Faas, B. H. W. ;
van der Burgt, I. ;
Kooper, A. J. A. ;
Pfundt, R. ;
Hehir-Kwa, J. Y. ;
Smits, A. P. T. ;
de Leeuw, N. .
JOURNAL OF MEDICAL GENETICS, 2010, 47 (09) :586-594
[9]   High-resolution array genomic hybridization in prenatal diagnosis [J].
Friedman, J. M. .
PRENATAL DIAGNOSIS, 2009, 29 (01) :20-28
[10]   Applications of Array Comparative Genomic Hybridization in Obstetrics [J].
Fruhman, Gary ;
Van den Veyver, Ignatia B. .
OBSTETRICS AND GYNECOLOGY CLINICS OF NORTH AMERICA, 2010, 37 (01) :71-+