Historical prospective of human cytogenetics: from microscope to microarray

被引:60
作者
Smeets, DFCM [1 ]
机构
[1] Univ Nijmegen, Dept Human Genet, Med Ctr, NL-6500 HB Nijmegen, Netherlands
关键词
review; human cytogenetics; microscope; chromosome banding; fluorescence in situ hybridization; comparative genomic hybridization; array-CGH;
D O I
10.1016/j.clinbiochem.2004.03.006
中图分类号
R446 [实验室诊断]; R-33 [实验医学、医学实验];
学科分类号
1001 ;
摘要
After the fundamental discovery in 1956 that normal human cells contain 46 chromosomes, clinical cytogenetics was born and studies into the relation of chromosomal defects and disease could begin. Although many technical advances have been made over this long period, including the introduction of molecular techniques, until now, all cytogenetic studies have been performed through regular microscopes, which was throughout the years the most important equipment of a cytogenetic laboratory. However, recently a new technique has been introduced based on comparative genomic hybridization on an array of thousands of different probes (array-CGH). This technique enables an increase in the sensitivity of detecting chromosomal aberrations far beyond the detection limit of regular banding techniques. Furthermore, it gives us the possibility to detect genomic changes in malignant cells in cases where aberrations are too complex to study or when chromosomes are not available at all. Cytogenetic laboratories are now challenged to introduce and incorporate this new application next to the various well-established microscopical techniques to provide optimal diagnostic services. (C) 2004 The Canadian Society of Clinical Chemists. All rights reserved.
引用
收藏
页码:439 / 446
页数:8
相关论文
共 44 条
[1]   Genomic microarrays in human genetic disease and cancer [J].
Albertson, DG ;
Pinkel, D .
HUMAN MOLECULAR GENETICS, 2003, 12 :R145-R152
[2]  
BOUE A, 1985, ADV HUM GENET, V14, P1
[3]   DIFFERENTIAL BINDING OF ALKYLATING FLUOROCHROMES IN HUMAN CHROMOSOMES [J].
CASPERSS.T ;
ZECH, L ;
JOHANSSO.C .
EXPERIMENTAL CELL RESEARCH, 1970, 60 (03) :315-&
[4]   CHEMICAL DIFFERENTIATION ALONG METAPHASE CHROMOSOMES [J].
CASPERSSON, T ;
FARBER, S ;
FOLEY, GE ;
KUDYNOWSKI, J ;
MODEST, EJ ;
SIMONSSON, E ;
WAGH, U ;
ZECH, L .
EXPERIMENTAL CELL RESEARCH, 1968, 49 (01) :219-+
[5]   Integration of cytogenetic landmarks into the draft sequence of the human genome [J].
Cheung, VG ;
Nowak, N ;
Jang, W ;
Kirsch, IR ;
Zhao, S ;
Chen, XN ;
Furey, TS ;
Kim, UJ ;
Kuo, WL ;
Olivier, M ;
Conroy, J ;
Kasprzyk, A ;
Massa, H ;
Yonescu, R ;
Sait, S ;
Thoreen, C ;
Snijders, A ;
Lemyre, E ;
Bailey, JA ;
Bruzel, A ;
Burrill, WD ;
Clegg, SM ;
Collins, S ;
Dhami, P ;
Friedman, C ;
Han, CS ;
Herrick, S ;
Lee, J ;
Ligon, AH ;
Lowry, S ;
Morley, M ;
Narasimhan, S ;
Osoegawa, K ;
Peng, Z ;
Plajzer-Frick, I ;
Quade, BJ ;
Scott, D ;
Sirotkin, K ;
Thorpe, AA ;
Gray, JW ;
Hudson, J ;
Pinkel, D ;
Ried, T ;
Rowen, L ;
Shen-Ong, GL ;
Strausberg, RL ;
Birney, E ;
Callen, DF ;
Cheng, JF ;
Cox, DR .
NATURE, 2001, 409 (6822) :953-958
[6]   Telomeres: a diagnosis at the end of the chromosomes [J].
de Vries, BBA ;
Winter, R ;
Schinzel, A ;
van Ravenswaaij-Arts, C .
JOURNAL OF MEDICAL GENETICS, 2003, 40 (06) :385-398
[7]  
EDWARDS JH, 1960, LANCET, V1, P787
[8]  
Flemming W, 1882, Zellsubstanz, kern und zelltheilung
[9]   THE DETECTION OF SUBTELOMERIC CHROMOSOMAL REARRANGEMENTS IN IDIOPATHIC MENTAL-RETARDATION [J].
FLINT, J ;
WILKIE, AOM ;
BUCKLE, VJ ;
WINTER, RM ;
HOLLAND, AJ ;
MCDERMID, HE .
NATURE GENETICS, 1995, 9 (02) :132-140
[10]  
FORD CE, 1959, LANCET, V1, P711