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ID 30875
JaLCDOI
フルテキストURL
著者
Kikkawa, Kiyoshi Okayama University
Narahara, Kouji Okayama University
Kimoto, Hiroshi Okayama University
抄録

We performed a cytogenetic study on 140 nonpolymalformed patients with mental retardation of clinically undefined origin, using a high resolution banding technique, to determine how much chromosome abnormalities contribute to the etiology of this condition. A total of 15 patients (10.7%) were found to have autosomal or sex chromosomal abnormalities. Autosomal abnormalities included partial monosomy (5 cases), reciprocal translocation (one case), 13/14 robertsonian translocation (3 cases), unbalanced translocation (one case), inverted duplication of 15q (one case) and mosaic trisomy 21 (one case). Sex chromosomal abnormalities comprised structural rearrangement of the short arm of the X chromosome (one case) and 47, XXY in a pure or mosaic form (two cases). It should be noted that four out of the 5 cases of partial monosomy had subtle interstitial deletions, which might have been unidentified by the conventional G-banding method alone. In one case of the robertsonian translocation 46,XY,t(13;14)/45,XY,t(13;14), a small deletion was thought to have occurred in the cells with a chromosome number of 45. Comparison of clinical features of the 15 chromosomally abnormal patients with those of patients with normal karyotypes did not show any clinical parameter indicative of chromosome imbalance. These results suggest that a subtle chromosomal deletion is specific to mental retardation associated with few malformations. We believe that diagnostic evaluation of mentally retarded patients, even if nonmalformed, should include chromosome analysis using a high resolution banding technique.

キーワード
chromosomes
high resolution banding technique
subtle interstitial deletion
mental retardation
Amo Type
Article
出版物タイトル
Acta Medica Okayama
発行日
1989-04
43巻
2号
出版者
Okayama University Medical School
開始ページ
105
終了ページ
114
ISSN
0386-300X
NCID
AA00508441
資料タイプ
学術雑誌論文
言語
英語
論文のバージョン
publisher
査読
有り
PubMed ID
Web of Science KeyUT