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应用荧光原位杂交技术快速诊断胎儿染色体数目异常 被引量:9

Application of the Fluorescent in Situ Hybridization on the Prenatal Diagnosis of the Fetal Aneuploidy in the Uncultured Amniocytes
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摘要 目的 探讨荧光原位杂交 (fluorescentinsituhybridization ,FISH)技术在快速产前诊断胎儿染色体数目异常中的价值。方法 对 2 0例孕 16~ 36周、有产前诊断指征者 ,在B超引导下经腹抽取羊水后 ,应用X、Y、18号染色体着丝粒探针 13q14 q2 1和 2 1q11特异性探针 ,对未培养的羊水间期细胞进行FISH ,然后用荧光显微镜进行观察 ,并用AppliedImaging染色体成像系统进行摄像和后期处理。结果  2 0例产前诊断者中 ,羊水间期细胞染色体数目正常者 19例 (XX 10例 ,XY 9例 ) ,染色体数目异常者 1例 (4 6 ,XY/ 47,XXY ) ,此例经引产后取脐血 ,经G带染色体检查证实。讨论 FISH用于羊膜腔穿刺后 2 4h内诊断胎儿染色体数目异常 ,快速。 Objective To study the method and value of fluorescent in situ hybridization (FISH) on the rapid prenatal diagnosis of the fetal aneuploidy in the uncultured amniocytes. Methods Amniocentesis was performed in 20 pregnant women of 16~36 gestational weeks with indications of prenatal diagnosis. We performed FISH, respectively, with the biotin labelled chromosome X and 18 centromeric probes and the digoxin labelled chromosome Y centromeric and 21q11 and 13q14 q21 specific probes on the uncultured amniocytes. The slides were observed under the fluorescent microscope and the images were captured by the Applied Imaging System. Results Normal chromosome number was observed in 19 cases: 10 cases of 46, XX and 9 cases of 46, XY. Aneuploidy was found in 1 case which was 46, XY/ 47, XXY and proved by G banding chromosomal on cord blood. Conclusion Fetal aneuploidy could be diagnosed within 24 hours after the amniocentesis by FISH. FISH is a rapid, accurate and reliable method to detect fetal aneuphoidy in uncultured amniocytes.
出处 《中华妇产科杂志》 CAS CSCD 北大核心 2000年第9期517-519,I012,共4页 Chinese Journal of Obstetrics and Gynecology
关键词 荧光原位杂交 染色体异常 产前诊断 胎儿 In situ hybridization, fluorescence Chromosome abnormalities Prenatal diagnosis Amniotic fluid
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同被引文献50

  • 1宋兰林,全松,刘晓力,钟梅,余艳红.用FISH技术快速诊断胎儿常见染色体数目异常[J].中国优生与遗传杂志,2004,12(5):38-39. 被引量:2
  • 2肖红梅,谭跃球,李麓芸,卢光琇.应用荧光原位杂交产前诊断未培养羊水细胞非整倍体[J].中华医学遗传学杂志,2004,21(6):608-610. 被引量:13
  • 3宋丹,钱卫平,谭玉梅,邹红艳,张敏,郑理光.应用荧光原位杂交技术诊断未培养羊水细胞染色体异常[J].中国优生与遗传杂志,2006,14(9):33-34. 被引量:1
  • 4李福才,孙开来,N Shimizu.21号染色体特异性柯斯质粒DNA克隆区域定位[J].中华医学遗传学杂志,1996,13(6):329-332. 被引量:14
  • 5Whiteman DAH, Klinger K. Efficiency of rapid in situ hybridization methods for prenatal diagnosis of chromosome abnormalities causing birth defects. Am J Hum Genet, 1991,49 ( suppl ) : A 1279.
  • 6Jobanputra V, Roy KK, Kucheria K. Prenatal detection of aneuploidies using fluorescence in situ hybridization: a preliminary experience in an Indian set up. J Biosci,2002,27: 155-163.
  • 7Lim HJ, Kim YJ, Yang JH, et al. Amniotic fluid interphase fluorescence in situ hybridization (FISH) for detection of aneuploidy experiences in 130 prenatal cases. J Korean Med Sci,2002,17:589-592.
  • 8Luquet 1, Mugneret F, Athis PD, et al. French multi-eentrie study of 2000 amniotic fluid interphase FISH analyses from high-risk pregnancies and review of the literature. Ann Genet ,2002,45:77-88.
  • 9Witters I, Devriendt K, Legius E, et al. Rapid prenatal diagnosis of trisomy 21 in 5049 consecutive uncultured amniotic fluid samples by fluorescence in situ hybridisation (FISH). Prenat Diagn, 2002,22 : 29-33.
  • 10D' Alton M, Malone FD, Chelmow D, et al. Defining the role of fluorescence in situ hybridization on uncultured amniocytes for prenatal diagnosis of aneuploidies. Am J Obstet Gynecol, 1997,176 : 769-776.

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