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全自动DNA定量分析系统在胸腔积液细胞病理诊断中的应用

孟芝兰 高亮 顾建刚 罗玉凤 钟桃铃 朱晨雁

孟芝兰, 高亮, 顾建刚, 罗玉凤, 钟桃铃, 朱晨雁. 全自动DNA定量分析系统在胸腔积液细胞病理诊断中的应用[J]. 协和医学杂志, 2012, 3(1): 36-40. doi: 10.3969/j.issn.1674-9081.2012.01.009
引用本文: 孟芝兰, 高亮, 顾建刚, 罗玉凤, 钟桃铃, 朱晨雁. 全自动DNA定量分析系统在胸腔积液细胞病理诊断中的应用[J]. 协和医学杂志, 2012, 3(1): 36-40. doi: 10.3969/j.issn.1674-9081.2012.01.009
Zhi-lan MENG, Liang GAO, Jian-gang GU, Yu-feng LUO, Tao-ling ZHONG, Chen-yan ZHU. Application of Automatic DNA Image Cytometry in Diagnosis of Pleural Effusion[J]. Medical Journal of Peking Union Medical College Hospital, 2012, 3(1): 36-40. doi: 10.3969/j.issn.1674-9081.2012.01.009
Citation: Zhi-lan MENG, Liang GAO, Jian-gang GU, Yu-feng LUO, Tao-ling ZHONG, Chen-yan ZHU. Application of Automatic DNA Image Cytometry in Diagnosis of Pleural Effusion[J]. Medical Journal of Peking Union Medical College Hospital, 2012, 3(1): 36-40. doi: 10.3969/j.issn.1674-9081.2012.01.009

全自动DNA定量分析系统在胸腔积液细胞病理诊断中的应用

doi: 10.3969/j.issn.1674-9081.2012.01.009
详细信息
    通讯作者:

    孟芝兰 电话:010-65295523, E-mail:mengzhl@sogou.com

  • 中图分类号: R446.8

Application of Automatic DNA Image Cytometry in Diagnosis of Pleural Effusion

More Information
  • 摘要:   目的  探讨细胞DNA定量分析技术在胸腔积液细胞病理诊断中的应用价值。  方法  采用细胞DNA定量分析技术对50例胸腔积液脱落细胞DNA含量进行检测, 并以细胞学诊断结果作为标准, 分析该技术诊断阳性病例的最佳阈值。  结果  细胞DNA定量分析技术用于胸腔积液诊断, 以细胞DNA指数(DNA index, DI)2.5判定为非整倍体细胞, 该类细胞数目最小值为1时诊断阳性敏感性为87.5%, 特异性为100%。  结论  细胞DNA定量分析技术在胸腔积液诊断中有良好的应用前景, 其诊断阈值需扩大样本量进一步验证。
  • 图  1  以DI值和非整倍体细胞数作为阳性诊断阈值, 细胞DNA定量分析检测敏感性

    图例中数字为非整倍体细胞数目

    图  2  细胞学诊断为腺癌标本的DNA定量检测数据

    图  3  细胞学诊断为小细胞癌的DNA定量检测数据

    图  4  细胞学诊断为淋巴瘤的DNA定量检测数据

    图  5  细胞学诊断为间皮瘤的DNA定量检测数据

    图  6  细胞学诊断为间皮瘤但DNA定量检测为阴性数据

    图  7  细胞学诊断为阴性的DNA定量检测数据

    表  1  细胞学诊断结果

    表  2  DNA定量分析诊断胸水的阈值比较

    表  3  细胞DNA检测与常规细胞学比较

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    [2] Motherby H, Marcy T, Hecker M, et al. Static DNA cytometry as a diagnostic aid in effusion cytology. I DNA aneuploidy for identification and differentiation of primary and secondary tumors of the serous membranes[J]. Anal Quant Cytol Histol, 1998, 20:153-161. http://europepmc.org/abstract/MED/9642441
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    [4] Koss LG. Diagnostic cytology and its histopathologic bases[M]. 4th ed. Philadelphia: Lippincott Company, 1992.
    [5] Whitaker BP. Thionin feulgen stain for DNA (Ploidy) quantitation by image analysis[J]. J Histotechnol, 1993, 2:113-116. http://www.wanfangdata.com.cn/details/detail.do?_type=perio&id=10.1179/his.1993.16.2.113
    [6] Dejmek A, Hjerpe A. Reactivity of six antibodies in effusions of mesothelioma, adenocarcinoma, and mesotheliosis:stepwise logistic regression analysis[J]. Cytopathology, 2000, 11:8-17. doi:  10.1046/j.1365-2303.2000.00211.x
    [7] Gia-Khanh N. Cytopathology of pleural mesotheliomas[J]. Am J Clin Pathol, 2000, 114:568-581. http://europepmc.org/abstract/med/11996173
    [8] Guillaud M, Benedet J, Scott C, et al. DNA ploidy compared with human papilloma virus testing (hybrid capture Ⅱ) and conventional cervical cytology as a primary screening test for cervical high-grade lesions and cancer in 1555 patients with biopsy confirmation[J]. Cancer, 2006, 107:309-318. doi:  10.1002/cncr.21993
    [9] Maraki D, Yalcinkaya S, Pomjanski N, et al. Cytologic and DNA-cytometric examination of oral lesions in lichen planus[J]. J Oral Pathol Med, 2006, 35:227-232. doi:  10.1111/j.1600-0714.2006.00401.x
    [10] Dunn JM, Mackenzie GD, Oukrif D. Image cytometry accurately detects DNA ploidy abnormalities and predicts late relapse to high-grade dysplasia and adenocarcinoma in Barrett's oesophagus following photodynamic therapy[J]. Br J Cancer, 2010, 102:1608-1617. doi:  10.1038/sj.bjc.6605688
    [11] Maria O, Caron L, Mihaescu A. Image cytometry:an aid for cytological diagnosis of pleural effusions[J]. Diagn Cytopathol, 2005, 32:173-176. doi:  10.1002/dc.20205
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出版历程
  • 收稿日期:  2011-10-27
  • 刊出日期:  2012-01-30

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