COMPARATIVE-ASSESSMENT OF DNA ANALYSIS IN EFFUSIONS BY IMAGE-ANALYSIS AND FLOW-CYTOMETRY

被引:13
作者
BANKS, ER
JENNINGS, CD
JACOBS, S
DAVEY, DD
机构
[1] Departments of Pathology and Laboratory Medicine, University of Kentucky and Lexington VAMC, Lexington, Kentucky
关键词
PLEURAL; PERITONEAL; CARCINOMA;
D O I
10.1002/dc.2840100116
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
Cytologic evaluation of body cavity fluids is useful to detect malignancy within the pleural and peritoneal spaces. A definitive diagnosis cannot always be made on cytologic evaluation alone. As malignant processes may show abnormal DNA content, DNA analysis of effusions may be useful Therefore, we determined the DNA content of 37 effusions by flow cytometry (FC) and image analysis (IA) using the CAS 200. Of the 37 fluids evaluated, 18 were cytologically malignant, 15 benign, and four atypical. Overall, all, 22 fluids (60%) showed concordance between FC and IA. None of the benign fluids were aneuploid. All showed diploid histograms or diploidy with increased proliferating cells. Three of four atypical fluids had increased proliferating cells by either FC or IA, whereas one was diploid by both methods. Aneuploidy was detected in 13 malignant fluids: five were aneuploid by both methods and eight by only one method. IA identified aneuploidy in five of those eight cases, while three were identified by FC. Three of the cytologically malignant fluids were diploid by both methods, and two showed increased proliferating cells by IA and diploidy by FC. The specificity of both methods was 100%. However, the sensitivity of identifying a malignant fluid by aneuploidy is low, 44% for FC and 55% for IA. IA appears to identify small aneuploid populations more frequently than FC. The detection of aneuploidy in effusions is highly suggestive of malignancy, and the combination of both techniques gives the highest detection rate (72%). However, neither are as sensitive as traditional cytologic evaluation with the occasional use of additional histochemical stains. Diagn Cytopathol 1994; 10:62-67. (C) 1994 Wiley-Liss, Inc.
引用
收藏
页码:62 / 67
页数:6
相关论文
共 18 条
[1]  
Fuhr JE, Kattine AA, Sullivan TA, Nelson HS, Flow cytometric analysis of pulmonary fluids and cells for the detection of malignancies, Am J Pathol, 141, pp. 211-215, (1992)
[2]  
Kapusta L, Zbieranowski I, Demianiuk C, Murray D, The role of DNA flow and image cytometry in the evaluation of body cavity fluids, Anal Quant Cytol Histol, 13, pp. 187-192, (1991)
[3]  
Sinton EB, Carver RK, Morgan DL, Et al., Prospective study of concurrent ploidy analysis and routine cytopathology in body cavity fluids, Arch Pathol Lab Med, 114, pp. 188-194, (1990)
[4]  
Wick MR, Loy T, Mills SE, Legier JF, Manivel JC, Malignant epithelioid pleural mesothelioma versus peripheral pulmonary adenocarcinoma. A histochemical, ultrastructural, and immunohistologic study of 103 cases, Hum Pathol, 21, pp. 759-766, (1990)
[5]  
Evans DA, Thornthwaite JT, Ng ABP, Sugarbaker EV, DNA flow cytometry of pleural effusions. Comparison with pathology for the diagnosis of malignancy, Anal Quant Cytol, 5, pp. 19-27, (1983)
[6]  
Rijken A, Dekker A, Taylor S, Hoffman P, Blank M, Krause JR, Diagnostic value of DNA analysis in effusions by flow cytometry and image analysis. A prospective study on 102 patients as compared with cytologic examination, Am J Clin Pathol, 95, pp. 6-12, (1991)
[7]  
Schneller J, Eppich E, Greenebaum E, Et al., Flow cytometry and Feulgen cytophotometry in evaluation of effusions, Cancer, 59, pp. 1307-1313, (1987)
[8]  
Stonesifer KJ, Xiang J, Wilkinson EJ, Benson NA, Braylan RC, Flow cytometric analysis and cytopathology of body cavity fluids, Acta Cytol, 31, pp. 125-130, (1987)
[9]  
Unger KM, Raber M, Bedrossian CWM, Stein DA, Barlogie B, Analysis of pleural effusions using automated flow cytometry, Cancer, 52, pp. 873-877, (1983)
[10]  
Claud RD, Weinstein RS, Howeedy A, Straus AK, Coon JS, Comparison of image analysis of imprints with flow cytometry for DNA analysis of solid tumors, Mod Pathol, 2, pp. 463-467, (1989)