A COMPARISON OF THE SENSITIVITY OF IMMUNOPEROXIDASE STAINING METHODS WITH HIGH-SENSITIVITY FLUORESCENCE FLOW-CYTOMETRY ANTIBODY QUANTITATION ON THE CELL-SURFACE

被引:17
作者
COVENTRY, BJ
NEOH, SH
MANTZIORIS, BX
SKINNER, JM
ZOLA, H
BRADLEY, J
机构
[1] FLINDERS UNIV S AUSTRALIA,DEPT CLIN IMMUNOL,ADELAIDE,SA 5001,AUSTRALIA
[2] FLINDERS MED CTR,DEPT CLIN IMMUNOL,ADELAIDE,SA,AUSTRALIA
[3] FLINDERS MED CTR,DEPT PATHOL,ADELAIDE,SA,AUSTRALIA
关键词
IMMUNOPEROXIDASE; NICKEL-ENHANCED; IMAGE ANALYSIS; HIGH-SENSITIVITY FLOW CYTOMETRY; SENSITIVITY;
D O I
10.1177/42.8.8027533
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Surface molecules present in low copy numbers can be detected with high-sensitivity fluorescence now cytometry. Many cells previously thought not to express certain molecules on their surface can now be shown to have these molecules in very low copy numbers by high-sensitivity fluorescent cytometric methods. Detection of molecules by immunoperoxidase staining methods has not previously been compared with high-sensitivity flow cytometry techniques. Computerized video image analysis (VIA) is a method that allows measurement of area and density of the immunostain chromogen reaction product in a standardized fashion analogous to flow cytometry. In this study, we compared immunoperoxidase reaction products measured by VIA methods with high-sensitivity now cytometric measurements for cells with 10,000 down to 50 antibody molecules bound to their surfaces. Detection of 100-200 surface molecules was possible with heavy metal-enhanced immunoperoxidase methods, whereas standard immunoperoxidase methods were not as sensitive. The sensitivity of the nickel-enhanced immunoperoxidase staining method was confirmed for detection of an epitope (Tac-IL2 receptor alpha-chain) present in low numbers on the surface of peripheral blood lymphocytes.
引用
收藏
页码:1143 / 1147
页数:5
相关论文
共 12 条
[2]  
BENARIBIA MH, 1989, J IMMUNOL, V142, P490
[3]   COLOR MODIFICATION OF DIAMINOBENZIDINE (DAB) PRECIPITATION BY METALLIC-IONS AND ITS APPLICATION FOR DOUBLE IMMUNOHISTOCHEMISTRY [J].
HSU, SM ;
SOBAN, E .
JOURNAL OF HISTOCHEMISTRY & CYTOCHEMISTRY, 1982, 30 (10) :1079-1082
[4]   THE MICROCOMPUTER AND IMAGE-ANALYSIS IN DIAGNOSTIC PATHOLOGY [J].
JARVIS, LR .
MICROSCOPY RESEARCH AND TECHNIQUE, 1992, 21 (04) :292-299
[5]   MICROCOMPUTER VIDEO IMAGE-ANALYSIS [J].
JARVIS, LR .
JOURNAL OF MICROSCOPY, 1988, 150 :83-97
[6]   PARAMETERS OF INTERACTION OF A NOVEL MONOCLONAL-ANTIBODY (33B3.1) WITH THE HUMAN IL2-RECEPTORS - INTERRELATIONSHIP BETWEEN 33B3.1, ANTI-TAC, AND IL2 BINDING-SITES [J].
LEMAUFF, B ;
GASCAN, H ;
OLIVE, D ;
MOREAU, JF ;
MAWAS, C ;
SOULILLOU, JP ;
JACQUES, Y .
HUMAN IMMUNOLOGY, 1987, 19 (01) :53-68
[7]   ULTRASOUND-AMPLIFIED IMMUNOHISTOCHEMISTRY [J].
PODKLETNOVA, I ;
ALHO, H .
JOURNAL OF HISTOCHEMISTRY & CYTOCHEMISTRY, 1993, 41 (01) :51-56
[8]   TIME-RESOLVED FLUORESCENCE IMAGING OF EUROPIUM CHELATE LABEL IN IMMUNOHISTOCHEMISTRY AND INSITU HYBRIDIZATION [J].
SEVEUS, L ;
VAISALA, M ;
SYRJANEN, S ;
SANDBERG, M ;
KUUSISTO, A ;
HARJU, R ;
SALO, J ;
HEMMILA, I ;
KOJOLA, H ;
SOINI, E .
CYTOMETRY, 1992, 13 (04) :329-338
[9]   LARGE-SCALE PRODUCTION OF MONOCLONAL-ANTIBODIES IN DIALYSIS TUBING [J].
SJOGRENJANSSON, E ;
JEANSSON, S .
JOURNAL OF IMMUNOLOGICAL METHODS, 1985, 84 (1-2) :359-364
[10]   VIDEO IMAGE-ANALYSIS IN PATHOLOGY [J].
SKINNER, JM ;
ZHAO, Y ;
COVENTRY, B ;
BRADLEY, J .
DISEASE MARKERS, 1993, 11 (2-3) :53-70