Quantitative Fluorescence Cytometric Measurement of Estrogen and Progesterone Receptors: Correlation with the Hormone Binding Assay

被引:0
作者
Angelos D. Gritzapis
Constantin N. Baxevanis
Ioannis Missitzis
Efrosine S. Katsanou
Michael N. Alexis
Julia Yotis
Michael Papamichail
机构
[1] Saint Savas Cancer Hospital,Department of Immunology
[2] Saint Savas Cancer Hospital,Breast Cancer Clinic
[3] Institute of Biological Research and Biotechnology,Molecular Endocrinology Programme
[4] the National Hellenic Research Foundation,Hormone Receptor Unit
[5] Saint Savas Cancer Hospital,undefined
来源
Breast Cancer Research and Treatment | 2003年 / 80卷
关键词
ABC; antigen quantitation; estrogen receptor; MESF; progesterone receptor;
D O I
暂无
中图分类号
学科分类号
摘要
We describe, here, a rapid flow cytometry technique for the detection and quantification of estrogen (ER) and progesterone (PgR) receptors in several human cell lines and in clinical samples obtained from breast cancer tumors. ER and PgR quantitation can be very useful in patients with breast cancer as their role in diagnosis and prognosis is well established. However ligand binding assays and immunohistochemical assays are difficult to measure heterogeneity in individual cells. On the other hand, flow cytometry is a convenient tool for quantification in individual cells. Flow cytometric results with breast cancer cell lines and clinical samples were compared to those obtained by quantitative biochemical ER and PgR performed by the standard dextran-coated charcoal biochemical assay. The latter assay is affected by the level of endogenous steroids. This is also the case in the routine measurement of ER/PgR in patient's tumor cells whereby estradiol molecules in patient's serum produced negative or low values in the biochemical assay. The mAbs used in our flow cytometric method bind to their specific ER or PgR independently of whether they are preoccupied by their ligands and they produce reliable results. With the use of beads calibrated in MESF (Molecules of Equivalent Soluble Fluorochrome) units, the ER and PgR can be measured on a per cell basis. The flow cytometric method showed a strong correlation with biochemical receptor assessments of either ERα (ERαDCC, r = 0.918, p = 0.073) or PgR (PgRDCC, r = 0.75, p = 0.001). This study demonstrates that ERα and PgR can be detected by flow cytometry on a per cell basis in intact cells, and can be quantitated reliably in terms of MESF without the limitations of competition with serum's estradiol molecules.
引用
收藏
页码:1 / 13
页数:12
相关论文
共 205 条
[1]  
Poola I(1998)Tamoxifen for early breast cancer: an overview of the randomised trials The Lancet 351 1451-1467
[2]  
Williams DM(1998)Quantitation of estrogen receptor mRNA copy numbers in breast cell lines and tumors flow cytometry: interlaboratory variation Anal Biochem 258 209-215
[3]  
Koduri S(1999)Flow cytometric analysis of estrogen receptor expression in isolated nuclei and cells from mammary cancer tissues Cytometry 36 131-139
[4]  
Ramprakash J(1995)Estrogen receptors in699 primary breast cancers: a comparison of immunohistochemical and biochemical methods Breast Cancer Res Treat 34 221-228
[5]  
Taylor RE(1999)Flow cytometric analysis of estrogen, progesterone receptor expression and DNA content in formalin fixed, paraffin-embedded human breast tumors Cytometry 38 61-69
[6]  
Hankins WD(2001)Detection of progesterone receptors forms A and B by immunohistochemical analysis J Clin Pathol 54 624-630
[7]  
Sabe I(1995)Menopause is associated with a significant increase in blood monocyte number and a relative decrease in the expression of estrogen receptors in human peripheral monocytes Am J Reprod Immunol 34 363-369
[8]  
Andritsch I(2000)Measurement of estrogen receptors in intact cells Cytometry 41 109-114
[9]  
Magoud A(1984)Flow cytometric determination of estrogen receptors in intact Cells Cancer Res 44 2516-2523
[10]  
Awad AS(1995)Use of the biotinylated antibody DAKO-ER 1D5 to measure estrogen receptor on cytokeratin positive cells obtained from primary breast cancer cells Cytometry 20 74-80