Home LiteratureArticle Details
PMID: 18687126 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Enrichment with anti-cytokeratin alone or combined with anti-EpCAM antibodies significantly increases the sensitivity for circulating tumor cell detection in metastatic breast cancer patients.

Breast cancer research : BCR ·Vol. 10 ·No. 4 ·2008-00-00 ·Pages R69

Deng G, Herrler M, Burgess D, Manna E, Krag D, Burke JF

Abstract

Circulating tumor cells (CTCs) are detectable in most cancer patients and they can meet an existing medical need to monitor cancer patients during a course of treatment and to help determine recurrent disease. CTCs are rarely found in the blood of cancer patients and enrichment is necessary for sensitive CTC detection. Most CTC enrichment technologies are anti-EpCAM antibody based even though CTC identification criteria are cytokeratin positive (CK+), CD45 negative (CD45-) and 4'6-diamidino-2-phenylindole (nuclear stain) positive (DAPI+). However, some tumor cells express low or no EpCAM. Here we present a highly sensitive and reproducible enrichment method that is based on binding to anti-CK alone or a combination of anti-CK and anti-EpCAM antibodies. Blood samples from 49 patients with metastatic breast cancer were processed using the CellSearchtrade mark system (Veridex, LLC, Raritan, NJ, USA), in parallel with our CTC assay method. We used anti-CK alone or in combination with anti-EpCAM antibodies for CTC enrichment. Brightfield and fluorescence labeled anti-CK, anti-CD45 and DAPI (nuclear stain) images were used for CTC identification. The Ariol(R) system (Genetix USA Inc, San Jose, CA, USA) was used for automated cell image capture and analysis of CTCs on glass slides. Our method has the capability to enrich three types of CTCs including CK+&EpCAM+, CK+&EpCAM-/low, and CK-/low&EpCAM+ cells. In the blind method comparison, our anti-CK antibody enrichment method showed a significantly higher CTC positive rate (49% vs. 29%) and a larger dynamic CTC detected range (1 to 571 vs. 1 to 270) than that of the CellSearchtrade mark system in the total of 49 breast cancer patients. Our method detected 15 to 111% more CTCs than the CellSearchtrade mark method in patients with higher CTC counts (>20 CTCs per 7.5 ml of blood). The three fluorescent and brightfield images from the Ariol(R) system reduced the number of false-positive CTC events according to the established CTC criteria. Our data indicate that the tumor-specific intracellular CK marker could be used for efficient CTC enrichment. Enrichment with anti-CK alone or combined with anti-EpCAM antibodies significantly enhances assay sensitivity. The three fluorescent and brightfield superior images with the Ariol(R) system reduced false-positive CTC events.

MeSH Terms
Antigens, Neoplasm/metabolism Biomarkers, Tumor/metabolism Breast Neoplasms/diagnosis,metabolism,pathology Cell Adhesion Molecules/metabolism Cell Line, Tumor Cell Nucleus/metabolism Epithelial Cell Adhesion Molecule False Positive Reactions Female Humans Image Processing, Computer-Assisted Keratins/biosynthesis,metabolism Medical Oncology/methods Neoplasm Metastasis Neoplastic Cells, Circulating/metabolism Reproducibility of Results
Chemicals
Antigens, Neoplasm Biomarkers, Tumor Cell Adhesion Molecules Epithelial Cell Adhesion Molecule Keratins
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Deng Glenn
Biology, Genetix USA Inc, 120 Baytech Drive, San Jose, CA 95134, USA. [email protected]
Herrler Michael
Burgess David
Manna Edward
Krag David
Burke Julian F
References (58)
58 references, click to expand
  1. Comparison of the clinical significance of occult tumor cells in blood and bone marrow in breast cancer.
    Int J Cancer. 2006 Apr 15;118(8):2013-9 PMID: 16287086
  2. Detection of circulating tumor cells in peripheral blood of patients with metastatic breast cancer: a validation study of the CellSearch system.
    Clin Cancer Res. 2007 Feb 1;13(3):920-8 PMID: 17289886
  3. Detection of circulating tumor cells in blood using an optimized density gradient centrifugation.
    Recent Results Cancer Res. 2003;162:149-55 PMID: 12790329
  4. Isolation and enrichment of urologic tumor cells in blood samples by a semi-automated CD45 depletion autoMACS protocol.
    Int J Oncol. 2002 Sep;21(3):521-30 PMID: 12168095
  5. A relevant immunomagnetic assay to detect and characterize epithelial cell adhesion molecule-positive cells in bone marrow from patients with breast carcinoma: immunomagnetic purification of micrometastases.
    Cancer. 2004 Aug 15;101(4):693-703 PMID: 15305398
  6. The fate of circulating tumors cells. I. Passage of cells through capillaries.
    Cancer Res. 1961 Jan;21:38-9 PMID: 13788099
  7. Molecular signature associated with bone marrow micrometastasis in human breast cancer.
    Cancer Res. 2003 Sep 15;63(18):5679-84 PMID: 14522883
  8. Asynchronous growth of prostate cancer is reflected by circulating tumor cells delivered from distinct, even small foci, harboring loss of heterozygosity of the PTEN gene.
    Cancer Res. 2006 Sep 15;66(18):8959-65 PMID: 16982734
  9. Quantification of the response of circulating epithelial cells to neodadjuvant treatment for breast cancer: a new tool for therapy monitoring.
    Breast Cancer Res. 2005;7(6):R975-9 PMID: 16280045
  10. Circulating tumor cells, disease progression, and survival in metastatic breast cancer.
    N Engl J Med. 2004 Aug 19;351(8):781-91 PMID: 15317891
  11. Statistical considerations for enumeration of circulating tumor cells.
    Cytometry A. 2007 Mar;71(3):154-62 PMID: 17200956
  12. Evaluation of cytokeratin-19 mRNA as a tumor marker in the peripheral blood of nasopharyngeal carcinoma patients receiving concurrent chemoradiotherapy.
    Int J Cancer. 2002 Feb 1;97(4):548-53 PMID: 11802221
  13. Circulating tumor cells in breast cancer: correlation to bone marrow micrometastases, heterogeneous response to systemic therapy and low proliferative activity.
    Clin Cancer Res. 2005 May 15;11(10):3678-85 PMID: 15897564
  14. Molecular and immunological detection of circulating tumor cells and micrometastases from solid tumors.
    Clin Chem. 1996 Sep;42(9):1369-81 PMID: 8787692
  15. Circulating tumor cells in breast cancer: Advanced tools for "tailored" therapy?
    Proc Natl Acad Sci U S A. 2006 Nov 14;103(46):17073-4 PMID: 17090687
  16. Cytokeratin-positive cells in the bone marrow and survival of patients with stage I, II, or III breast cancer.
    N Engl J Med. 2000 Feb 24;342(8):525-33 PMID: 10684910
  17. Metastasis: quantitative analysis of distribution and fate of tumor emboli labeled with 125 I-5-iodo-2'-deoxyuridine.
    J Natl Cancer Inst. 1970 Oct;45(4):773-82 PMID: 5513503
  18. uPAR and HER-2 gene status in individual breast cancer cells from blood and tissues.
    Proc Natl Acad Sci U S A. 2006 Nov 14;103(46):17361-5 PMID: 17079488
  19. Tumor cells circulate in the peripheral blood of all major carcinomas but not in healthy subjects or patients with nonmalignant diseases.
    Clin Cancer Res. 2004 Oct 15;10(20):6897-904 PMID: 15501967
  20. Isolation of rare circulating tumour cells in cancer patients by microchip technology.
    Nature. 2007 Dec 20;450(7173):1235-9 PMID: 18097410
  21. Detection of circulating tumor cells by reverse transcriptase polymerase chain reaction of maspin in patients with breast cancer undergoing conventional-dose chemotherapy.
    J Clin Oncol. 2000 May;18(9):1914-20 PMID: 10784632
  22. Global gene expression profiling of circulating tumor cells.
    Cancer Res. 2005 Jun 15;65(12):4993-7 PMID: 15958538
  23. An immunological enrichment method for epithelial cells from peripheral blood.
    J Immunol Methods. 1995 Jun 28;183(2):251-65 PMID: 7602148
  24. Comparison of two methods for enumerating circulating tumor cells in carcinoma patients.
    Cytometry B Clin Cytom. 2005 Nov;68(1):25-30 PMID: 16142788
  25. The detection of isolated tumor cells in bone marrow comparing bright-field immunocytochemistry and multicolor immunofluorescence.
    Ann Surg Oncol. 2005 Sep;12(9):753-60 PMID: 16079954
  26. Identification and characterization of circulating prostate carcinoma cells.
    Cancer. 2000 Jun 15;88(12):2787-95 PMID: 10870062
  27. Standardization of the immunocytochemical detection of cancer cells in BM and blood: I. establishment of objective criteria for the evaluation of immunostained cells.
    Cytotherapy. 1999;1(5):377-88 PMID: 20426539
  28. Prognostic significance of circulating tumour cells enumerated after filtration enrichment in early and metastatic breast cancer patients.
    Breast Cancer Res Treat. 2006 Sep;99(1):63-9 PMID: 16541316
  29. Isolation by size of epithelial tumor cells : a new method for the immunomorphological and molecular characterization of circulatingtumor cells.
    Am J Pathol. 2000 Jan;156(1):57-63 PMID: 10623654
  30. An immunomagnetic epithelial tumor cell enrichment model for minimal residual disease detection of cytokeratin 8+ malignancies.
    J Biol Regul Homeost Agents. 2005 Jan-Jun;19(1-2):84-91 PMID: 16178280
  31. Expression of epithelial cell adhesion molecule in carcinoma cells present in blood and primary and metastatic tumors.
    Int J Oncol. 2005 Jul;27(1):49-57 PMID: 15942643
  32. Breast Cancer Cells in the Blood: A Pilot Study.
    Breast J. 1999 Nov;5(6):354-358 PMID: 11348313
  33. Molecular detection of breast cancer cells in the peripheral blood of advanced-stage breast cancer patients using multimarker real-time reverse transcription-polymerase chain reaction and a novel porous barrier density gradient centrifugation technology.
    Clin Cancer Res. 2003 Oct 15;9(13):4865-71 PMID: 14581359
  34. A pooled analysis of bone marrow micrometastasis in breast cancer.
    N Engl J Med. 2005 Aug 25;353(8):793-802 PMID: 16120859
  35. Circulating breast cancer cells are frequently apoptotic.
    Am J Pathol. 2001 Jul;159(1):17-20 PMID: 11438448
  36. Detection and quantification of circulating tumor cells in mouse models of human breast cancer using immunomagnetic enrichment and multiparameter flow cytometry.
    Cytometry A. 2005 May;65(1):4-14 PMID: 15810015
  37. High speed detection of circulating tumor cells.
    Biosens Bioelectron. 2006 Apr 15;21(10):1893-9 PMID: 16464570
  38. Enumeration of circulating tumor cells in the blood of breast cancer patients after filtration enrichment: correlation with disease stage.
    Breast Cancer Res Treat. 2004 Aug;86(3):237-47 PMID: 15567940
  39. Global gene expression profiling of circulating endothelial cells in patients with metastatic carcinomas.
    Cancer Res. 2006 Mar 15;66(6):2918-22 PMID: 16540638
  40. Immunomagnetic tumor cell enrichment is promising in detecting circulating breast cancer cells.
    Oncology. 2003;64(2):160-5 PMID: 12566914
  41. Methods for isolating circulating epithelial cells and criteria for their classification as carcinoma cells.
    Cytotherapy. 2005;7(2):171-85 PMID: 16040397
  42. Comparison of two density gradient centrifugation systems for the enrichment of disseminated tumor cells in blood.
    Cytometry. 2002 Dec 1;49(4):150-8 PMID: 12454978
  43. Circulating tumor cells: a novel prognostic factor for newly diagnosed metastatic breast cancer.
    J Clin Oncol. 2005 Mar 1;23(7):1420-30 PMID: 15735118
  44. Frequent EpCam protein expression in human carcinomas.
    Hum Pathol. 2004 Jan;35(1):122-8 PMID: 14745734
  45. HER-2 gene amplification can be acquired as breast cancer progresses.
    Proc Natl Acad Sci U S A. 2004 Jun 22;101(25):9393-8 PMID: 15194824
  46. Fluctuation of circulating tumor cells in patients with lung cancer by real-time fluorescent quantitative-PCR approach before and after radiotherapy.
    J Cancer Res Ther. 2005 Oct-Dec;1(4):221-6 PMID: 17998657
  47. Evaluation of multiparameter flow cytometry for the detection of breast cancer tumor cells in blood samples.
    Am J Clin Pathol. 2005 Jan;123(1):66-74 PMID: 15762281
  48. Intraoperative molecular detection of circulating tumor cells by reverse transcription-polymerase chain reaction in patients with biliary-pancreatic cancer is associated with hematogenous metastasis.
    Ann Surg Oncol. 2002 May;9(4):364-70 PMID: 11986188
  49. Detection of disseminated tumor cells in peripheral blood of patients with breast cancer: correlation to nodal status and occurrence of metastases.
    Gynecol Oncol. 2004 Jan;92(1):256-61 PMID: 14751168
  50. Isolation of prostate-derived single cells and cell clusters from human peripheral blood.
    Cancer Res. 1996 Oct 15;56(20):4556-61 PMID: 8840959
  51. Rare expression of epithelial cell adhesion molecule on residual micrometastatic breast cancer cells after adjuvant chemotherapy.
    Clin Cancer Res. 2003 Jul;9(7):2598-604 PMID: 12855636
  52. Changes in cytoskeletal protein composition indicative of an epithelial-mesenchymal transition in human micrometastatic and primary breast carcinoma cells.
    Clin Cancer Res. 2005 Nov 15;11(22):8006-14 PMID: 16299229
  53. Detection of circulating cytokeratin-positive cells in the blood of breast cancer patients using immunomagnetic enrichment and digital microscopy.
    Clin Cancer Res. 2002 May;8(5):1085-91 PMID: 12006523
  54. Down-regulated expression of cytokeratin 18 promotes progression of human breast cancer.
    Clin Cancer Res. 2004 Apr 15;10(8):2670-4 PMID: 15102669
  55. Dissecting the metastatic cascade.
    Nat Rev Cancer. 2004 Jun;4(6):448-56 PMID: 15170447
  56. Detection and characterization of carcinoma cells in the blood.
    Proc Natl Acad Sci U S A. 1998 Apr 14;95(8):4589-94 PMID: 9539782
  57. Multigene reverse transcription-PCR profiling of circulating tumor cells in hormone-refractory prostate cancer.
    Clin Chem. 2004 May;50(5):826-35 PMID: 14988224
  58. Frequent detection and immunophenotyping of prostate-derived cell clusters in the peripheral blood of prostate cancer patients.
    Int J Biol Markers. 2004 Apr-Jun;19(2):93-9 PMID: 15255540
Article Info
Journal
Breast cancer research : BCR
Abbr.
Breast Cancer Res
ISSN
1465-542X
Published
2008-00-00
Epub
2008-00-07
Pages
R69
Language
English
Region
England
NLM ID
100927353
PMCID
PMC2575542
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]