Detection of circulating epithelial cells in the blood of patients with breast cancer: comparison of three techniques
This study compares the sensitivities and specificities of three techniques for the detection of circulating epithelial cells in the blood of patients with breast cancer. The number of circulating epithelial cells present in the blood of 40 patients with metastatic breast cancer and 20 healthy volun...
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| Vydáno v: | British journal of cancer Ročník 92; číslo 5; s. 906 - 912 |
|---|---|
| Hlavní autoři: | , , , , |
| Médium: | Journal Article |
| Jazyk: | angličtina |
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London
Nature Publishing Group UK
14.03.2005
Nature Publishing Group |
| Témata: | |
| ISSN: | 0007-0920, 1532-1827 |
| On-line přístup: | Získat plný text |
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| Abstract | This study compares the sensitivities and specificities of three techniques for the detection of circulating epithelial cells in the blood of patients with breast cancer. The number of circulating epithelial cells present in the blood of 40 patients with metastatic breast cancer and 20 healthy volunteers was determined by: immunomagnetic separation (IMS) and laser scanning cytometry (LSC), cell filtration and LSC and a multimarker real-time RT–PCR assay. Numbers of cytokeratin-positive cells identified and expression of three PCR markers were significantly higher in the blood of patients with breast cancer than in healthy volunteers. Using the upper 95% confidence interval of cells detected in controls to determine positive patient samples: 30% of patients with metastatic breast cancer were positive following cell filtration, 48% following IMS, and 60, 45 and 35% using real-time RT–PCR for cytokeratin 19, mammaglobin and prolactin-inducible peptide. Samples were significantly more likely to be positive for at least one PCR marker than by cell filtration (83
vs
30%,
P
<0.001) or IMS (83
vs
48%,
P
<0.001). The use of a multimarker real-time RT–PCR assay was therefore found to be the most sensitive technique for the detection of circulating epithelial cells in the blood of patients with breast cancer. |
|---|---|
| AbstractList | This study compares the sensitivities and specificities of three techniques for the detection of circulating epithelial cells in the blood of patients with breast cancer. The number of circulating epithelial cells present in the blood of 40 patients with metastatic breast cancer and 20 healthy volunteers was determined by: immunomagnetic separation (IMS) and laser scanning cytometry (LSC), cell filtration and LSC and a multimarker real-time RT–PCR assay. Numbers of cytokeratin-positive cells identified and expression of three PCR markers were significantly higher in the blood of patients with breast cancer than in healthy volunteers. Using the upper 95% confidence interval of cells detected in controls to determine positive patient samples: 30% of patients with metastatic breast cancer were positive following cell filtration, 48% following IMS, and 60, 45 and 35% using real-time RT–PCR for cytokeratin 19, mammaglobin and prolactin-inducible peptide. Samples were significantly more likely to be positive for at least one PCR marker than by cell filtration (83
vs
30%,
P
<0.001) or IMS (83
vs
48%,
P
<0.001). The use of a multimarker real-time RT–PCR assay was therefore found to be the most sensitive technique for the detection of circulating epithelial cells in the blood of patients with breast cancer. This study compares the sensitivities and specificities of three techniques for the detection of circulating epithelial cells in the blood of patients with breast cancer. The number of circulating epithelial cells present in the blood of 40 patients with metastatic breast cancer and 20 healthy volunteers was determined by: immunomagnetic separation (IMS) and laser scanning cytometry (LSC), cell filtration and LSC and a multimarker real-time RT-PCR assay. Numbers of cytokeratin-positive cells identified and expression of three PCR markers were significantly higher in the blood of patients with breast cancer than in healthy volunteers. Using the upper 95% confidence interval of cells detected in controls to determine positive patient samples: 30% of patients with metastatic breast cancer were positive following cell filtration, 48% following IMS, and 60, 45 and 35% using real-time RT-PCR for cytokeratin 19, mammaglobin and prolactin-inducible peptide. Samples were significantly more likely to be positive for at least one PCR marker than by cell filtration (83 vs 30%, P<0.001) or IMS (83 vs 48%, P<0.001). The use of a multimarker real-time RT-PCR assay was therefore found to be the most sensitive technique for the detection of circulating epithelial cells in the blood of patients with breast cancer. This study compares the sensitivities and specificities of three techniques for the detection of circulating epithelial cells in the blood of patients with breast cancer. The number of circulating epithelial cells present in the blood of 40 patients with metastatic breast cancer and 20 healthy volunteers was determined by: immunomagnetic separation (IMS) and laser scanning cytometry (LSC), cell filtration and LSC and a multimarker real-time RT-PCR assay. Numbers of cytokeratin-positive cells identified and expression of three PCR markers were significantly higher in the blood of patients with breast cancer than in healthy volunteers. Using the upper 95% confidence interval of cells detected in controls to determine positive patient samples: 30% of patients with metastatic breast cancer were positive following cell filtration, 48% following IMS, and 60, 45 and 35% using real-time RT-PCR for cytokeratin 19, mammaglobin and prolactin-inducible peptide. Samples were significantly more likely to be positive for at least one PCR marker than by cell filtration (83 vs 30%, P<0.001) or IMS (83 vs 48%, P<0.001). The use of a multimarker real-time RT-PCR assay was therefore found to be the most sensitive technique for the detection of circulating epithelial cells in the blood of patients with breast cancer.This study compares the sensitivities and specificities of three techniques for the detection of circulating epithelial cells in the blood of patients with breast cancer. The number of circulating epithelial cells present in the blood of 40 patients with metastatic breast cancer and 20 healthy volunteers was determined by: immunomagnetic separation (IMS) and laser scanning cytometry (LSC), cell filtration and LSC and a multimarker real-time RT-PCR assay. Numbers of cytokeratin-positive cells identified and expression of three PCR markers were significantly higher in the blood of patients with breast cancer than in healthy volunteers. Using the upper 95% confidence interval of cells detected in controls to determine positive patient samples: 30% of patients with metastatic breast cancer were positive following cell filtration, 48% following IMS, and 60, 45 and 35% using real-time RT-PCR for cytokeratin 19, mammaglobin and prolactin-inducible peptide. Samples were significantly more likely to be positive for at least one PCR marker than by cell filtration (83 vs 30%, P<0.001) or IMS (83 vs 48%, P<0.001). The use of a multimarker real-time RT-PCR assay was therefore found to be the most sensitive technique for the detection of circulating epithelial cells in the blood of patients with breast cancer. |
| Author | Ring, A E Zabaglo, L Smith, I E Dowsett, M Ormerod, M G |
| Author_xml | – sequence: 1 givenname: A E surname: Ring fullname: Ring, A E organization: Academic Department of Biochemistry, Royal Marsden Hospital, Fulham Road, Breast Unit, Royal Marsden Hospital, Fulham Road – sequence: 2 givenname: L surname: Zabaglo fullname: Zabaglo, L organization: Academic Department of Biochemistry, Royal Marsden Hospital, Fulham Road – sequence: 3 givenname: M G surname: Ormerod fullname: Ormerod, M G organization: Academic Department of Biochemistry, Royal Marsden Hospital, Fulham Road – sequence: 4 givenname: I E surname: Smith fullname: Smith, I E organization: Breast Unit, Royal Marsden Hospital, Fulham Road – sequence: 5 givenname: M surname: Dowsett fullname: Dowsett, M email: mitch@icr.ac.uk organization: Academic Department of Biochemistry, Royal Marsden Hospital, Fulham Road |
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| Keywords | breast cancer circulating tumour cells micrometastases Human Mammary gland diseases Blood cell Cancerology Epithelial cell Breast cancer Diagnosis Technique Malignant tumor Comparative study |
| Language | English |
| License | http://www.springer.com/tdm CC BY 4.0 This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made.The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material.If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit https://creativecommons.org/licenses/by/4.0/. |
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| References | J Bartek (BF6602418_CR3) 1986; 22 JW Clark (BF6602418_CR6) 1999; 81 SE Singletary (BF6602418_CR18) 2002; 20 J Aerts (BF6602418_CR1) 2001; 12 AC Lambrechts (BF6602418_CR8) 1999; 56 BF6602418_CR9 A Stathopoulou (BF6602418_CR21) 2003; 9 O Zach (BF6602418_CR27) 1999; 17 A Stathopoulou (BF6602418_CR22) 2002; 20 K Pachmann (BF6602418_CR12) 2001; 39 MJ Slade (BF6602418_CR19) 1999; 17 BM Smith (BF6602418_CR20) 2000; 18 A Schoenfeld (BF6602418_CR16) 1997; 33 AJ Bosma (BF6602418_CR4) 2002; 8 B Brandt (BF6602418_CR5) 1998; 76 PY Muller (BF6602418_CR11) 2002; 32 L Zabaglo (BF6602418_CR26) 2003; 55A P Ruud (BF6602418_CR15) 1999; 80 R Moll (BF6602418_CR10) 1994; 9 AL Silva (BF6602418_CR17) 2002; 13 MK Baker (BF6602418_CR2) 2003; 9 E Racila (BF6602418_CR13) 1998; 95 B Taback (BF6602418_CR23) 2001; 61 G Vona (BF6602418_CR24) 2000; 156 TE Witzig (BF6602418_CR25) 2002; 8 BF6602418_CR7 A Ring (BF6602418_CR14) 2004; 5 |
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| Snippet | This study compares the sensitivities and specificities of three techniques for the detection of circulating epithelial cells in the blood of patients with... |
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| SubjectTerms | Adult Aged Base Sequence Biological and medical sciences Biomedical and Life Sciences Biomedicine Breast Neoplasms - blood Breast Neoplasms - pathology Cancer Research DNA Primers Drug Resistance Epidemiology Epithelial Cells - pathology Female Humans Keratins - analysis Lymphatic Metastasis Medical sciences Middle Aged Molecular Diagnostics Molecular Medicine Neoplasm Metastasis Neoplasm Staging Oncology Reference Values Reverse Transcriptase Polymerase Chain Reaction Tumors |
| Title | Detection of circulating epithelial cells in the blood of patients with breast cancer: comparison of three techniques |
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