Detection of Circulating Tumor Cells in Breast Cancer Patients Using Cytokeratin-19 Real-Time RT-PCR
نویسندگان
چکیده
PURPOSE The roles of circulating tumor cells (CTCs) as predictive and prognostic factors, as well as key mediators in the metastatic cascade, have been investigated. This study aimed to validate a method to quantify CTCs in peripheral blood using a real-time reverse transcriptase polymerase chain reaction (RT-PCR) assay for cytokeratin (CK)-19 and to evaluate the utility of this assay in detecting CTCs in breast cancer patients. MATERIALS AND METHODS Real-time monitoring PCR of fluorescently labeled specific hybridization probes for CK-19 mRNA was established. Peripheral blood samples from 30 healthy donors, 69 patients with early breast cancer, 47 patients with locally advanced breast cancer, and 126 patients with metastatic breast cancer were prospectively obtained and analyzed for CTC detection. RESULTS CK-19 mRNA was not detectable in healthy subjects using the real-time RT-PCR method. The detection rates of CK-19 mRNA in breast cancer patients were 47.8% for early breast cancer (33/69), 46.8% for locally advanced breast cancer (22/47), and 61.1% for metastatic breast cancer (77/129). The detection rate of CK-19-positive CTCs in metastatic disease was slightly higher than early or locally advanced breast cancer; however, the detection rate according to disease burden was not statistically different (p=0.097). The detection rate was higher in patients with pleural metastasis (p=0.045). CTC detection was associated with poor survival (p=0.014). CONCLUSION A highly specific and sensitive CK-19 mRNA-based method to detect CTCs in peripheral blood in breast cancer patients can be used in further prospective studies to evaluate the predictive and prognostic importance of CTCs.
منابع مشابه
Erratum to “Detection of Circulating Tumor Cells in Breast Cancer Patients Using Cytokeratin-19 Real-Time RT-PCR” by Park HS, et al. (Yonsei Med J 2017;58:19-26.)
This corrects the article on p. 19 in vol. 58, PMID: 27873491.
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Background and Aim: Tumor dissemination via blood to distant organs is the main cause of death. Therefore, there is a critical need to set up sensitive methods for the early detection of circulating tumor cells(CTCs) and disseminated tumor cells(DTCs) in peripheral blood (PB) and bone marrow(BM) specimens of breast cancer patients. The aim of this research is to study the detection of micrometa...
متن کاملThe detection of circulating breast cancer cells in peripheral blood by reverse transcriptase-polymerase chain reaction.
Some circulating cancer cells in the blood play a central role in the metastatic process and may have a major influence on patient progress. Their numbers can be very small and techniques for their detection need to be both sensitive and specific. Polymerase chain reaction (PCR) has been successfully used to detect small numbers of tumor cells in cancer. We used a reverse transcriptase-polymera...
متن کاملAD Award Number: DAMD17-99-1-9439 TITLE: Molecular Quantitation of Breast Cancer Cells in the Peripheral Blood: Correlation with Clinical Stage at Presentation and Disease Course PRINCIPAL INVESTIGATOR:
Type: (check one)X Research, Clinical □ Research, Basic Science□ Clinical Case Study Abstract Title:(bold, initial capitals)Title:(bold, initial capitals) Authors:(underline presenter) Abstract TextThe Detection of Circulating Breast Cancer Cells Using QuantitativeCytokeratin-19mRNA Real-Time PCRTextThe Detection of Circulating Breast Cancer Cells Using Quantitat...
متن کاملReal-time quantitative RT-PCR detection of circulating tumor cells from breast cancer patients.
Circulating tumor cells (CTCs) were recognized as novel tumor biomarker for prognostic and predictive purposes in various cancers. Various detection technologies and devices have been developed to enumerate and characterize CTCs. Most of those approaches are based on the positive enrichment strategy and immunocytological techniques. However, the sensitivity of these approaches proved to be limi...
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عنوان ژورنال:
دوره 58 شماره
صفحات -
تاریخ انتشار 2017