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Model system for isolation of competent ovarian carcinoma cells from fresh tumor tissue by a magnetic separation technique (MACS)

  • N. Harbeck
  • , S. Schwarze
  • , E. Schuren
  • , N. Yamamoto
  • , N. Moniwa
  • , M. Schmitt
  • , P. Dettmar
  • , W. Nathrath
  • , F. Janicke
  • , H. Hofler
  • , H. Graeff

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

Flow cytometric analysis of tumor cells in carcinomas is hampered by the presence of a variety of different cells in the tumor tissue and the surrounding stroma. To obtain single competent tumor cells, we have established a model system which can be applied to separate living cells from fresh ovarian carcinoma tissue. Due to the lack of tumor-cell surface specific antibodies, we isolated tumor cells by a procedure called 'negative tumor cell selection'. For this purpose, fresh ovarian carcinoma tissue, immediately after surgery, was subjected to mechanical disintegration using an automated mincing device to obtain a single-cell suspension (approximately 107 cells/g). Collagenase D (0.005%) was added to prevent further aggregation. Cells other than tumor cells were then labeled with a set of monoclonal antibodies directed to cell surface antigens: CD3 (T-cells), CD14 (monocytes), CD15 (granulocytes), CD45R (T-/B-cells) and 5B5 (fibroblasts). Anti-isotype antibodies coupled to ferrit microbeads were then reacted with the cell suspension and those cells reacting with the microbeads retained on a steel wool matrix in a magnetic field (1). Tumor cells not reacting with the microbeads were recovered by a simple wash of the steel wool matrix. All incubation steps were at 4°C. This procedure, which takes about 2 hours, enables fast and simple isolation of single, living competent tumor cells from fresh tumor tissue and also from ascitic;or pleuritic effusions. In a model system with cultured ovarian carcinoma cells,and human leukocytes, tumor cell purity was about 93% and about 97% when re-subjected to the same procedure (respective recovery rates 75% and 50%). The still unlabeled tumor cells can subsequently be analyzed by flow cytometry or by central laser scanning microscopy for the presence of various surface antigens including receptors for proteases or growth factors. Moreover, after detergent treatment and fixation, flow cytometric multiparameter analysis such as simultaneous labeling of intracellular and surface antigens as well as nuclear DNA staining for ploidy and S-phase determination becomes possible.

Original languageEnglish
Pages (from-to)1249-1254
Number of pages6
JournalInternational Journal of Oncology
Volume6
Issue number6
DOIs
StatePublished - 1995

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 3 - Good Health and Well-being
    SDG 3 Good Health and Well-being

Keywords

  • Flow cytometry
  • Fresh tumor tissue
  • Magnetic cell separation
  • Multiparameter analysis
  • Single tumor cells

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