4.6 Article

3D matrix-based cell cultures: Automated analysis of tumor cell survival and proliferation

Journal

INTERNATIONAL JOURNAL OF ONCOLOGY
Volume 48, Issue 1, Pages 313-321

Publisher

SPANDIDOS PUBL LTD
DOI: 10.3892/ijo.2015.3230

Keywords

molecular therapeutics; 3D cell culture; extracellular matrix; clonogenicity; proliferation; therapy testing

Categories

Funding

  1. Bundesministerium fur Bildung und Forschung (BMBF) [03ZIK041, BMBF-02NUK006B]
  2. Deutsche Forschungsgemeinschaft [CO668/4-1]
  3. Deutsche Krebshilfe [108976]
  4. EFRE Europaische Fonds fur regionale Entwicklung, Europa fordert Sachsen [100066308]
  5. NIH Intramural Research Program, National Cancer Institute, Center for Cancer Research

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Three-dimensional ex vivo cell cultures mimic physiological in vivo growth conditions thereby significantly contributing to our understanding of tumor cell growth and survival, therapy resistance and identification of novel potent cancer targets. In the present study, we describe advanced three-dimensional cell culture methodology for investigating cellular survival and proliferation in human carcinoma cells after cancer therapy including molecular therapeutics. Single cells are embedded into laminin-rich extracellular matrix and can be treated with cytotoxic drugs, ionizing or UV radiation or any other substance of interest when consolidated and approximating in vivo morphology. Subsequently, cells are allowed to grow for automated determination of clonogenic survival (colony number) or proliferation (colony size). The entire protocol of 3D cell plating takes similar to 1 h working time and pursues for similar to 7 days before evaluation. This newly developed method broadens the spectrum of exploration of malignant tumors and other diseases and enables the obtainment of more reliable data on cancer treatment efficacy.

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