Automated tracking of unmarked cells migrating in three-dimensional matrices applied to anti-cancer drug screening

Ivan Adanja1, Olivier Debeir, Véronique Mégalizzi

  • 1Laboratory of Image Synthesis and Analysis (LISA), Faculty of Applied Science, Université Libre de Bruxelles (U.L.B.), Brussels, Belgium.

Insights

We developed a new method to automatically track cancer cells in 3D gels, aiding drug discovery. This technique efficiently quantifies anti-migratory drug effects for cancer treatment research.

Area of Science:

  • Oncology
  • Cell Biology
  • Biotechnology

Background:

  • Combating tumor cell spread is a critical unmet need in oncology.
  • Current in vitro methods for identifying anti-migratory compounds are often low-throughput.
  • Efficient and realistic 3D in vitro assays are needed for anti-cancer drug screening.

Purpose of the Study:

  • To develop an automated cell tracking method for high-throughput screening of anti-migratory compounds.
  • To quantify the anti-migratory effects of anti-cancer drugs in 3D environments.
  • To enable efficient drug screening in 3D transparent gels using time-lapse microscopy.

Main Methods:

  • A novel cell tracking method combining template matching preprocessing and mean-shift algorithms.
  • Preprocessing generates artifact-free 3D volumes for improved cell detection.
  • Time-lapse 3D phase-contrast microscopy of unlabeled cells migrating in transparent gels.

Main Results:

  • The proposed method robustly and efficiently tracks cells in 3D transparent gels.
  • Successfully applied to quantify the anti-migratory impact of cytochalasin-D on cancer cells.
  • Demonstrated effectiveness in various experimental conditions.

Conclusions:

  • The developed method facilitates efficient drug screening for anti-migratory effects in 3D.
  • This approach supports the identification of novel anti-cancer drugs targeting cell migration.
  • Enables quantitative characterization of drug-induced effects in 3D cell migration models.

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