In silico modelling of a cancer stem cell-targeting agent and its effects on tumour control during radiotherapy

Loredana G Marcu1,2, David Marcu1

  • 1Faculty of Science, University of Oradea, Oradea 410087, Romania.

Scientific Reports
|August 31, 2016
PubMed

Insights

All-trans-retinoic acid (ATRA) effectively targets cancer stem cells (CSCs) in head and neck cancers. Combining ATRA with radiotherapy shows promise for improving tumor control by reducing CSCs.

Area of Science:

  • Oncology
  • Cancer Research
  • Radiotherapy

Background:

  • Head and neck cancers (HNC) harbor cancer stem cells (CSCs) responsible for treatment failure.
  • Conventional therapies are insufficient for eradicating CSCs, necessitating novel therapeutic strategies.

Purpose of the Study:

  • To simulate the effects of All-trans-retinoic acid (ATRA) on a virtual HNC model.
  • To evaluate the combined impact of ATRA and radiotherapy on HNC tumor response and CSC subpopulations.

Main Methods:

  • A Monte Carlo technique was used to simulate HNC growth with diverse cancer cell lineages.
  • The Linear Quadratic model simulated radiotherapy effects.
  • ATRA's impact on CSC differentiation, cell cycle arrest, and apoptosis was modeled based on literature data.

Main Results:

  • The virtual HNC model initiated with a 5.9% CSC population.
  • ATRA's cell arrest effect significantly influenced the CSC subpopulation via an exponential dose-response.
  • ATRA-induced apoptosis showed a linear correlation with the dose required for CSC eradication.

Conclusions:

  • All-trans-retinoic acid (ATRA) demonstrates potent efficacy as a CSC-targeting agent in HNC.
  • Combining ATRA with radiotherapy offers a viable strategy for enhancing tumor control by targeting CSCs.

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