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Radiosensitivity of Cancer Stem Cells in Lung Cancer Cell Lines
Published on: August 21, 2019
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.
Abstract:
Head and neck cancers (HNC), like most solid tumours, contain a subpopulation of cancer stem cells (CSC) that are commonly responsible for treatment failure. Conventional therapies are unsuccessful in controlling CSCs, thus novel, targeting therapies are needed. A promising agent is ATRA (All-trans-retinoic acid) that was shown to induce CSC differentiation, cell cycle redistribution and CSCs radiosensitisation. To add to the limited data, this work simulated the effects of ATRA on a virtual HNC and evaluated tumour response to radiotherapy. A Monte Carlo technique was employed to grow a HNC consisting of all lineages of cancer cells. The biologically realistic input parameters led to a pre-treatment CSC population of 5.9%. The Linear Quadratic model was employed to simulate radiotherapy. ATRA-induced differentiation, cell arrest and apoptosis were modelled, based on literature data. While the effect of differentiation was marginal, the strongest influence on CSC subpopulation was displayed by ATRA's cell arrest effect via an exponential behaviour of the dose-response curve. The apoptotic effect induced by ATRA shows linear correlation between the percentage of apoptotic cells and dose required to eradicate CSCs. In conclusion, ATRA is a potent CSC-targeting agent with viable impact on tumour control when combined with radiotherapy.
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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