Thymoquinone Radiosensitizes Human Colorectal Cancer Cells in 2D and 3D Culture Models

Abstract

Resistance of cancer cells and normal tissue toxicity of ionizing radiation (IR) are known to limit the success of radiotherapy. There is growing interest in using IR with natural compounds to sensitize cancer cells and spare healthy tissues. Thymoquinone (TQ) was shown to radiosensitize several cancers, yet no studies have investigated its radiosensitizing effects on colorectal cancer (CRC). Here, we combined TQ with IR and determined its effects in two-dimensional (2D) and threedimensional (3D) culture models derived from HCT116 and HT29 CRC cells, and in patient-derived organoids (PDOs). TQ sensitized CRC cells to IR and reduced cell viability and clonogenic survival and was non-toxic to non-tumorigenic intestinal cells. TQ sensitizing effects were associated with G2/M arrest and DNA damage as well as changes in key signaling molecules involved in this process. Combining a low dose of TQ (3 µM) with IR (2 Gy) inhibited sphere formation by 100% at generation 5 and this was associated with inhibition of stemness and DNA repair. These doses also led to ~1.4-to ~3.4-fold decrease in organoid forming ability of PDOs. Our findings show that combining TQ and IR could be a promising therapeutic strategy for eradicating CRC cells. © 2022 by the authors. Licensee MDPI, Basel, Switzerland.

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Keywords

Cancer stem cells, Colon spheres, Colorectal cancer, Dna repair, Patient-derived organoids, Radiosensitization, Beta catenin, Immunoglobulin enhancer binding protein, Mammalian target of rapamycin, Protein p21, Protein p53, Thymoquinone, Wnt protein, Antineoplastic activity, Article, Cancer tissue, Canonical wnt signaling, Cell cycle arrest, Cell survival, Cell viability, Clonogenesis, Colorectal cancer cell line, Controlled study, Dna damage, G2 phase cell cycle checkpoint, Hct 116 cell line, Ht-29 cell line, Human, Human cell, Human tissue, Ionizing radiation, Mapk signaling, Mtor signaling, Nf kb signaling, Stem cell, Three dimensional cell culture, Two dimensional cell culture

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