Abstract

Different chemical and nanomaterial agents have been introduced for radiosensitizing purposes. However, many researchers believe these agents are far away from clinical application due to side effects and limited knowledge about their behavior in the human body. In this study, C-phycocyanin (C-PC) was used as a natural radiosensitizer for enhancement of radiation therapy (RT) efficacy. C-PC treatment’s effect on the COX-2 expression of cancer cells was investigated by flow cytometry, western blot, qRT-PCR analyses in vitro and in vivo. Subsequently, the radiosensitizing effect of C-PC treatment was investigated by MTT and clonogenic cell survival assays for CT-26, DLD-1, HT-29 colon cancer cell lines and the CRL-1831 as normal colonic cells. In addition, the C-PC treatment effect on the radiation therapy efficacy was evaluated according to CT-26 tumor’s growth progression and immunohistochemistry analyses of Ki-67 labeling index. C-PC treatment (200 µg/mL) could significantly enhance the radiation therapy efficacy in vitro and in vivo. Synergistic interaction was detected at C-PC and radiation beams co-treatment based on Chou and Talalay formula (combination index <1), especially at 200 µg/mL C-PC and 6 Gy radiation dosages. The acquired DEF of C-PC treatment was 1.39, 1.4, 1.63, and 1.05 for CT-26, DLD-1, HT-29, and CRL-1831 cells, respectively. Also, C-PC + RT treated mice exhibited 35.2% lower mean tumors’ volume and about 6 days more survival time in comparison with the RT group (P < 0.05). In addition, C-PC + RT group exhibited 54% lower Ki-67 index in comparison with the RT group. Therefore, C-PC can exhibit high radiosensitizing effects. However, the potential cardiovascular risks of C-PC as a COX-2 inhibitor should be evaluated with extensive preclinical testing before developing this agent for clinical trials.

Highlights

  • Different chemical and nanomaterial agents have been introduced for radiosensitizing purposes

  • CT-26, DLD-1, HT-29 and CRL-1831 as the normal colonic cell line were used

  • The cell viability of the wells which were mono-treated with 2, 4, and 6 Gy radiation was illustrated in the 2nd, 3rd, and 4th column from the left side of the MTT assay charts to exhibit the effect of radiation therapy mono-treatment on the cancer cells viability (*P < 0.05, ns: not significant). (B) To investigate, the synergistic effect of radiation therapy and C-PC co-treatment

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Summary

Introduction

Different chemical and nanomaterial agents have been introduced for radiosensitizing purposes. C-phycocyanin (C-PC) was used as a natural radiosensitizer for enhancement of radiation therapy (RT) efficacy. Radioresistance means adaption of tumor cells to the radiation therapy-induced changes and developing of resistance to the radiation beams by utilizing multiple genes, factors, and mechanisms[8,9]. It is one of the main causes of radiation therapy failure in cancer www.nature.com/scientificreports patients which can cause poor prognosis[10]. Inhibition of COX-2 caused significant enhancement at the radiation therapy efficacy and decreased the cancer cells’ radioresistance[35,36]

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