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Article

Radiation-Induced Overexpression of TGFβ and PODXL Contributes to Colorectal Cancer Cell Radioresistance through Enhanced Motility

1
Laboratory of Radiation Exposure & Therapeutics, National Radiation Emergency Medical Center, Korea Institute of Radiological & Medical Science (KIRAMS), Seoul 01812, Korea
2
Department of Pathology, Korea Cancer Center Hospital, Korea Institute of Radiological & Medical Science, Seoul 01812, Korea
*
Author to whom correspondence should be addressed.
Cells 2021, 10(8), 2087; https://doi.org/10.3390/cells10082087
Submission received: 16 June 2021 / Revised: 4 August 2021 / Accepted: 11 August 2021 / Published: 13 August 2021
(This article belongs to the Special Issue Cancer Cell Response to Radiation Therapy)

Abstract

The primary cause of colorectal cancer (CRC) recurrence is increased distant metastasis after radiotherapy, so there is a need for targeted therapeutic approaches to reduce the metastatic-relapse risk. Dysregulation of the cell-surface glycoprotein podocalyxin-like protein (PODXL) plays an important role in promoting cancer-cell motility and is associated with poor prognoses for many malignancy types. We found that CRC cells exposed to radiation demonstrated increased TGFβ and PODXL expressions, resulting in increased migration and invasiveness due to increased extracellular matrix deposition. In addition, both TGFβ and PODXL were highly expressed in tissue samples from radiotherapy-treated CRC patients compared to those from patients without this treatment. However, it is unclear whether TGFβ and PODXL interactions are involved in cancer-progression resistance after radiation exposure in CRC. Here, using CRC cells, we showed that silencing PODXL blocked radiation-induced cell migration and invasiveness. Cell treatment with galunisertib (a TGFβ-pathway inhibitor) also led to reduced viability and migration, suggesting that its clinical use may enhance the cytotoxic effects of radiation and lead to the effective inhibition of CRC progression. Overall, the results demonstrate that downregulation of TGFβ and its-mediated PODXL may provide potential therapeutic targets for patients with radiotherapy-resistant CRC.
Keywords: colorectal cancer; PODXL; radioresistance; TGFβ colorectal cancer; PODXL; radioresistance; TGFβ

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MDPI and ACS Style

Lee, H.; Kong, J.-S.; Lee, S.-S.; Kim, A. Radiation-Induced Overexpression of TGFβ and PODXL Contributes to Colorectal Cancer Cell Radioresistance through Enhanced Motility. Cells 2021, 10, 2087. https://doi.org/10.3390/cells10082087

AMA Style

Lee H, Kong J-S, Lee S-S, Kim A. Radiation-Induced Overexpression of TGFβ and PODXL Contributes to Colorectal Cancer Cell Radioresistance through Enhanced Motility. Cells. 2021; 10(8):2087. https://doi.org/10.3390/cells10082087

Chicago/Turabian Style

Lee, Hyunjung, Joon-Seog Kong, Seung-Sook Lee, and Areumnuri Kim. 2021. "Radiation-Induced Overexpression of TGFβ and PODXL Contributes to Colorectal Cancer Cell Radioresistance through Enhanced Motility" Cells 10, no. 8: 2087. https://doi.org/10.3390/cells10082087

APA Style

Lee, H., Kong, J.-S., Lee, S.-S., & Kim, A. (2021). Radiation-Induced Overexpression of TGFβ and PODXL Contributes to Colorectal Cancer Cell Radioresistance through Enhanced Motility. Cells, 10(8), 2087. https://doi.org/10.3390/cells10082087

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