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Inhibition of Crandell-Rees Feline Kidney cell proliferation by X-ray-induced senescence

Radioresistance and radiotoxicity have been reported following cancer treatments in felines. Optimizing radiation doses to induce cytotoxic effects to only cancer cells and not normal cells is critical in achieving effective radiation therapy; however, the mechanisms of radiation resistance, radioto...

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Autores principales: KOIKE, Manabu, YUTOKU, Yasutomo, KOIKE, Aki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Japanese Society of Veterinary Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8182323/
https://www.ncbi.nlm.nih.gov/pubmed/33731502
http://dx.doi.org/10.1292/jvms.20-0679
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author KOIKE, Manabu
YUTOKU, Yasutomo
KOIKE, Aki
author_facet KOIKE, Manabu
YUTOKU, Yasutomo
KOIKE, Aki
author_sort KOIKE, Manabu
collection PubMed
description Radioresistance and radiotoxicity have been reported following cancer treatments in felines. Optimizing radiation doses to induce cytotoxic effects to only cancer cells and not normal cells is critical in achieving effective radiation therapy; however, the mechanisms of radiation resistance, radiotoxicity, and DNA damage response (DDR) in feline cells have not yet been elucidated. A DNA double-strand break (DSB) is the most toxic type of DNA damage induced by X-rays and heavy ion beams used in treating cancers. Crandell-Rees Feline Kidney (CRFK) cells is one of the most widely used cat cells in life science research. Here, we report that DSB-triggered senescence induced by X-rays is important in inhibiting the proliferation of CRFK cells. We demonstrated through cell proliferation assay that X-rays at doses 2 Gy and 10 Gy are toxic to CRFK cells that irradiating CRFK cells inhibits their proliferation. In X-irradiated CRFK cells, a dose-dependent increase in DSB-triggered senescence was detected according to morphological changes and using senescence-associated β galactosidase staining assay. Moreover, our data indicated that in CRFK cells, the major DDR pathway, which involves the phosphorylation of H2AX at Ser139, was normally activated by ATM kinases. Our findings are useful in the understanding of X-rays-induced cellular senescence and in elucidating biological effects of radiation, e.g., toxicity, in feline cells. Furthermore, our findings suggest that the CRFK cell line is an excellent matrix for elucidating radioresistance and radiotoxicity in cat cells.
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spelling pubmed-81823232021-06-09 Inhibition of Crandell-Rees Feline Kidney cell proliferation by X-ray-induced senescence KOIKE, Manabu YUTOKU, Yasutomo KOIKE, Aki J Vet Med Sci Toxicology Radioresistance and radiotoxicity have been reported following cancer treatments in felines. Optimizing radiation doses to induce cytotoxic effects to only cancer cells and not normal cells is critical in achieving effective radiation therapy; however, the mechanisms of radiation resistance, radiotoxicity, and DNA damage response (DDR) in feline cells have not yet been elucidated. A DNA double-strand break (DSB) is the most toxic type of DNA damage induced by X-rays and heavy ion beams used in treating cancers. Crandell-Rees Feline Kidney (CRFK) cells is one of the most widely used cat cells in life science research. Here, we report that DSB-triggered senescence induced by X-rays is important in inhibiting the proliferation of CRFK cells. We demonstrated through cell proliferation assay that X-rays at doses 2 Gy and 10 Gy are toxic to CRFK cells that irradiating CRFK cells inhibits their proliferation. In X-irradiated CRFK cells, a dose-dependent increase in DSB-triggered senescence was detected according to morphological changes and using senescence-associated β galactosidase staining assay. Moreover, our data indicated that in CRFK cells, the major DDR pathway, which involves the phosphorylation of H2AX at Ser139, was normally activated by ATM kinases. Our findings are useful in the understanding of X-rays-induced cellular senescence and in elucidating biological effects of radiation, e.g., toxicity, in feline cells. Furthermore, our findings suggest that the CRFK cell line is an excellent matrix for elucidating radioresistance and radiotoxicity in cat cells. The Japanese Society of Veterinary Science 2021-03-17 2021-05 /pmc/articles/PMC8182323/ /pubmed/33731502 http://dx.doi.org/10.1292/jvms.20-0679 Text en ©2021 The Japanese Society of Veterinary Science https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open-access article distributed under the terms of the Creative Commons Attribution Non-Commercial No Derivatives (by-nc-nd) License. (CC-BY-NC-ND 4.0: https://creativecommons.org/licenses/by-nc-nd/4.0/)
spellingShingle Toxicology
KOIKE, Manabu
YUTOKU, Yasutomo
KOIKE, Aki
Inhibition of Crandell-Rees Feline Kidney cell proliferation by X-ray-induced senescence
title Inhibition of Crandell-Rees Feline Kidney cell proliferation by X-ray-induced senescence
title_full Inhibition of Crandell-Rees Feline Kidney cell proliferation by X-ray-induced senescence
title_fullStr Inhibition of Crandell-Rees Feline Kidney cell proliferation by X-ray-induced senescence
title_full_unstemmed Inhibition of Crandell-Rees Feline Kidney cell proliferation by X-ray-induced senescence
title_short Inhibition of Crandell-Rees Feline Kidney cell proliferation by X-ray-induced senescence
title_sort inhibition of crandell-rees feline kidney cell proliferation by x-ray-induced senescence
topic Toxicology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8182323/
https://www.ncbi.nlm.nih.gov/pubmed/33731502
http://dx.doi.org/10.1292/jvms.20-0679
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