Threshold Effect for Teratogenic Risk of Radiation Depends on Dose-rate and P53-dependent Apoptosis
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Purpose: To obtain evidence that the p53 gene is indispensable for reduction of high teratogenic risk of radiation at a high dose-rate to zero risk by lowering the dose-rate.
Materials And Methods: Wild-type p53(+/+), heterozygous p53(+/-) and null p53(-/-) mice were exposed to gamma-rays at high or low dose-rates during days 9.5-10.5 of gestation. The incidence of malformations and prenatal deaths was studied. Frequencies of cells dying by apoptosis were measured during or after protracted irradiation.
Results: After irradiation with 2 Gy, the frequency of apoptotic cells increased to 20% for p53(+/+) mice and did not increase at all for p53(-/-) mice. For p53(+/+) mice, 2 Gy y-rays induced 70% malformations when given at 1.06 Gy/min, but no malformations above the control when given at 1.2 mGy/min. In contrast, after irradiation of p53(-/-) foetuses with 2 Gy at 1.2mGy/min, the incidence of malformations increased 12% above control levels.
Conclusion: Foetal irradiation with 2 Gy at 1.2 mGy/min was not teratogenic for p53(+/+) mice but teratogenic for p53(-/-) mice. This indicates that the p53 gene is indispensable for a threshold effect in the risk of radiation at low doses or dose-rates.
Masunaga S, Tano K, Sanada Y, Suzuki M, Takahashi A, Ohnishi K World J Oncol. 2019; 10(3):132-141.
PMID: 31312280 PMC: 6615912. DOI: 10.14740/wjon1203.
Masunaga S, Kobayashi J, Tano K, Sanada Y, Suzuki M, Ono K J Clin Med Res. 2018; 10(11):815-821.
PMID: 30344816 PMC: 6188028. DOI: 10.14740/jocmr3610w.
Masunaga S, Uzawa A, Hirayama R, Matsumoto Y, Sakurai Y, Tanaka H World J Oncol. 2017; 6(4):398-409.
PMID: 28983338 PMC: 5624688. DOI: 10.14740/wjon941w.
Kast K, Krause M, Schuler M, Friedrich K, Thamm B, Bier A BMC Cancer. 2012; 12:217.
PMID: 22672556 PMC: 3487792. DOI: 10.1186/1471-2407-12-217.
Sharma S, Haldar C, Chaube S, Laxmi T, Singh S Br J Radiol. 2010; 83(986):137-51.
PMID: 20139262 PMC: 3473523. DOI: 10.1259/bjr/73791461.