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experimental_animal_in_vitroMetadata matched
The ZIP9-centered androgen pathway compensates for the 2605 MHz radiofrequency electromagnetic radiation-mediated reduction in resistance to H2O2 damage in Sertoli cells of adult rats
Yu G, Zhu Y, Song C, et al. (2023). The ZIP9-centered androgen pathway compensates for the 2605 MHz radiofrequency electromagnetic radiation-mediated reduction in resistance to H2O2 damage in Sertoli cells of adult rats. Ecotoxicology and Environmental Safety.
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- ID
- yu2023_zip9_rf_sertoli
- PMID
- 36889209
- Source-link status
- Metadata matched