Pintye, D.; Sziva, R.E.; Mastyugin, M.; Young, B.C.; Jacas, S.; Török, M.; Salahuddin, S.; Jagtap, P.; Southan, G.J.; Zsengellér, Z.K.
A Novel Dual-Function Redox Modulator Relieves Oxidative Stress and Anti-Angiogenic Response in Placental Villus Explant Exposed to Hypoxia—Relevance for Preeclampsia Therapy. Biology 2023, 12, 1229.
https://doi.org/10.3390/biology12091229
AMA Style
Pintye D, Sziva RE, Mastyugin M, Young BC, Jacas S, Török M, Salahuddin S, Jagtap P, Southan GJ, Zsengellér ZK.
A Novel Dual-Function Redox Modulator Relieves Oxidative Stress and Anti-Angiogenic Response in Placental Villus Explant Exposed to Hypoxia—Relevance for Preeclampsia Therapy. Biology. 2023; 12(9):1229.
https://doi.org/10.3390/biology12091229
Chicago/Turabian Style
Pintye, Diana, Réka E. Sziva, Maxim Mastyugin, Brett C. Young, Sonako Jacas, Marianna Török, Saira Salahuddin, Prakash Jagtap, Garry J. Southan, and Zsuzsanna K. Zsengellér.
2023. "A Novel Dual-Function Redox Modulator Relieves Oxidative Stress and Anti-Angiogenic Response in Placental Villus Explant Exposed to Hypoxia—Relevance for Preeclampsia Therapy" Biology 12, no. 9: 1229.
https://doi.org/10.3390/biology12091229
APA Style
Pintye, D., Sziva, R. E., Mastyugin, M., Young, B. C., Jacas, S., Török, M., Salahuddin, S., Jagtap, P., Southan, G. J., & Zsengellér, Z. K.
(2023). A Novel Dual-Function Redox Modulator Relieves Oxidative Stress and Anti-Angiogenic Response in Placental Villus Explant Exposed to Hypoxia—Relevance for Preeclampsia Therapy. Biology, 12(9), 1229.
https://doi.org/10.3390/biology12091229