Bernard, J.N.; Chinnaiyan, V.; Almeda, J.; Catala-Valentin, A.; Andl, C.D.
Lactobacillus sp. Facilitate the Repair of DNA Damage Caused by Bile-Induced Reactive Oxygen Species in Experimental Models of Gastroesophageal Reflux Disease. Antioxidants 2023, 12, 1314.
https://doi.org/10.3390/antiox12071314
AMA Style
Bernard JN, Chinnaiyan V, Almeda J, Catala-Valentin A, Andl CD.
Lactobacillus sp. Facilitate the Repair of DNA Damage Caused by Bile-Induced Reactive Oxygen Species in Experimental Models of Gastroesophageal Reflux Disease. Antioxidants. 2023; 12(7):1314.
https://doi.org/10.3390/antiox12071314
Chicago/Turabian Style
Bernard, Joshua N., Vikram Chinnaiyan, Jasmine Almeda, Alma Catala-Valentin, and Claudia D. Andl.
2023. "Lactobacillus sp. Facilitate the Repair of DNA Damage Caused by Bile-Induced Reactive Oxygen Species in Experimental Models of Gastroesophageal Reflux Disease" Antioxidants 12, no. 7: 1314.
https://doi.org/10.3390/antiox12071314
APA Style
Bernard, J. N., Chinnaiyan, V., Almeda, J., Catala-Valentin, A., & Andl, C. D.
(2023). Lactobacillus sp. Facilitate the Repair of DNA Damage Caused by Bile-Induced Reactive Oxygen Species in Experimental Models of Gastroesophageal Reflux Disease. Antioxidants, 12(7), 1314.
https://doi.org/10.3390/antiox12071314