Filipek, B.; Macieja, A.; Binda, A.; Szelenberger, R.; Gorniak, L.; Miller, E.; Swiderek-Matysiak, M.; Stasiolek, M.; Majsterek, I.; Poplawski, T.
Oxidative DNA Damage and Repair Dynamics in Multiple Sclerosis: Insights from Comet Assay Kinetics, Base Excision Repair Gene Expression, and Genotype Analysis. Biomolecules 2025, 15, 756.
https://doi.org/10.3390/biom15060756
AMA Style
Filipek B, Macieja A, Binda A, Szelenberger R, Gorniak L, Miller E, Swiderek-Matysiak M, Stasiolek M, Majsterek I, Poplawski T.
Oxidative DNA Damage and Repair Dynamics in Multiple Sclerosis: Insights from Comet Assay Kinetics, Base Excision Repair Gene Expression, and Genotype Analysis. Biomolecules. 2025; 15(6):756.
https://doi.org/10.3390/biom15060756
Chicago/Turabian Style
Filipek, Beata, Anna Macieja, Aleksandra Binda, Rafal Szelenberger, Leslaw Gorniak, Elzbieta Miller, Mariola Swiderek-Matysiak, Mariusz Stasiolek, Ireneusz Majsterek, and Tomasz Poplawski.
2025. "Oxidative DNA Damage and Repair Dynamics in Multiple Sclerosis: Insights from Comet Assay Kinetics, Base Excision Repair Gene Expression, and Genotype Analysis" Biomolecules 15, no. 6: 756.
https://doi.org/10.3390/biom15060756
APA Style
Filipek, B., Macieja, A., Binda, A., Szelenberger, R., Gorniak, L., Miller, E., Swiderek-Matysiak, M., Stasiolek, M., Majsterek, I., & Poplawski, T.
(2025). Oxidative DNA Damage and Repair Dynamics in Multiple Sclerosis: Insights from Comet Assay Kinetics, Base Excision Repair Gene Expression, and Genotype Analysis. Biomolecules, 15(6), 756.
https://doi.org/10.3390/biom15060756