Speckmann, B.; Jordan, P.M.; Werz, O.; Hofstetter, R.K.; Ehring, E.; Vogel, M.-L.; Venema, K.
Bacillus megaterium DSM 32963 Enhances Specialized Pro-Resolving Mediator Production from an n-3 PUFA Salt in a Dynamic Model of the Human Intestine. Metabolites 2025, 15, 105.
https://doi.org/10.3390/metabo15020105
AMA Style
Speckmann B, Jordan PM, Werz O, Hofstetter RK, Ehring E, Vogel M-L, Venema K.
Bacillus megaterium DSM 32963 Enhances Specialized Pro-Resolving Mediator Production from an n-3 PUFA Salt in a Dynamic Model of the Human Intestine. Metabolites. 2025; 15(2):105.
https://doi.org/10.3390/metabo15020105
Chicago/Turabian Style
Speckmann, Bodo, Paul M. Jordan, Oliver Werz, Robert K. Hofstetter, Ellen Ehring, Marie-Luise Vogel, and Koen Venema.
2025. "Bacillus megaterium DSM 32963 Enhances Specialized Pro-Resolving Mediator Production from an n-3 PUFA Salt in a Dynamic Model of the Human Intestine" Metabolites 15, no. 2: 105.
https://doi.org/10.3390/metabo15020105
APA Style
Speckmann, B., Jordan, P. M., Werz, O., Hofstetter, R. K., Ehring, E., Vogel, M.-L., & Venema, K.
(2025). Bacillus megaterium DSM 32963 Enhances Specialized Pro-Resolving Mediator Production from an n-3 PUFA Salt in a Dynamic Model of the Human Intestine. Metabolites, 15(2), 105.
https://doi.org/10.3390/metabo15020105