Kranzler, M.; Frenzel, E.; Walser, V.; Hofmann, T.F.; Stark, T.D.; Ehling-Schulz, M.
Impact of Phytochemicals on Viability and Cereulide Toxin Synthesis in Bacillus cereus Revealed by a Novel High-Throughput Method, Coupling an AlamarBlue-Based Assay with UPLC-MS/MS. Toxins 2021, 13, 672.
https://doi.org/10.3390/toxins13090672
AMA Style
Kranzler M, Frenzel E, Walser V, Hofmann TF, Stark TD, Ehling-Schulz M.
Impact of Phytochemicals on Viability and Cereulide Toxin Synthesis in Bacillus cereus Revealed by a Novel High-Throughput Method, Coupling an AlamarBlue-Based Assay with UPLC-MS/MS. Toxins. 2021; 13(9):672.
https://doi.org/10.3390/toxins13090672
Chicago/Turabian Style
Kranzler, Markus, Elrike Frenzel, Veronika Walser, Thomas F. Hofmann, Timo D. Stark, and Monika Ehling-Schulz.
2021. "Impact of Phytochemicals on Viability and Cereulide Toxin Synthesis in Bacillus cereus Revealed by a Novel High-Throughput Method, Coupling an AlamarBlue-Based Assay with UPLC-MS/MS" Toxins 13, no. 9: 672.
https://doi.org/10.3390/toxins13090672
APA Style
Kranzler, M., Frenzel, E., Walser, V., Hofmann, T. F., Stark, T. D., & Ehling-Schulz, M.
(2021). Impact of Phytochemicals on Viability and Cereulide Toxin Synthesis in Bacillus cereus Revealed by a Novel High-Throughput Method, Coupling an AlamarBlue-Based Assay with UPLC-MS/MS. Toxins, 13(9), 672.
https://doi.org/10.3390/toxins13090672