Nicholson, T.; Macleod, M.; Belli, A.; Lord, J.M.; Hazeldine, J.
Major Traumatic Injury and Exposure to Mitochondrial-Derived Damage-Associated Molecular Patterns Promotes Neutrophil Survival Accompanied by Stabilisation of the Anti-Apoptotic Protein Mcl-1. Cells 2025, 14, 754.
https://doi.org/10.3390/cells14100754
AMA Style
Nicholson T, Macleod M, Belli A, Lord JM, Hazeldine J.
Major Traumatic Injury and Exposure to Mitochondrial-Derived Damage-Associated Molecular Patterns Promotes Neutrophil Survival Accompanied by Stabilisation of the Anti-Apoptotic Protein Mcl-1. Cells. 2025; 14(10):754.
https://doi.org/10.3390/cells14100754
Chicago/Turabian Style
Nicholson, Thomas, Michael Macleod, Antonio Belli, Janet M. Lord, and Jon Hazeldine.
2025. "Major Traumatic Injury and Exposure to Mitochondrial-Derived Damage-Associated Molecular Patterns Promotes Neutrophil Survival Accompanied by Stabilisation of the Anti-Apoptotic Protein Mcl-1" Cells 14, no. 10: 754.
https://doi.org/10.3390/cells14100754
APA Style
Nicholson, T., Macleod, M., Belli, A., Lord, J. M., & Hazeldine, J.
(2025). Major Traumatic Injury and Exposure to Mitochondrial-Derived Damage-Associated Molecular Patterns Promotes Neutrophil Survival Accompanied by Stabilisation of the Anti-Apoptotic Protein Mcl-1. Cells, 14(10), 754.
https://doi.org/10.3390/cells14100754