Alanazi, F.; Sharif, A.; Kidd, M.; Keevill, E.-J.; Biolatti, V.; Unwin, R.D.; Hoskin, P.; Choudhury, A.; Smith, T.A.D.; Quiles, C.G.
Cell Surface Proteomics Reveals Hypoxia-Regulated Pathways in Cervical and Bladder Cancer. Proteomes 2025, 13, 36.
https://doi.org/10.3390/proteomes13030036
AMA Style
Alanazi F, Sharif A, Kidd M, Keevill E-J, Biolatti V, Unwin RD, Hoskin P, Choudhury A, Smith TAD, Quiles CG.
Cell Surface Proteomics Reveals Hypoxia-Regulated Pathways in Cervical and Bladder Cancer. Proteomes. 2025; 13(3):36.
https://doi.org/10.3390/proteomes13030036
Chicago/Turabian Style
Alanazi, Faris, Ammar Sharif, Melissa Kidd, Emma-Jayne Keevill, Vanesa Biolatti, Richard D. Unwin, Peter Hoskin, Ananya Choudhury, Tim A. D. Smith, and Conrado G. Quiles.
2025. "Cell Surface Proteomics Reveals Hypoxia-Regulated Pathways in Cervical and Bladder Cancer" Proteomes 13, no. 3: 36.
https://doi.org/10.3390/proteomes13030036
APA Style
Alanazi, F., Sharif, A., Kidd, M., Keevill, E.-J., Biolatti, V., Unwin, R. D., Hoskin, P., Choudhury, A., Smith, T. A. D., & Quiles, C. G.
(2025). Cell Surface Proteomics Reveals Hypoxia-Regulated Pathways in Cervical and Bladder Cancer. Proteomes, 13(3), 36.
https://doi.org/10.3390/proteomes13030036