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Trends in Plant Science|January 11, 2020
Fatty Acid Amide Hydrolases: An Expanded Capacity for Chemical Communication?Mina Aziz, Kent D ChapmanCureus|December 1, 2025
Type II Gallbladder Perforation: A Management Conundrum or a Surgical Indecision?Marco Youssef, Mina Aziz, Ashraf RasheedPlant Physiology|December 6, 2022
Fatty acid amide hydrolase and 9-lipoxygenase modulate cotton seedling growth by ethanolamide oxylipin levelsOmar Arias-Gaguancela, Mina Aziz, Kent D ChapmanPlant Direct|July 18, 2022
Enhanced seedling growth by 3-n-pentadecylphenolethanolamide is mediated by fatty acid amide hydrolases in upland cotton (Gossypium hirsutum L.)Omar Arias-Gaguancela, Bikash Adhikari, Mina Aziz, et al.Annals of Translational Medicine|July 13, 2019
Advances in personalized treatment of metastatic spine diseasePouyan Ahangar, Mina Aziz, Derek H Rosenzweig, et al.Zeitschrift Fur Orthopadie Und Unfallchirurgie|August 12, 2024
Cement Leakage after Augmentation of Osteoporotic Vertebral BodiesMina Aziz, Inga Kniep, Benjamin Ondruschka, et al.Scientific Reports|May 10, 2023
Two legume fatty acid amide hydrolase isoforms with distinct preferences for microbial- and plant-derived acylamidesOmar Arias-Gaguancela, Emily Herrell, Mina Aziz, et al.The Biochemical Journal|July 11, 2019
Mechanisms of lipid droplet biogenesisKent D Chapman, Mina Aziz, John M Dyer, et al.Frontiers in Plant Science|February 22, 2020
Heterogeneous Distribution of Erucic Acid in Brassica napus SeedsShaoping Lu, Mina Aziz, Drew Sturtevant, et al.The Journal of Biological Chemistry|March 22, 2019
Structural analysis of a plant fatty acid amide hydrolase provides insights into the evolutionary diversity of bioactive acylethanolamidesMina Aziz, Xiaoqiang Wang, Ashutosh Tripathi, et al.Pageof 3