Hussain, R.; Ullah, H.; Rahim, F.; Sarfraz, M.; Taha, M.; Iqbal, R.; Rehman, W.; Khan, S.; Shah, S.A.A.; Hyder, S.;
et al. Multipotent Cholinesterase Inhibitors for the Treatment of Alzheimer’s Disease: Synthesis, Biological Analysis and Molecular Docking Study of Benzimidazole-Based Thiazole Derivatives. Molecules 2022, 27, 6087.
https://doi.org/10.3390/molecules27186087
AMA Style
Hussain R, Ullah H, Rahim F, Sarfraz M, Taha M, Iqbal R, Rehman W, Khan S, Shah SAA, Hyder S,
et al. Multipotent Cholinesterase Inhibitors for the Treatment of Alzheimer’s Disease: Synthesis, Biological Analysis and Molecular Docking Study of Benzimidazole-Based Thiazole Derivatives. Molecules. 2022; 27(18):6087.
https://doi.org/10.3390/molecules27186087
Chicago/Turabian Style
Hussain, Rafaqat, Hayat Ullah, Fazal Rahim, Maliha Sarfraz, Muhammad Taha, Rashid Iqbal, Wajid Rehman, Shoaib Khan, Syed Adnan Ali Shah, Sajjad Hyder,
and et al. 2022. "Multipotent Cholinesterase Inhibitors for the Treatment of Alzheimer’s Disease: Synthesis, Biological Analysis and Molecular Docking Study of Benzimidazole-Based Thiazole Derivatives" Molecules 27, no. 18: 6087.
https://doi.org/10.3390/molecules27186087
APA Style
Hussain, R., Ullah, H., Rahim, F., Sarfraz, M., Taha, M., Iqbal, R., Rehman, W., Khan, S., Shah, S. A. A., Hyder, S., Alhomrani, M., Alamri, A. S., Abdulaziz, O., & Abdelaziz, M. A.
(2022). Multipotent Cholinesterase Inhibitors for the Treatment of Alzheimer’s Disease: Synthesis, Biological Analysis and Molecular Docking Study of Benzimidazole-Based Thiazole Derivatives. Molecules, 27(18), 6087.
https://doi.org/10.3390/molecules27186087