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In Vitro and in Silico Studies of 3-Hydroxyflavone-Based Sulfonate Esters: Potent Acetylcholinesterase, Carbonic Anhydrase and α-Glycosidase Inhibitors
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M. Guney Et Al. , "In Vitro and in Silico Studies of 3-Hydroxyflavone-Based Sulfonate Esters: Potent Acetylcholinesterase, Carbonic Anhydrase and α-Glycosidase Inhibitors," ChemistrySelect , vol.8, no.40, 2023

Guney, M. Et Al. 2023. In Vitro and in Silico Studies of 3-Hydroxyflavone-Based Sulfonate Esters: Potent Acetylcholinesterase, Carbonic Anhydrase and α-Glycosidase Inhibitors. ChemistrySelect , vol.8, no.40 .

Guney, M., Aggul, A. G., Ertürk, A., & Gülçin, İ., (2023). In Vitro and in Silico Studies of 3-Hydroxyflavone-Based Sulfonate Esters: Potent Acetylcholinesterase, Carbonic Anhydrase and α-Glycosidase Inhibitors. ChemistrySelect , vol.8, no.40.

Guney, Murat Et Al. "In Vitro and in Silico Studies of 3-Hydroxyflavone-Based Sulfonate Esters: Potent Acetylcholinesterase, Carbonic Anhydrase and α-Glycosidase Inhibitors," ChemistrySelect , vol.8, no.40, 2023

Guney, Murat Et Al. "In Vitro and in Silico Studies of 3-Hydroxyflavone-Based Sulfonate Esters: Potent Acetylcholinesterase, Carbonic Anhydrase and α-Glycosidase Inhibitors." ChemistrySelect , vol.8, no.40, 2023

Guney, M. Et Al. (2023) . "In Vitro and in Silico Studies of 3-Hydroxyflavone-Based Sulfonate Esters: Potent Acetylcholinesterase, Carbonic Anhydrase and α-Glycosidase Inhibitors." ChemistrySelect , vol.8, no.40.

@article{article, author={Murat Guney Et Al. }, title={In Vitro and in Silico Studies of 3-Hydroxyflavone-Based Sulfonate Esters: Potent Acetylcholinesterase, Carbonic Anhydrase and α-Glycosidase Inhibitors}, journal={ChemistrySelect}, year=2023}