U. Ghani Et Al. , "Dithiocarbamate derivatives inhibit alpha-glucosidase through an apparent allosteric site on the enzyme," CHEMICAL BIOLOGY & DRUG DESIGN , vol.98, no.2, pp.283-294, 2021
Ghani, U. Et Al. 2021. Dithiocarbamate derivatives inhibit alpha-glucosidase through an apparent allosteric site on the enzyme. CHEMICAL BIOLOGY & DRUG DESIGN , vol.98, no.2 , 283-294.
Ghani, U., Ashraf, S., Ul-Haq, Z., Mujamammi, A. H., ÖZKAY, Y., DEMİRCİ, F., ... KAPLANCIKLI, Z. A.(2021). Dithiocarbamate derivatives inhibit alpha-glucosidase through an apparent allosteric site on the enzyme. CHEMICAL BIOLOGY & DRUG DESIGN , vol.98, no.2, 283-294.
Ghani, Usman Et Al. "Dithiocarbamate derivatives inhibit alpha-glucosidase through an apparent allosteric site on the enzyme," CHEMICAL BIOLOGY & DRUG DESIGN , vol.98, no.2, 283-294, 2021
Ghani, Usman Et Al. "Dithiocarbamate derivatives inhibit alpha-glucosidase through an apparent allosteric site on the enzyme." CHEMICAL BIOLOGY & DRUG DESIGN , vol.98, no.2, pp.283-294, 2021
Ghani, U. Et Al. (2021) . "Dithiocarbamate derivatives inhibit alpha-glucosidase through an apparent allosteric site on the enzyme." CHEMICAL BIOLOGY & DRUG DESIGN , vol.98, no.2, pp.283-294.
@article{article, author={Usman Ghani Et Al. }, title={Dithiocarbamate derivatives inhibit alpha-glucosidase through an apparent allosteric site on the enzyme}, journal={CHEMICAL BIOLOGY & DRUG DESIGN}, year=2021, pages={283-294} }