K. Adacan Et Al. , "Epibrassinolide-induced autophagy occurs in an Atg5-independent manner due to endoplasmic stress induction in MEF cells," AMINO ACIDS , vol.52, no.6-7, pp.871-891, 2020
Adacan, K. Et Al. 2020. Epibrassinolide-induced autophagy occurs in an Atg5-independent manner due to endoplasmic stress induction in MEF cells. AMINO ACIDS , vol.52, no.6-7 , 871-891.
Adacan, K., Obakan-Yerlikaya, P., Arisan, E. D., Coker-Gurkan, A., Kaya, R. I., & Palavan-Unsal, N., (2020). Epibrassinolide-induced autophagy occurs in an Atg5-independent manner due to endoplasmic stress induction in MEF cells. AMINO ACIDS , vol.52, no.6-7, 871-891.
Adacan, Kaan Et Al. "Epibrassinolide-induced autophagy occurs in an Atg5-independent manner due to endoplasmic stress induction in MEF cells," AMINO ACIDS , vol.52, no.6-7, 871-891, 2020
Adacan, Kaan Et Al. "Epibrassinolide-induced autophagy occurs in an Atg5-independent manner due to endoplasmic stress induction in MEF cells." AMINO ACIDS , vol.52, no.6-7, pp.871-891, 2020
Adacan, K. Et Al. (2020) . "Epibrassinolide-induced autophagy occurs in an Atg5-independent manner due to endoplasmic stress induction in MEF cells." AMINO ACIDS , vol.52, no.6-7, pp.871-891.
@article{article, author={Kaan Adacan Et Al. }, title={Epibrassinolide-induced autophagy occurs in an Atg5-independent manner due to endoplasmic stress induction in MEF cells}, journal={AMINO ACIDS}, year=2020, pages={871-891} }