Barakat, H.; Al-Roug, K.; Algonaiman, R.; Althwab, S.A.; Alfheeaid, H.A.; Alhomaid, R.M.; Almujaydil, M.S.; Bushnaq, T.; Ebeid, T.A.
Biological Assessment of Stevioside and Sucralose as Sucrose Substitutes for Diabetics on STZ-Induced Diabetes in Rats. Molecules 2023, 28, 940.
https://doi.org/10.3390/molecules28030940
AMA Style
Barakat H, Al-Roug K, Algonaiman R, Althwab SA, Alfheeaid HA, Alhomaid RM, Almujaydil MS, Bushnaq T, Ebeid TA.
Biological Assessment of Stevioside and Sucralose as Sucrose Substitutes for Diabetics on STZ-Induced Diabetes in Rats. Molecules. 2023; 28(3):940.
https://doi.org/10.3390/molecules28030940
Chicago/Turabian Style
Barakat, Hassan, Khaled Al-Roug, Raya Algonaiman, Sami A. Althwab, Hani A. Alfheeaid, Raghad M. Alhomaid, Mona S. Almujaydil, Taqwa Bushnaq, and Tarek A. Ebeid.
2023. "Biological Assessment of Stevioside and Sucralose as Sucrose Substitutes for Diabetics on STZ-Induced Diabetes in Rats" Molecules 28, no. 3: 940.
https://doi.org/10.3390/molecules28030940
APA Style
Barakat, H., Al-Roug, K., Algonaiman, R., Althwab, S. A., Alfheeaid, H. A., Alhomaid, R. M., Almujaydil, M. S., Bushnaq, T., & Ebeid, T. A.
(2023). Biological Assessment of Stevioside and Sucralose as Sucrose Substitutes for Diabetics on STZ-Induced Diabetes in Rats. Molecules, 28(3), 940.
https://doi.org/10.3390/molecules28030940