Mohamed, I.K.; Hua, Y.; Kong, X.; Li, X.; Chen, Y.; Zhang, C.; Fall, M.; Hassan Ramadhan, A.
Proteomic Insights into Effects of a Camel Milk-Derived Peptide on Insulin Resistance: Modulation of Metabolic, Oxidative, and Signaling Pathways. Foods 2026, 15, 1177.
https://doi.org/10.3390/foods15071177
AMA Style
Mohamed IK, Hua Y, Kong X, Li X, Chen Y, Zhang C, Fall M, Hassan Ramadhan A.
Proteomic Insights into Effects of a Camel Milk-Derived Peptide on Insulin Resistance: Modulation of Metabolic, Oxidative, and Signaling Pathways. Foods. 2026; 15(7):1177.
https://doi.org/10.3390/foods15071177
Chicago/Turabian Style
Mohamed, Issoufou Katambe, Yufei Hua, Xiangzhen Kong, Xingfei Li, Yeming Chen, Caimeng Zhang, Mouhamed Fall, and Abuubakar Hassan Ramadhan.
2026. "Proteomic Insights into Effects of a Camel Milk-Derived Peptide on Insulin Resistance: Modulation of Metabolic, Oxidative, and Signaling Pathways" Foods 15, no. 7: 1177.
https://doi.org/10.3390/foods15071177
APA Style
Mohamed, I. K., Hua, Y., Kong, X., Li, X., Chen, Y., Zhang, C., Fall, M., & Hassan Ramadhan, A.
(2026). Proteomic Insights into Effects of a Camel Milk-Derived Peptide on Insulin Resistance: Modulation of Metabolic, Oxidative, and Signaling Pathways. Foods, 15(7), 1177.
https://doi.org/10.3390/foods15071177