Wang, Z.; Wang, X.; Guo, S.; Cai, Y.; Xie, D.; Wang, Y.; Zhang, A.; Dai, J.; Qiu, S.
Integrated Omics Reveal Dendrobium nobile Lindl.’s Anti-Diabetic Mechanisms via Arginine/Proline and Glycerophospholipid Pathways. Pharmaceuticals 2025, 18, 1061.
https://doi.org/10.3390/ph18071061
AMA Style
Wang Z, Wang X, Guo S, Cai Y, Xie D, Wang Y, Zhang A, Dai J, Qiu S.
Integrated Omics Reveal Dendrobium nobile Lindl.’s Anti-Diabetic Mechanisms via Arginine/Proline and Glycerophospholipid Pathways. Pharmaceuticals. 2025; 18(7):1061.
https://doi.org/10.3390/ph18071061
Chicago/Turabian Style
Wang, Zhibo, Xian Wang, Sifan Guo, Ying Cai, Dandan Xie, Yujuan Wang, Aihua Zhang, Jun Dai, and Shi Qiu.
2025. "Integrated Omics Reveal Dendrobium nobile Lindl.’s Anti-Diabetic Mechanisms via Arginine/Proline and Glycerophospholipid Pathways" Pharmaceuticals 18, no. 7: 1061.
https://doi.org/10.3390/ph18071061
APA Style
Wang, Z., Wang, X., Guo, S., Cai, Y., Xie, D., Wang, Y., Zhang, A., Dai, J., & Qiu, S.
(2025). Integrated Omics Reveal Dendrobium nobile Lindl.’s Anti-Diabetic Mechanisms via Arginine/Proline and Glycerophospholipid Pathways. Pharmaceuticals, 18(7), 1061.
https://doi.org/10.3390/ph18071061