Stafeev I, I.S.; Boldyreva, M.A.; Michurina, S.S.; Agareva, M.Y.; Radnaeva, A.V.; Menshikov, M.Y.; Hu, Y.-C.; Makarevich, P.I.; Parfyonova, Y.V.
The Efficacy of HGF/VEGF Gene Therapy for Limb Ischemia in Mice with Impaired Glucose Tolerance: Shift from Angiogenesis to Axonal Growth and Oxidative Potential in Skeletal Muscle. Cells 2022, 11, 3824.
https://doi.org/10.3390/cells11233824
AMA Style
Stafeev I IS, Boldyreva MA, Michurina SS, Agareva MY, Radnaeva AV, Menshikov MY, Hu Y-C, Makarevich PI, Parfyonova YV.
The Efficacy of HGF/VEGF Gene Therapy for Limb Ischemia in Mice with Impaired Glucose Tolerance: Shift from Angiogenesis to Axonal Growth and Oxidative Potential in Skeletal Muscle. Cells. 2022; 11(23):3824.
https://doi.org/10.3390/cells11233824
Chicago/Turabian Style
Stafeev I, Iurii S., Maria A. Boldyreva, Svetlana S. Michurina, Margarita Yu. Agareva, Arina V. Radnaeva, Mikhail Yu. Menshikov, Yu-Chen Hu, Pavel I. Makarevich, and Yelena V. Parfyonova.
2022. "The Efficacy of HGF/VEGF Gene Therapy for Limb Ischemia in Mice with Impaired Glucose Tolerance: Shift from Angiogenesis to Axonal Growth and Oxidative Potential in Skeletal Muscle" Cells 11, no. 23: 3824.
https://doi.org/10.3390/cells11233824
APA Style
Stafeev I, I. S., Boldyreva, M. A., Michurina, S. S., Agareva, M. Y., Radnaeva, A. V., Menshikov, M. Y., Hu, Y. -C., Makarevich, P. I., & Parfyonova, Y. V.
(2022). The Efficacy of HGF/VEGF Gene Therapy for Limb Ischemia in Mice with Impaired Glucose Tolerance: Shift from Angiogenesis to Axonal Growth and Oxidative Potential in Skeletal Muscle. Cells, 11(23), 3824.
https://doi.org/10.3390/cells11233824