Kittirotruji, K.; Ngaokrajang, U.; Buranasudja, V.; Sujarittham, I.; Nwe, S.Y.; Suwanchaikasem, P.; Rattanapisit, K.; Bulaon, C.J.I.; Phoolcharoen, W.
Proteomic Analysis of Plant-Derived hIGF-1-Fc Reveals Proteome Abundance Changes Associated with Wound Healing and Cell Proliferation. Proteomes 2025, 13, 59.
https://doi.org/10.3390/proteomes13040059
AMA Style
Kittirotruji K, Ngaokrajang U, Buranasudja V, Sujarittham I, Nwe SY, Suwanchaikasem P, Rattanapisit K, Bulaon CJI, Phoolcharoen W.
Proteomic Analysis of Plant-Derived hIGF-1-Fc Reveals Proteome Abundance Changes Associated with Wound Healing and Cell Proliferation. Proteomes. 2025; 13(4):59.
https://doi.org/10.3390/proteomes13040059
Chicago/Turabian Style
Kittirotruji, Kittinop, Utapin Ngaokrajang, Visarut Buranasudja, Ittichai Sujarittham, San Yoon Nwe, Pipob Suwanchaikasem, Kaewta Rattanapisit, Christine Joy I. Bulaon, and Waranyoo Phoolcharoen.
2025. "Proteomic Analysis of Plant-Derived hIGF-1-Fc Reveals Proteome Abundance Changes Associated with Wound Healing and Cell Proliferation" Proteomes 13, no. 4: 59.
https://doi.org/10.3390/proteomes13040059
APA Style
Kittirotruji, K., Ngaokrajang, U., Buranasudja, V., Sujarittham, I., Nwe, S. Y., Suwanchaikasem, P., Rattanapisit, K., Bulaon, C. J. I., & Phoolcharoen, W.
(2025). Proteomic Analysis of Plant-Derived hIGF-1-Fc Reveals Proteome Abundance Changes Associated with Wound Healing and Cell Proliferation. Proteomes, 13(4), 59.
https://doi.org/10.3390/proteomes13040059