Kim, S.; Kang, G.-H.; Lim, K.M.; Shin, Y.; Song, K.; Park, S.; An, J.; Kim, D.Y.; Shin, H.-C.; Cho, S.-G.
Thermostable Human Basic Fibroblast Growth Factor (TS-bFGF) Engineered with a Disulfide Bond Demonstrates Superior Culture Outcomes in Human Pluripotent Stem Cell. Biology 2023, 12, 888.
https://doi.org/10.3390/biology12060888
AMA Style
Kim S, Kang G-H, Lim KM, Shin Y, Song K, Park S, An J, Kim DY, Shin H-C, Cho S-G.
Thermostable Human Basic Fibroblast Growth Factor (TS-bFGF) Engineered with a Disulfide Bond Demonstrates Superior Culture Outcomes in Human Pluripotent Stem Cell. Biology. 2023; 12(6):888.
https://doi.org/10.3390/biology12060888
Chicago/Turabian Style
Kim, Sejong, Geun-Ho Kang, Kyung Min Lim, Yeokyung Shin, Kwonwoo Song, Sangrok Park, Jongyub An, Dae Young Kim, Hang-Cheol Shin, and Ssang-Goo Cho.
2023. "Thermostable Human Basic Fibroblast Growth Factor (TS-bFGF) Engineered with a Disulfide Bond Demonstrates Superior Culture Outcomes in Human Pluripotent Stem Cell" Biology 12, no. 6: 888.
https://doi.org/10.3390/biology12060888
APA Style
Kim, S., Kang, G.-H., Lim, K. M., Shin, Y., Song, K., Park, S., An, J., Kim, D. Y., Shin, H.-C., & Cho, S.-G.
(2023). Thermostable Human Basic Fibroblast Growth Factor (TS-bFGF) Engineered with a Disulfide Bond Demonstrates Superior Culture Outcomes in Human Pluripotent Stem Cell. Biology, 12(6), 888.
https://doi.org/10.3390/biology12060888