G. Demirel Et Al. , "The use of hyaluronic acid in a 3D biomimetic scaffold supports spheroid formation and the culture of cancer stem cells," Scientific Reports , vol.14, no.1, 2024
Demirel, G. Et Al. 2024. The use of hyaluronic acid in a 3D biomimetic scaffold supports spheroid formation and the culture of cancer stem cells. Scientific Reports , vol.14, no.1 .
Demirel, G., Cakıl, Y. D., Koltuk, G., Aktas, R. G., & ÇALIŞKAN, M., (2024). The use of hyaluronic acid in a 3D biomimetic scaffold supports spheroid formation and the culture of cancer stem cells. Scientific Reports , vol.14, no.1.
Demirel, Gamze Et Al. "The use of hyaluronic acid in a 3D biomimetic scaffold supports spheroid formation and the culture of cancer stem cells," Scientific Reports , vol.14, no.1, 2024
Demirel, Gamze Et Al. "The use of hyaluronic acid in a 3D biomimetic scaffold supports spheroid formation and the culture of cancer stem cells." Scientific Reports , vol.14, no.1, 2024
Demirel, G. Et Al. (2024) . "The use of hyaluronic acid in a 3D biomimetic scaffold supports spheroid formation and the culture of cancer stem cells." Scientific Reports , vol.14, no.1.
@article{article, author={Gamze Demirel Et Al. }, title={The use of hyaluronic acid in a 3D biomimetic scaffold supports spheroid formation and the culture of cancer stem cells}, journal={Scientific Reports}, year=2024}