Dash, B.C.; Setia, O.; Gorecka, J.; Peyvandi, H.; Duan, K.; Lopes, L.; Nie, J.; Berthiaume, F.; Dardik, A.; Hsia, H.C.
A Dense Fibrillar Collagen Scaffold Differentially Modulates Secretory Function of iPSC-Derived Vascular Smooth Muscle Cells to Promote Wound Healing. Cells 2020, 9, 966.
https://doi.org/10.3390/cells9040966
AMA Style
Dash BC, Setia O, Gorecka J, Peyvandi H, Duan K, Lopes L, Nie J, Berthiaume F, Dardik A, Hsia HC.
A Dense Fibrillar Collagen Scaffold Differentially Modulates Secretory Function of iPSC-Derived Vascular Smooth Muscle Cells to Promote Wound Healing. Cells. 2020; 9(4):966.
https://doi.org/10.3390/cells9040966
Chicago/Turabian Style
Dash, Biraja C., Ocean Setia, Jolanta Gorecka, Hassan Peyvandi, Kaiti Duan, Lara Lopes, James Nie, Francois Berthiaume, Alan Dardik, and Henry C. Hsia.
2020. "A Dense Fibrillar Collagen Scaffold Differentially Modulates Secretory Function of iPSC-Derived Vascular Smooth Muscle Cells to Promote Wound Healing" Cells 9, no. 4: 966.
https://doi.org/10.3390/cells9040966
APA Style
Dash, B. C., Setia, O., Gorecka, J., Peyvandi, H., Duan, K., Lopes, L., Nie, J., Berthiaume, F., Dardik, A., & Hsia, H. C.
(2020). A Dense Fibrillar Collagen Scaffold Differentially Modulates Secretory Function of iPSC-Derived Vascular Smooth Muscle Cells to Promote Wound Healing. Cells, 9(4), 966.
https://doi.org/10.3390/cells9040966