Simpson, J.D.; Currin-Ross, D.L.; Ediriweera, G.R.; Schirra, H.J.; Fletcher, N.L.; Bell, C.A.; Arno, M.C.; Thurecht, K.J.
Cyanine-5-Driven Behaviours of Hyperbranched Polymers Designed for Therapeutic Delivery Are Cell-Type Specific and Correlated with Polar Lipid Distribution in Membranes. Nanomaterials 2021, 11, 1745.
https://doi.org/10.3390/nano11071745
AMA Style
Simpson JD, Currin-Ross DL, Ediriweera GR, Schirra HJ, Fletcher NL, Bell CA, Arno MC, Thurecht KJ.
Cyanine-5-Driven Behaviours of Hyperbranched Polymers Designed for Therapeutic Delivery Are Cell-Type Specific and Correlated with Polar Lipid Distribution in Membranes. Nanomaterials. 2021; 11(7):1745.
https://doi.org/10.3390/nano11071745
Chicago/Turabian Style
Simpson, Joshua D., Denni L. Currin-Ross, Gayathri R. Ediriweera, Horst Joachim Schirra, Nicholas L. Fletcher, Craig A. Bell, Maria C. Arno, and Kristofer J. Thurecht.
2021. "Cyanine-5-Driven Behaviours of Hyperbranched Polymers Designed for Therapeutic Delivery Are Cell-Type Specific and Correlated with Polar Lipid Distribution in Membranes" Nanomaterials 11, no. 7: 1745.
https://doi.org/10.3390/nano11071745
APA Style
Simpson, J. D., Currin-Ross, D. L., Ediriweera, G. R., Schirra, H. J., Fletcher, N. L., Bell, C. A., Arno, M. C., & Thurecht, K. J.
(2021). Cyanine-5-Driven Behaviours of Hyperbranched Polymers Designed for Therapeutic Delivery Are Cell-Type Specific and Correlated with Polar Lipid Distribution in Membranes. Nanomaterials, 11(7), 1745.
https://doi.org/10.3390/nano11071745