Listenberger, L.; Townsend, E.; Rickertsen, C.; Hains, A.; Brown, E.; Inwards, E.G.; Stoeckman, A.K.; Matis, M.P.; Sampathkumar, R.S.; Osna, N.A.;
et al. Decreasing Phosphatidylcholine on the Surface of the Lipid Droplet Correlates with Altered Protein Binding and Steatosis. Cells 2018, 7, 230.
https://doi.org/10.3390/cells7120230
AMA Style
Listenberger L, Townsend E, Rickertsen C, Hains A, Brown E, Inwards EG, Stoeckman AK, Matis MP, Sampathkumar RS, Osna NA,
et al. Decreasing Phosphatidylcholine on the Surface of the Lipid Droplet Correlates with Altered Protein Binding and Steatosis. Cells. 2018; 7(12):230.
https://doi.org/10.3390/cells7120230
Chicago/Turabian Style
Listenberger, Laura, Elizabeth Townsend, Cassandra Rickertsen, Anastasia Hains, Elizabeth Brown, Emily G. Inwards, Angela K. Stoeckman, Mitchell P. Matis, Rebecca S. Sampathkumar, Natalia A. Osna,
and et al. 2018. "Decreasing Phosphatidylcholine on the Surface of the Lipid Droplet Correlates with Altered Protein Binding and Steatosis" Cells 7, no. 12: 230.
https://doi.org/10.3390/cells7120230
APA Style
Listenberger, L., Townsend, E., Rickertsen, C., Hains, A., Brown, E., Inwards, E. G., Stoeckman, A. K., Matis, M. P., Sampathkumar, R. S., Osna, N. A., & Kharbanda, K. K.
(2018). Decreasing Phosphatidylcholine on the Surface of the Lipid Droplet Correlates with Altered Protein Binding and Steatosis. Cells, 7(12), 230.
https://doi.org/10.3390/cells7120230