Molecular mechanisms underlying the heterogeneous barrier responses of two primary endothelial cell types to sphingosine-1-phosphate
Alec T. Salminen(National Center for Toxicological Research), James L. McGrath(University of Rochester Medicine), Michael E. Klaczko(University of Rochester), Samantha Romanick(University of Nevada, Reno), S. Danial Ahmad(University of Rochester), Jonathan Flax(University of Rochester Medicine), Richard E. Waugh(University of Rochester), William J. Houlihan(University of Rochester), Kaihua Chen(Chinese Academy of Sciences), Molly C. McCloskey(University of Rochester)
Cited by 9
Related Papers
Charge- and size-based separation of macromolecules using ultrathin silicon membranes
|Nature|2007|754
The influence of protein adsorption on nanoparticle association with cultured endothelial cells
|Biomaterials|2008|408
Evidence of <i>Staphylococcus Aureus</i> Deformation, Proliferation, and Migration in Canaliculi of Live Cortical Bone in Murine Models of Osteomyelitis
|Journal of Bone and Mineral Research|2016|264
Simultaneous Measurements of Actin Filament Turnover, Filament Fraction, and Monomer Diffusion in Endothelial Cells
|Biophysical Journal|1998|171
Microbial life in permafrost
|Advances in Space Research|2004|162