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Arteriosclerosis, Thrombosis, and Vascular Biology|October 14, 2017
Proatherogenic Flow Increases Endothelial Stiffness via Enhanced CD36-Mediated Uptake of Oxidized Low-Density LipoproteinsElizabeth Le Master, Ru-Ting Huang, Chongxu Zhang, et al.The Journal of Biological Chemistry|September 11, 2013
Identification of novel cholesterol-binding regions in Kir2 channelsAvia Rosenhouse-Dantsker, Sergei Noskov, Serdar Durdagi, et al.Biophysical Journal|March 1, 2018
Hypotonic Challenge of Endothelial Cells Increases Membrane Stiffness with No Effect on Tether ForceManuela Aseye Ayele Ayee, Elizabeth LeMaster, Tao Teng, et al.The Journal of Membrane Biology|April 25, 2022
Effective Parameters Controlling Sterol Transfer: A Time-Resolved Small-Angle Neutron Scattering StudyUrsula Perez-Salas, Lionel Porcar, Sumit Garg, et al.Journal of Lipid Research|January 19, 2006
OxLDL increases endothelial stiffness, force generation, and network formationFitzroy J Byfield, Saloni Tikku, George H Rothblat, et al.American Journal of Physiology. Cell Physiology|June 27, 2003
Shear stress increases expression of a KATP channel in rat and bovine pulmonary vascular endothelial cellsShampa Chatterjee, Abu-Bakr Al-Mehdi, Irena Levitan, et al.The Journal of Biological Chemistry|September 11, 2009
Direct regulation of prokaryotic Kir channel by cholesterolDev K Singh, Avia Rosenhouse-Dantsker, Colin G Nichols, et al.Journal of Biomechanics|April 10, 2009
Endothelial actin and cell stiffness is modulated by substrate stiffness in 2D and 3DFitzroy J Byfield, Rashmeet K Reen, Tzu-Pin Shentu, et al.Biophysical Journal|September 7, 2004
Cholesterol depletion increases membrane stiffness of aortic endothelial cellsFitzroy J Byfield, Helim Aranda-Espinoza, Victor G Romanenko, et al.American Journal of Physiology. Cell Physiology|April 27, 2007
Relationship between Kir2.1/Kir2.3 activity and their distributions between cholesterol-rich and cholesterol-poor membrane domainsSaloni Tikku, Yulia Epshtein, Heidi Collins, et al.Pageof 11