Flow effects on prostacyclin production by cultured human endothelial cells JA Frangos, SG Eskin, LV McIntire, CL Ives Science 227 (4693), 1477-1479, 1985 | 1606 | 1985 |
Sensitivity of osteocytes to biomechanical stress in vitro J Klein‐Nulend, A Van Der Plas, CM Semeins, NE Ajubi, JA Erangos, ... The FASEB Journal 9 (5), 441-445, 1995 | 1003 | 1995 |
Role of calcium and calmodulin in flow-induced nitric oxide production in endothelial cells MJ Kuchan, JA Frangos American Journal of Physiology-Cell Physiology 266 (3), C628-C636, 1994 | 665 | 1994 |
Shear stress regulates endothelin-1 release via protein kinase C and cGMP in cultured endothelial cells MJ Kuchan, JA Frangos American Journal of Physiology-Heart and Circulatory Physiology 264 (1 …, 1993 | 594 | 1993 |
G protein-coupled receptors sense fluid shear stress in endothelial cells M Chachisvilis, YL Zhang, JA Frangos Proceedings of the National Academy of Sciences 103 (42), 15463-15468, 2006 | 549 | 2006 |
Fluid shear stress as a mediator of osteoblast cyclic adenosine monophosphate production KM Reich, CV Gay, JA Frangos Journal of cellular physiology 143 (1), 100-104, 1990 | 475 | 1990 |
Shear stress induced stimulation of mammalian cell metabolism JA Frangos, LV McIntire, SG Eskin Biotechnology and bioengineering 32 (8), 1053-1060, 1988 | 470 | 1988 |
Liver sinusoidal endothelial cells are responsible for nitric oxide modulation of resistance in the hepatic sinusoids. V Shah, FG Haddad, G Garcia-Cardena, JA Frangos, A Mennone, ... The Journal of clinical investigation 100 (11), 2923-2930, 1997 | 419 | 1997 |
Modulation of GTPase activity of G proteins by fluid shear stress and phospholipid composition S Gudi, JP Nolan, JA Frangos Proceedings of the National Academy of Sciences 95 (5), 2515-2519, 1998 | 407 | 1998 |
Fluid flow rapidly activates G proteins in human endothelial cells: involvement of G proteins in mechanochemical signal transduction SRP Gudi, CB Clark, JA Frangos Circulation research 79 (4), 834-839, 1996 | 376 | 1996 |
Shear stress increases endothelial platelet-derived growth factor mRNA levels HJ Hsieh, NQ Li, JA Frangos American Journal of Physiology-Heart and Circulatory Physiology 260 (2 …, 1991 | 361 | 1991 |
Bone tissue engineering: the role of interstitial fluid flow MV Hillsley, JA Frangos Biotechnology and bioengineering 43 (7), 573-581, 1994 | 354 | 1994 |
Effect of flow on prostaglandin E2 and inositol trisphosphate levels in osteoblasts KM Reich, JA Frangos American Journal of Physiology-Cell Physiology 261 (3), C428-C432, 1991 | 348 | 1991 |
The shear stress of it all: the cell membrane and mechanochemical transduction CR White, JA Frangos Philosophical Transactions of the Royal Society B: Biological Sciences 362 …, 2007 | 331 | 2007 |
Role of G proteins in shear stress-mediated nitric oxide production by endothelial cells MJ Kuchan, H Jo, JA Frangos American Journal of Physiology-Cell Physiology 267 (3), C753-C758, 1994 | 327 | 1994 |
Temporal Gradient in Shear But Not Steady Shear Stress Induces PDGF-A and MCP-1 Expression in Endothelial Cells: Role of NO, NFκB, and egr-1 X Bao, C Lu, JA Frangos Arteriosclerosis, thrombosis, and vascular biology 19 (4), 996-1003, 1999 | 315 | 1999 |
Fluid flow stimulates rapid and continuous release of nitric oxide in osteoblasts DL Johnson, TN McAllister, JA Frangos American Journal of Physiology-Endocrinology And Metabolism 271 (1), E205-E208, 1996 | 294 | 1996 |
Pulsatile and steady flow induces c‐fos expression in human endothelial cells HJ Hsieh, NQ Li, JA Frangos Journal of cellular physiology 154 (1), 143-151, 1993 | 291 | 1993 |
Fluid shear stress increases membrane fluidity in endothelial cells: a study with DCVJ fluorescence MA Haidekker, N L'Heureux, JA Frangos American Journal of Physiology-Heart and Circulatory Physiology 278 (4 …, 2000 | 289 | 2000 |
Steady and transient fluid shear stress stimulate NO release in osteoblasts through distinct biochemical pathways TN McAllister, JA Frangos Journal of Bone and Mineral Research 14 (6), 930-936, 1999 | 276 | 1999 |