Showing results (901-910 of 1,707) with videos related to
Sort By:
Pageof 171
Bioconjugate Chemistry|March 29, 2014
Efficient magnetic recycling of covalently attached enzymes on carbon-coated metallic nanomagnetsVladimir Zlateski, Roland Fuhrer, Fabian M Koehler, et al.Investigative Ophthalmology & Visual Science|June 27, 2007
Cryopreservation and lentiviral-mediated genetic modification of human primary cultured corneal endothelial cellsLeejee H Suh, Cheng Zhang, Roy S Chuck, et al.Scientific Reports|July 9, 2024
Functionalized magnetic nanoparticles remove donor-specific antibodies (DSA) from patient blood in a first ex vivo proof of principle studyFrancis Lauener, Martin Schläpfer, Thomas F Mueller, et al.International Journal of Cancer|August 20, 2014
SDF-1α stiffens myeloma bone marrow mesenchymal stromal cells through the activation of RhoA-ROCK-Myosin IIDong Soon Choi, Daniel J Stark, Robert M Raphael, et al.Journal of the Mechanical Behavior of Biomedical Materials|April 24, 2018
Cyclic uniaxial compression of human stem cells seeded on a bone biomimetic nanocomposite decreases anti-osteogenic commitment evoked by shear stressWalter Baumgartner, Isabelle Schneider, Samuel C Hess, et al.Cornea|July 24, 2015
Physical and Biological Characterization of the Gamma-Irradiated Human CorneaJ Jeremy Chae, Joseph S Choi, Justin D Lee, et al.Free Radical Biology & Medicine|October 18, 2023
Extracellular SOD modulates canonical TNFα signaling and α5β1 integrin transactivation in vascular smooth muscle cellsHyehun Choi, Michael R Miller, Hong-Ngan Nguyen, et al.Langmuir : the ACS Journal of Surfaces and Colloids|August 9, 2006
Dynamics of fracture in drying suspensionsE R Dufresne, D J Stark, N A Greenblatt, et al.The Journal of Investigative Dermatology|May 12, 2001
Organotypic cocultures with genetically modified mouse fibroblasts as a tool to dissect molecular mechanisms regulating keratinocyte growth and differentiationN Maas-Szabowski, A Szabowski, H J Stark, et al.Journal of Molecular Biology|September 15, 1984
Effects of site-directed mutations in the central domain of 16 S ribosomal RNA upon ribosomal protein binding, RNA processing and 30 S subunit assemblyM J Stark, R J Gregory, R L Gourse, et al.Pageof 171