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https://www.ncbi.nlm.nih.gov/pubmed/21983284
Mar 10, 2012 · E-selectin as a target for drug delivery and molecular imaging. Jubeli E(1), Moine L, Vergnaud-Gauduchon J, Barratt G. Author information: (1)Université Paris-Sud 11, Faculté de Pharmacie 5 rue J.B. Clément Chatenay-Malabry, FR 92296, UMR 8612 CNRS, LabEx LERMIT, France.Author: Emile Jubeli, Laurence Moine, Juliette Vergnaud-Gauduchon, Gillian Barratt
https://www.sciencedirect.com/science/article/pii/S0168365911009369
E-selectin as a target for drug delivery and molecular imaging ... based on its expression in the vicinity of inflammation, infection or cancer. These systems for drug delivery and molecular imaging include immunoconjugates, liposomes, nanoparticles, and microparticles prepared from a wide range of starting materials including lipids, synthetic ...Author: Emile Jubeli, Laurence Moine, Juliette Vergnaud-Gauduchon, Gillian Barratt
https://www.sciencedirect.com/science/article/abs/pii/S0168365911009369
E-selectin has been chosen as a target for several therapeutic and medical imaging applications, based on its expression in the vicinity of inflammation, infection or cancer. These systems for drug delivery and molecular imaging include immunoconjugates, liposomes, nanoparticles, and microparticles prepared from a wide range of starting ...Author: Emile Jubeli, Laurence Moine, Juliette Vergnaud-Gauduchon, Gillian Barratt
https://www.researchgate.net/publication/51702873_E-selectin_as_a_target_for_drug_delivery_and_molecular_imaging
Request PDF E-selectin as a target for drug delivery and molecular imaging E-selectin, also known as CD62E, is a cell adhesion molecule expressed on endothelial cells activated by cytokines.
https://www.academia.edu/19312266/E-selectin_as_a_target_for_drug_delivery_and_molecular_imaging
E-selectin, also known as CD62E, is a cell adhesion molecule expressed on endothelial cells activated by cytokines. Like other selectins, it plays an important part in inflammation and in the adhesion of metastatic cancer cells to the endothelium.
https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3121175/
Optimal imaging of vascular inflammation can be achieved with nanoparticle probes whose pharmacokinetics favors delivery and specific binding to the target, and fast blood clearance. Figure 2 Schematic representation of targeted nanoparticles engineered for biomedical imaging and therapeutic drug delivery applications.Author: Ann-Marie Chacko, Elizabeth D. Hood, Blaine J. Zern, Vladimir R. Muzykantov
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