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Chemical Communications (Cambridge, England)
|
August 26, 2010
Hollow silica nanospheres containing a silafluorene-fluorene conjugated polymer for aqueous TNT and RDX detection
Jian Yang, Sharraya Aschemeyer, H Paul Martinez, et al.
American Journal of Hematology
|
February 11, 2017
Erythroferrone and matriptase-2 independently regulate hepcidin expression
Sharraya Aschemeyer, Victoria Gabayan, Tomas Ganz, et al.
Journal of Biomedical Optics
|
August 29, 2015
Quantification of endocytosis using a folate functionalized silica hollow nanoshell platform
Sergio Sandoval, Natalie Mendez, Jesus G Alfaro, et al.
Journal of Biomedical Optics
|
July 5, 2011
Red-luminescent europium (III) doped silica nanoshells: synthesis, characterization, and their interaction with HeLa cells
Jian Yang, Sergio Sandoval, Jesus G Alfaro, et al.
Blood
|
December 15, 2017
Structure-function analysis of ferroportin defines the binding site and an alternative mechanism of action of hepcidin
Sharraya Aschemeyer, Bo Qiao, Deborah Stefanova, et al.
Page
of 1
Search research articles
Search
Showing results (1-10 of 5) with videos related to
Sort By:
Page
of 1
Chemical Communications (Cambridge, England)
|
August 26, 2010
Hollow silica nanospheres containing a silafluorene-fluorene conjugated polymer for aqueous TNT and RDX detection
Jian Yang, Sharraya Aschemeyer, H Paul Martinez, et al.
American Journal of Hematology
|
February 11, 2017
Erythroferrone and matriptase-2 independently regulate hepcidin expression
Sharraya Aschemeyer, Victoria Gabayan, Tomas Ganz, et al.
Journal of Biomedical Optics
|
August 29, 2015
Quantification of endocytosis using a folate functionalized silica hollow nanoshell platform
Sergio Sandoval, Natalie Mendez, Jesus G Alfaro, et al.
Journal of Biomedical Optics
|
July 5, 2011
Red-luminescent europium (III) doped silica nanoshells: synthesis, characterization, and their interaction with HeLa cells
Jian Yang, Sergio Sandoval, Jesus G Alfaro, et al.
Blood
|
December 15, 2017
Structure-function analysis of ferroportin defines the binding site and an alternative mechanism of action of hepcidin
Sharraya Aschemeyer, Bo Qiao, Deborah Stefanova, et al.
Page
of 1