Biocompatibility of amorphous silica nanoparticles: Size and charge effect on vascular function, in vitro.
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Probing insulin bioactivity in oral nanoparticles produced by ultrasonication-assisted emulsification/internal gelation.Dual-Labeled Near-Infrared/(99m)Tc Imaging Probes Using PAMAM-Coated Silica Nanoparticles for the Imaging of HER2-Expressing Cancer Cells.Bio-effect of nanoparticles in the cardiovascular system.Attenuation of endothelial-dependent vasodilator responses, induced by dye-encapsulated silica nanoparticles, in aortic vessels.Dual-modality imaging with 99mTc and fluorescent indocyanine green using surface-modified silica nanoparticles for biopsy of the sentinel lymph node: an animal study.Formation of composite polyacrylamide and silicone substrates for independent control of stiffness and strain.Therapeutic effect of methotrexate encapsulated in cationic liposomes (EndoMTX) in comparison to free methotrexate in an antigen-induced arthritis study in vivo.The influence of silica nanoparticles on small mesenteric arterial function.Nanoparticles in Medicine: A Focus on Vascular Oxidative Stress
P2860
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P2860
Biocompatibility of amorphous silica nanoparticles: Size and charge effect on vascular function, in vitro.
description
2011 nî lūn-bûn
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2011年の論文
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2011年学术文章
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name
Biocompatibility of amorphous ...... n vascular function, in vitro.
@en
Biocompatibility of amorphous ...... n vascular function, in vitro.
@nl
type
label
Biocompatibility of amorphous ...... n vascular function, in vitro.
@en
Biocompatibility of amorphous ...... n vascular function, in vitro.
@nl
prefLabel
Biocompatibility of amorphous ...... n vascular function, in vitro.
@en
Biocompatibility of amorphous ...... n vascular function, in vitro.
@nl
P2093
P2860
P356
P1476
Biocompatibility of amorphous ...... n vascular function, in vitro.
@en
P2093
Debra Whitehead
May Azzawi
Naveed Akbar
Teba Mohamed
P2860
P304
P356
10.1002/BAB.46
P577
2011-09-22T00:00:00Z