Heterogeneous Au-Fe3O4 dumbbell nanoparticles (NPs) are composed of Au NPs and Fe3O4 NPs that bring in optical and magnetic properties respectively. This article reports the engineering of Au-Fe3O4 NPs as gene carriers for magnetic gene transfection as well as contrast agents for micro-optical coherence tomography (μOCT). As a proof-of-concept, Au-Fe3O4 NPs are used to deliver the green fluorescent protein to HEK 293T cells and their entrance into the cells is monitored through μOCT.NMRC (Natl Medical Research Council, S’pore)Accepted versio
Superparamagnetic nanoparticles are promising candidates for gene delivery into mammalian somatic ce...
Core-shell iron oxide-gold nanoparticles (Fe3O4@Au) can be considered a smart platform for polyvalen...
Magnetic gold-coated iron oxide nanoparticles (Fe@Au NPs) have recently emerged as a new type of iro...
Heterogeneous Au-Fe3O4 dumbbell nanoparticles (NPs) are composed of Au NPs and Fe3O4 NPs that bring ...
Abstract—Magnetomotive optical coherence tomography (MM-OCT) is an important tool for the visualizat...
Optical coherence tomography (OCT) is an emerging biomedical imaging modality that has been develope...
Human diseases due to genetic mutations, such as cancer, have become the leading cause of death worl...
n recent years, nanotechnology has deployed a new set of theragnostic tools, including magnetic reso...
Despite the over spatial separation and the ability to determine soft tissues, insufficient contrast...
Successful development of ultra-sensitive molecular imaging nanoprobes for the detection of targeted...
Biocompatible magnetic nanoparticles are effective for gene delivery in vitro and in vivo transfecti...
The synchronization of gene expression and cell trafficking in transfected stem cells is crucial for...
Magnetite–gold dumbbell nanoparticles are essential for biomedical applications due to the presence ...
Nanoparticle research has greatly benefitted medical imaging platforms by generating new signals, en...
Molecularly-specific contrast can greatly enhance the biomedical utility of optical coherence tomogr...
Superparamagnetic nanoparticles are promising candidates for gene delivery into mammalian somatic ce...
Core-shell iron oxide-gold nanoparticles (Fe3O4@Au) can be considered a smart platform for polyvalen...
Magnetic gold-coated iron oxide nanoparticles (Fe@Au NPs) have recently emerged as a new type of iro...
Heterogeneous Au-Fe3O4 dumbbell nanoparticles (NPs) are composed of Au NPs and Fe3O4 NPs that bring ...
Abstract—Magnetomotive optical coherence tomography (MM-OCT) is an important tool for the visualizat...
Optical coherence tomography (OCT) is an emerging biomedical imaging modality that has been develope...
Human diseases due to genetic mutations, such as cancer, have become the leading cause of death worl...
n recent years, nanotechnology has deployed a new set of theragnostic tools, including magnetic reso...
Despite the over spatial separation and the ability to determine soft tissues, insufficient contrast...
Successful development of ultra-sensitive molecular imaging nanoprobes for the detection of targeted...
Biocompatible magnetic nanoparticles are effective for gene delivery in vitro and in vivo transfecti...
The synchronization of gene expression and cell trafficking in transfected stem cells is crucial for...
Magnetite–gold dumbbell nanoparticles are essential for biomedical applications due to the presence ...
Nanoparticle research has greatly benefitted medical imaging platforms by generating new signals, en...
Molecularly-specific contrast can greatly enhance the biomedical utility of optical coherence tomogr...
Superparamagnetic nanoparticles are promising candidates for gene delivery into mammalian somatic ce...
Core-shell iron oxide-gold nanoparticles (Fe3O4@Au) can be considered a smart platform for polyvalen...
Magnetic gold-coated iron oxide nanoparticles (Fe@Au NPs) have recently emerged as a new type of iro...