Nanometer-sized materials offer a wide range of applications in biomedical technologies, particularly imaging and diagnostics. Current scaffolds in the nanometer range predominantly make use of inorganic particles, organic polymers or natural peptide-based macromolecules. In contrast we hereby report a supramolecular approach for the preparation of self-assembled dendritic-like nanoparticles for applications as MRI contrast agents. This strategy combines the benefits from low molecular weight imaging agents with the ones of high molecular weight. Their in vitro properties are confirmed by in vivo measurements: post injection of well-defined and meta-stable nanoparticles allows for high-resolution blood-pool imaging, even at very low Gd(III)...
Gadolinium‐loaded nanomicelles show promise as future magnetic resonance imaging (MRI) contrast agen...
Introduction: Supramolecular nanoparticles made from the self-assembly of paramagnetic amphiphilic c...
International audienceBioimaging has revolutionized modern medicine, and nanotechnology can offer fu...
Nanometer-sized materials offer a wide range of applications in biomedical technologies, particularl...
Magnetic resonance imaging (MRI) is a noninvasive medical imaging modality that is routinely used in...
Nanoparticles are the hallmark of nanomedicine, proving clinically relevant for the delivery of ther...
Dendritic polymers or dendrimers present an alternate template for the development of nanoparticulat...
Over the past decades, significant efforts have been devoted to explore the use of various nanoparti...
Paramagnetic contrast agents (CAs) are routinely used in magnetic resonance imaging (MRI) to enhance...
Dendrimersomes are nanosized vesicles constituted by amphiphilic Janus dendrimers (JDs), which have ...
Supramolecular self-assembled nanoparticles, hereafter referred to as nanoassemblies, made of lipid-...
Magnetic resonance imaging (MRI) is one of the most important clinic diagnostic tool used to obtain...
Self-assembled nanoparticles as new smart contrast agents for magnetic resonance imaging 201
Magnetic resonance imaging (MRI) has become one of the most widely used and powerful tools for non-i...
We designed a high-sensitivity magnetic resonance imaging contrast agent that could be used to diagn...
Gadolinium‐loaded nanomicelles show promise as future magnetic resonance imaging (MRI) contrast agen...
Introduction: Supramolecular nanoparticles made from the self-assembly of paramagnetic amphiphilic c...
International audienceBioimaging has revolutionized modern medicine, and nanotechnology can offer fu...
Nanometer-sized materials offer a wide range of applications in biomedical technologies, particularl...
Magnetic resonance imaging (MRI) is a noninvasive medical imaging modality that is routinely used in...
Nanoparticles are the hallmark of nanomedicine, proving clinically relevant for the delivery of ther...
Dendritic polymers or dendrimers present an alternate template for the development of nanoparticulat...
Over the past decades, significant efforts have been devoted to explore the use of various nanoparti...
Paramagnetic contrast agents (CAs) are routinely used in magnetic resonance imaging (MRI) to enhance...
Dendrimersomes are nanosized vesicles constituted by amphiphilic Janus dendrimers (JDs), which have ...
Supramolecular self-assembled nanoparticles, hereafter referred to as nanoassemblies, made of lipid-...
Magnetic resonance imaging (MRI) is one of the most important clinic diagnostic tool used to obtain...
Self-assembled nanoparticles as new smart contrast agents for magnetic resonance imaging 201
Magnetic resonance imaging (MRI) has become one of the most widely used and powerful tools for non-i...
We designed a high-sensitivity magnetic resonance imaging contrast agent that could be used to diagn...
Gadolinium‐loaded nanomicelles show promise as future magnetic resonance imaging (MRI) contrast agen...
Introduction: Supramolecular nanoparticles made from the self-assembly of paramagnetic amphiphilic c...
International audienceBioimaging has revolutionized modern medicine, and nanotechnology can offer fu...