Common methods of loading magnetic resonance imaging (MRI) contrast agents into nanoparticles often suffer from challenges related to particle formation, complex chemical modification/purification steps, and reduced contrast efficiency. This study presents a simple, yet advanced process to address these issues by loading gadolinium, an MRI contrast agent, exclusively on a liposome surface using a polymeric fastener. The fastener, so named for its ability to physically link the two functional components together, consisted of chitosan substituted with diethylenetriaminepentaacetic acid (DTPA) to chelate gadolinium, as well as octadecyl chains to stabilize the modified chitosan on the liposome surface. The assembly strategy, mimicking the mec...
Nanoparticles are the hallmark of nanomedicine, proving clinically relevant for the delivery of ther...
Polymerization-induced self-assembly (PISA) is an easily applied synthetic technique for the prepara...
One of the holy grails in cancer detection and therapy is to simultaneously image and deliver drugs ...
ABSTRACT: Liposomes are commonly used to deliver drugs and contrast agents to their target site in a...
Liposomes are commonly used to deliver drugs and contrast agents to their target site in a controlle...
Micro- and nanoparticles are designed to deliver drugs and contrast agents to their target site in a...
BACKGROUND: Liposomal-based gadolinium (Gd) nanoparticles have elicited significant interest for use...
Liposomes, loaded with gadolinium (Gd) ions using different membrane-incorporated chelating lipids a...
Gadolinium-based contrast agents for imaging of cellular or subcellular compartments by clinical mag...
Encapsulation of anticancer drugs in triggerable nanocarriers can beneficially modify pharmacokineti...
The field of molecular imaging aims to visualize and quantify (patho)physiological processes at the ...
The aim of this study was to prepare aptamer-modified liposomes loaded with gadolinium (Gd) to enhan...
Novel gadolinium-loaded liposomes guided by GBI-10 aptamer were developed and evaluated in vitro to ...
The magnetic resonance imaging (MRI) performance of two liposome formulations incorporating amphiphi...
Liposomes are spherical, self-closed structures formed by lipid bilayers that can encapsulate drugs ...
Nanoparticles are the hallmark of nanomedicine, proving clinically relevant for the delivery of ther...
Polymerization-induced self-assembly (PISA) is an easily applied synthetic technique for the prepara...
One of the holy grails in cancer detection and therapy is to simultaneously image and deliver drugs ...
ABSTRACT: Liposomes are commonly used to deliver drugs and contrast agents to their target site in a...
Liposomes are commonly used to deliver drugs and contrast agents to their target site in a controlle...
Micro- and nanoparticles are designed to deliver drugs and contrast agents to their target site in a...
BACKGROUND: Liposomal-based gadolinium (Gd) nanoparticles have elicited significant interest for use...
Liposomes, loaded with gadolinium (Gd) ions using different membrane-incorporated chelating lipids a...
Gadolinium-based contrast agents for imaging of cellular or subcellular compartments by clinical mag...
Encapsulation of anticancer drugs in triggerable nanocarriers can beneficially modify pharmacokineti...
The field of molecular imaging aims to visualize and quantify (patho)physiological processes at the ...
The aim of this study was to prepare aptamer-modified liposomes loaded with gadolinium (Gd) to enhan...
Novel gadolinium-loaded liposomes guided by GBI-10 aptamer were developed and evaluated in vitro to ...
The magnetic resonance imaging (MRI) performance of two liposome formulations incorporating amphiphi...
Liposomes are spherical, self-closed structures formed by lipid bilayers that can encapsulate drugs ...
Nanoparticles are the hallmark of nanomedicine, proving clinically relevant for the delivery of ther...
Polymerization-induced self-assembly (PISA) is an easily applied synthetic technique for the prepara...
One of the holy grails in cancer detection and therapy is to simultaneously image and deliver drugs ...