Polymersome nanoparticles (PMs) are attractive candidates for spatio-temporal controlled delivery of therapeutic agents. Although many studies have addressed cellular uptake of solid nanoparticles, there is very little data available on intracellular release of molecules encapsulated in membranous carriers, such as polymersomes. Here, we addressed this by developing a quantitative assay based on the hydrophilic dye, fluorescein. Fluorescein was encapsulated stably in PMs of mean diameter 85 nm, with minimal leakage after sustained dialysis. No fluorescence was detectable from fluorescein PMs, indicating quenching. Following incubation of L929 cells with fluorescein PMs, there was a gradual increase in intracellular fluorescence, indicating ...
Nanoparticle (NPs) delivery systems in vivo promises to overcome many obstacles associated with the ...
Polymersomes have the potential to be applied in targeted alpha radionuclide therapy, while in addit...
AbstractThis study is motivated by understanding and controlling the key physical properties underly...
Nanoparticles have the potential to increase the efficacy of anticancer drugs whilst reducing off-ta...
Nanoparticles have the potential to increase the efficacy of anticancer drugs whilst reducing off-ta...
Nanoparticles have the potential to increase the efficacy of anticancer drugs whilst reducing off-ta...
Nanoparticles have the potential to increase the efficacy of anticancer drugs whilst reducing off-ta...
Nanoparticles have the potential to increase the efficacy of anticancer drugs whilst reducing off-ta...
Nanoparticles have the potential to increase the efficacy of anticancer drugs whilst reducing off-ta...
This study is motivated by understanding and controlling the key physical properties underlying inte...
Central to understanding how nanoscale objects interact with living matter is the need for reproduci...
UNLABELLED: Central to understanding how nanoscale objects interact with living matter is the need f...
AbstractThis study is motivated by understanding and controlling the key physical properties underly...
Central to understanding how nanoscale objects interact with living matter is the need for reproduci...
Nanoparticle (NPs) delivery systems in vivo promises to overcome many obstacles associated with the ...
Nanoparticle (NPs) delivery systems in vivo promises to overcome many obstacles associated with the ...
Polymersomes have the potential to be applied in targeted alpha radionuclide therapy, while in addit...
AbstractThis study is motivated by understanding and controlling the key physical properties underly...
Nanoparticles have the potential to increase the efficacy of anticancer drugs whilst reducing off-ta...
Nanoparticles have the potential to increase the efficacy of anticancer drugs whilst reducing off-ta...
Nanoparticles have the potential to increase the efficacy of anticancer drugs whilst reducing off-ta...
Nanoparticles have the potential to increase the efficacy of anticancer drugs whilst reducing off-ta...
Nanoparticles have the potential to increase the efficacy of anticancer drugs whilst reducing off-ta...
Nanoparticles have the potential to increase the efficacy of anticancer drugs whilst reducing off-ta...
This study is motivated by understanding and controlling the key physical properties underlying inte...
Central to understanding how nanoscale objects interact with living matter is the need for reproduci...
UNLABELLED: Central to understanding how nanoscale objects interact with living matter is the need f...
AbstractThis study is motivated by understanding and controlling the key physical properties underly...
Central to understanding how nanoscale objects interact with living matter is the need for reproduci...
Nanoparticle (NPs) delivery systems in vivo promises to overcome many obstacles associated with the ...
Nanoparticle (NPs) delivery systems in vivo promises to overcome many obstacles associated with the ...
Polymersomes have the potential to be applied in targeted alpha radionuclide therapy, while in addit...
AbstractThis study is motivated by understanding and controlling the key physical properties underly...