We investigated how the shape of polymeric vesicles, made by the exact same material, impacts the replication activity and metabolic state of both cancer and non-cancer cell types. First, we isolated discrete geometrical structures (spheres and tubes) from a heterogeneous sample using density-gradient centrifugation. Then, we characterized the cellular internalization and the kinetics of uptake of both types of polymersomes in different cell types (either cancer or non-cancer cells). We also investigated the cellular metabolic response as a function of the shape of the structures internalized and discovered that tubular vesicles induce a significant decrease in the replication activity of cancer cells compared to spherical vesicles. We rela...
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...
Intrigued and inspired by the intricacy of natural architectures which display various morphologies,...
We investigated how the shape of polymeric vesicles, made by the exact same material, impacts the re...
We investigated how the shape of polymeric vesicles, made by the exact same material, impacts the re...
We investigated how the shape of polymeric vesicles, made by the exact same material, impacts the re...
We investigated how the shape of polymeric vesicles, made by the exact same material, impacts the re...
The shape of nanoparticles has emerged as a potentially important factor in the design of drug carri...
Cellular uptake of nanoparticles plays a crucial role in their biomedical applications. Despite abun...
Enhanced cellular uptake and efficient penetration of nanocarriers inside tumors is paramount to suc...
Enhanced cellular uptake and efficient penetration of nanocarriers inside tumors is paramount to suc...
In vivo, mammalian cells proliferate within 3D environments consisting of numerous microcavities and...
This study is motivated by understanding and controlling the key physical properties underlying inte...
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...
Intrigued and inspired by the intricacy of natural architectures which display various morphologies,...
We investigated how the shape of polymeric vesicles, made by the exact same material, impacts the re...
We investigated how the shape of polymeric vesicles, made by the exact same material, impacts the re...
We investigated how the shape of polymeric vesicles, made by the exact same material, impacts the re...
We investigated how the shape of polymeric vesicles, made by the exact same material, impacts the re...
The shape of nanoparticles has emerged as a potentially important factor in the design of drug carri...
Cellular uptake of nanoparticles plays a crucial role in their biomedical applications. Despite abun...
Enhanced cellular uptake and efficient penetration of nanocarriers inside tumors is paramount to suc...
Enhanced cellular uptake and efficient penetration of nanocarriers inside tumors is paramount to suc...
In vivo, mammalian cells proliferate within 3D environments consisting of numerous microcavities and...
This study is motivated by understanding and controlling the key physical properties underlying inte...
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...
Intrigued and inspired by the intricacy of natural architectures which display various morphologies,...