This work aims at learning how the size of gold nanocarriers influences the transport of DNA-alkylating antitumoral drugs. For this purpose, we devised conjugates of mercaptoethylmitomycin C (MEMC), a DNA alkylating agent, with gold nanoparticles of different sizes (2, 5, and 14 nm), and studied how size affects drug cytotoxicity, tumor penetrability, cellular uptake, and intracellular localization using two-dimensional (2D) and three-dimensional (3D) cell models. We show that only small, 2 nm, nanoparticles can transport MEMC efficiently to the cell nucleus, whereas MEMC cell uptake is much lower when delivered by these small nanoparticles than with the larger ones. 3D cellular models showed that smaller nanoparticles can transport MEMC to...
Physiochemical changes, including size, are known to affect gold nanoparticle cellular internalizati...
Gold nanoparticles have been widely explored as cancer therapeutics and diagnostic agents in recent ...
Understanding the principles governing the design of nanoparticles for tumor targeting is essential ...
This work aims at learning how the size of gold nanocarriers influences the transport of DNA-alkylat...
Hanmei Bao,1,2 Qing Zhang,2,3 Hui Xu,1,2 Zhao Yan1,2 1Department of Clinical Pharmacology, 2Key Lab...
The aim of this study was to determine the size-dependent penetration ability of gold nanoparticles ...
Understandings of how biomolecules modify nanoparticles in a biological context and how these exchan...
Nanoparticles have great potential as controllable drug delivery vehicles because of their size and ...
Nanoparticles have great potential as controllable drug delivery vehicles because of their size and ...
Nanoparticles (NPs) can be used to overcome the side effects of poor distribution of anticancer drug...
We investigated the intracellular uptake of different sized and shaped colloidal gold nanoparticles....
In the field of oncology, a lot of improvements in nanotechnology creates support for better diagnos...
Gold nanoparticles (AuNP) are excellent platforms for the delivery of chemotherapy drugs. They are b...
This work demonstrated that ultrasmall gold nanoparticles (AuNPs) smaller than 10 nm display unique ...
<div><p>Nanoparticles (NPs) have emerged as a potential tool to improve cancer treatment. Among the ...
Physiochemical changes, including size, are known to affect gold nanoparticle cellular internalizati...
Gold nanoparticles have been widely explored as cancer therapeutics and diagnostic agents in recent ...
Understanding the principles governing the design of nanoparticles for tumor targeting is essential ...
This work aims at learning how the size of gold nanocarriers influences the transport of DNA-alkylat...
Hanmei Bao,1,2 Qing Zhang,2,3 Hui Xu,1,2 Zhao Yan1,2 1Department of Clinical Pharmacology, 2Key Lab...
The aim of this study was to determine the size-dependent penetration ability of gold nanoparticles ...
Understandings of how biomolecules modify nanoparticles in a biological context and how these exchan...
Nanoparticles have great potential as controllable drug delivery vehicles because of their size and ...
Nanoparticles have great potential as controllable drug delivery vehicles because of their size and ...
Nanoparticles (NPs) can be used to overcome the side effects of poor distribution of anticancer drug...
We investigated the intracellular uptake of different sized and shaped colloidal gold nanoparticles....
In the field of oncology, a lot of improvements in nanotechnology creates support for better diagnos...
Gold nanoparticles (AuNP) are excellent platforms for the delivery of chemotherapy drugs. They are b...
This work demonstrated that ultrasmall gold nanoparticles (AuNPs) smaller than 10 nm display unique ...
<div><p>Nanoparticles (NPs) have emerged as a potential tool to improve cancer treatment. Among the ...
Physiochemical changes, including size, are known to affect gold nanoparticle cellular internalizati...
Gold nanoparticles have been widely explored as cancer therapeutics and diagnostic agents in recent ...
Understanding the principles governing the design of nanoparticles for tumor targeting is essential ...