PCBs bind to environmental particles; however, potential toxicity exhibited by such complexes is not well understood. The aim of the present study is to study the hypothesis that assembling onto nanoparticles can influence the PCB153-induced brain endothelial toxicity via interaction with the toll-like receptor 4 (TLR4). To address this hypothesis, TLR4-deficient and wild type control mice (males, 10 week old) were exposed to PCB153 (5 ng/g body weight) bound to chemically inert silica nanoparticles (PCB153-NPs), PCB153 alone, silica nanoparticles (NPs; diameter, 20 nm), or vehicle. Selected animals were also subjected to 40 min ischemia, followed by a 24 h reperfusion. As compared to exposure to PCB153 alone, treatment with PCB153-NP poten...
<p>Conuent brain endothelial cell cultures were treated with PCB153-NPs (PCB153, 1.6 µM; NPs, 2.08×1...
Liming Xu,1,2,* Mo Dan,1,* Anliang Shao,1 Xiang Cheng,1,3 Cuiping Zhang,4 Robert A Yokel,5 Taro Take...
<p>Mice were treated as in <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.006...
PCBs bind to environmental particles; however, potential toxicity exhibited by such complexes is not...
PCBs bind to environmental particles; however, potential toxicity exhibited by such complexes is not...
Part of the Molecular Biology Commons, and the Nutrition Commons This Article is brought to you for ...
<p>Binding of PCB153 to silica nanoparticles activates the TLR4 and triggers its interaction with do...
<p>Mice were exposed to PCB153-NPs (5 ng PCB153/g body weight bound to 1.04×10<sup>5</sup> silica NP...
BACKGROUND: Silver nanoparticles (Ag-NPs) can enter the brain and induce neurotoxicity. However, the...
BACKGROUND: Silver nanoparticles (Ag-NPs) can enter the brain and induce neurotoxicity. However, the...
Nanoparticles (NPs) are increasingly being commercialized for use in biomedicine. NP toxicity follow...
<p>(A) Confluent brain endothelial cells were treated with PCB153-NPs for the indicated time. Cellul...
The blood-brain barrier (BBB) is a dynamic interface, mainly consisting of highly specialized brain ...
Nanomedicine is a constantly expanding field, facilitating and improving diagnosis and treatment of ...
Nanoparticle properties, such as small size relative to large highly modifiable surface area, offer ...
<p>Conuent brain endothelial cell cultures were treated with PCB153-NPs (PCB153, 1.6 µM; NPs, 2.08×1...
Liming Xu,1,2,* Mo Dan,1,* Anliang Shao,1 Xiang Cheng,1,3 Cuiping Zhang,4 Robert A Yokel,5 Taro Take...
<p>Mice were treated as in <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.006...
PCBs bind to environmental particles; however, potential toxicity exhibited by such complexes is not...
PCBs bind to environmental particles; however, potential toxicity exhibited by such complexes is not...
Part of the Molecular Biology Commons, and the Nutrition Commons This Article is brought to you for ...
<p>Binding of PCB153 to silica nanoparticles activates the TLR4 and triggers its interaction with do...
<p>Mice were exposed to PCB153-NPs (5 ng PCB153/g body weight bound to 1.04×10<sup>5</sup> silica NP...
BACKGROUND: Silver nanoparticles (Ag-NPs) can enter the brain and induce neurotoxicity. However, the...
BACKGROUND: Silver nanoparticles (Ag-NPs) can enter the brain and induce neurotoxicity. However, the...
Nanoparticles (NPs) are increasingly being commercialized for use in biomedicine. NP toxicity follow...
<p>(A) Confluent brain endothelial cells were treated with PCB153-NPs for the indicated time. Cellul...
The blood-brain barrier (BBB) is a dynamic interface, mainly consisting of highly specialized brain ...
Nanomedicine is a constantly expanding field, facilitating and improving diagnosis and treatment of ...
Nanoparticle properties, such as small size relative to large highly modifiable surface area, offer ...
<p>Conuent brain endothelial cell cultures were treated with PCB153-NPs (PCB153, 1.6 µM; NPs, 2.08×1...
Liming Xu,1,2,* Mo Dan,1,* Anliang Shao,1 Xiang Cheng,1,3 Cuiping Zhang,4 Robert A Yokel,5 Taro Take...
<p>Mice were treated as in <a href="http://www.plosone.org/article/info:doi/10.1371/journal.pone.006...