The use of nanoparticles in medicine is sometimes hampered by their potential to activate immune cells, eliciting inflammation or allergy. We investigated whether magnetic nanoparticles (MNPs) or biomimetic magnetic nanoparticles (BMNPs) affect relevant activities of human monocytes. We found that the nanoparticles neither elicited the production of pro-inflammatory mediators IL-6 and TNFα by resting monocytes (when BMNP dose < 300 μg/mL) nor enhanced their secretion induced by R848, a molecule engaging virus-recognizing receptors, or bacterial lipopolysaccharide (LPS). MNPs and BMNPs neither induced the generation of reactive oxygen species (ROS), nor affected the ROS production elicited by the NADPH oxidase activator phorbol myristate ace...
INTRODUCTION: Stable biocompatible magnetic nanoparticles, conveniently grafted with affinity ligand...
monocytes to phagocyte iron-oxide nanoparticles in vitro.Human monocytes were labeled with four dif...
Understanding the modes of interaction between human monocytes/macrophages and engineered nanopartic...
[[abstract]]Magnetic nanoparticles (MNPs) are few of the nanoparticles used clinically. When MNPs ar...
Magnetic nanoparticles (MNPs) are few of the nanoparticles used clinically. When MNPs are delivered ...
Magnetic nanoparticles (MNPs) are few of the nanoparticles used clinically. When MNPs are delivered ...
Understanding how nanoparticles may affect immune responses is an essential prerequisite to developi...
Understanding how nanoparticles may affect immune responses is an essential prerequisite to developi...
A major drawback of nanoparticles (NPs) for biomedical applications is their preferential phagocytos...
Co-stimulation of the immune system to more than one agent concomitantly is very common in real life...
Susann Grosse,1 Jørgen Stenvik,1,2 Asbjørn M Nilsen1 1Department of Cancer Research a...
A major drawback of nanoparticles (NPs) for biomedical applications is their preferential phagocytos...
We assessed whether concomitant exposure of human monocytes to bacterial agents and different engine...
To explore the capacity of human CD1⁺CD16⁺⁺ and CD14⁺⁺CD16⁻ monocytes to phagocyte iron-oxide nanopa...
et al.The possibility that nanomaterials could perturb the normal course of an inflammatory response...
INTRODUCTION: Stable biocompatible magnetic nanoparticles, conveniently grafted with affinity ligand...
monocytes to phagocyte iron-oxide nanoparticles in vitro.Human monocytes were labeled with four dif...
Understanding the modes of interaction between human monocytes/macrophages and engineered nanopartic...
[[abstract]]Magnetic nanoparticles (MNPs) are few of the nanoparticles used clinically. When MNPs ar...
Magnetic nanoparticles (MNPs) are few of the nanoparticles used clinically. When MNPs are delivered ...
Magnetic nanoparticles (MNPs) are few of the nanoparticles used clinically. When MNPs are delivered ...
Understanding how nanoparticles may affect immune responses is an essential prerequisite to developi...
Understanding how nanoparticles may affect immune responses is an essential prerequisite to developi...
A major drawback of nanoparticles (NPs) for biomedical applications is their preferential phagocytos...
Co-stimulation of the immune system to more than one agent concomitantly is very common in real life...
Susann Grosse,1 Jørgen Stenvik,1,2 Asbjørn M Nilsen1 1Department of Cancer Research a...
A major drawback of nanoparticles (NPs) for biomedical applications is their preferential phagocytos...
We assessed whether concomitant exposure of human monocytes to bacterial agents and different engine...
To explore the capacity of human CD1⁺CD16⁺⁺ and CD14⁺⁺CD16⁻ monocytes to phagocyte iron-oxide nanopa...
et al.The possibility that nanomaterials could perturb the normal course of an inflammatory response...
INTRODUCTION: Stable biocompatible magnetic nanoparticles, conveniently grafted with affinity ligand...
monocytes to phagocyte iron-oxide nanoparticles in vitro.Human monocytes were labeled with four dif...
Understanding the modes of interaction between human monocytes/macrophages and engineered nanopartic...