The use of silica nanoparticles for their cellular uptake capability opens up new fields in biomedical research. Among the toxicological effects associated with their internalization, silica nanoparticles induce apoptosis that has been recently reported as a biochemical cue required for muscle regeneration. To assess whether silica nanoparticles could affect muscle regeneration, we used the C2C12 muscle cell line to study the uptake of fluorescently labeled NPs and their cellular trafficking over a long period. Using inhibitors of endocytosis, we determined that the NP uptake was an energy-dependent process mainly involving macropinocytosis and clathrin-mediated pathway. NPs were eventually clustered in lysosomal structures. Myoblasts conta...
Silica nanoparticles have an interesting potential in drug delivery, gene therapy and molecular imag...
<p>The silica nanoparticles led to the rupture and even disappearance of the mitochondrial cristae o...
Silica nanoparticles (NP) is one of the most commonly used nanomaterials with potential health hazar...
The use of silica nanoparticles for their cellular uptake capability opens up new fields in biomedic...
The use of nanoparticles as drug carriers in the field of skeletal muscle diseases has been poorly a...
The biocompatibility of nanoparticles is the prerequisite for their applications in biomedicine but ...
Human mesenchymal stem cell (hMSC)-based therapy is an emerging resource in regenerative medicine. D...
[[abstract]]The biocompatibility of nanoparticles is the prerequisite for their applications in biom...
AIM: To elucidate whether different cytokinetic features (i.e., presence or absence of mitotic acti...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
The term “nanosilica” refers to materials containing ultrafine particles. They have gained a rapid i...
Aim: To assess functional effects of silica nanoparticles (SiO2-NPs) on humanmesenchymal stem cell (...
he skeleton is a dynamic organ that undergoes continuous regeneration. The deposition of mineral is ...
We report here in vitro evaluation of cellular nanoparticle uptake, cytotoxic effect and autophagy a...
Diseases of the cardiac system caused by silicon dioxide exposure have captured wide public attentio...
Silica nanoparticles have an interesting potential in drug delivery, gene therapy and molecular imag...
<p>The silica nanoparticles led to the rupture and even disappearance of the mitochondrial cristae o...
Silica nanoparticles (NP) is one of the most commonly used nanomaterials with potential health hazar...
The use of silica nanoparticles for their cellular uptake capability opens up new fields in biomedic...
The use of nanoparticles as drug carriers in the field of skeletal muscle diseases has been poorly a...
The biocompatibility of nanoparticles is the prerequisite for their applications in biomedicine but ...
Human mesenchymal stem cell (hMSC)-based therapy is an emerging resource in regenerative medicine. D...
[[abstract]]The biocompatibility of nanoparticles is the prerequisite for their applications in biom...
AIM: To elucidate whether different cytokinetic features (i.e., presence or absence of mitotic acti...
Introduction: Since most biologically active macromolecules are natural nanostructures, operating in...
The term “nanosilica” refers to materials containing ultrafine particles. They have gained a rapid i...
Aim: To assess functional effects of silica nanoparticles (SiO2-NPs) on humanmesenchymal stem cell (...
he skeleton is a dynamic organ that undergoes continuous regeneration. The deposition of mineral is ...
We report here in vitro evaluation of cellular nanoparticle uptake, cytotoxic effect and autophagy a...
Diseases of the cardiac system caused by silicon dioxide exposure have captured wide public attentio...
Silica nanoparticles have an interesting potential in drug delivery, gene therapy and molecular imag...
<p>The silica nanoparticles led to the rupture and even disappearance of the mitochondrial cristae o...
Silica nanoparticles (NP) is one of the most commonly used nanomaterials with potential health hazar...