International audienceBackground: The widespread use of nano-biomaterials (NBMs) has increased the chance of human exposure. Although ingestion is one of the major routes of exposure to NBMs, it is not thoroughly studied to date. NBMs are expected to be dramatically modified following the transit into the oral-gastric-intestinal (OGI) tract. How these transformations affect their interaction with intestinal cells is still poorly understood. NBMs of different chemical nature—lipid-surfactant nanoparticles (LSNPs), carbon nanoparticles (CNPs), surface modified Fe3O4 nanoparticles (FNPs) and hydroxyapatite nanoparticles (HNPs)—were treated in a simulated human digestive system (SHDS) and then characterised. The biological effects of SHDS-treat...
Nanotechnology provides the food industry with new ways to modulate various aspects of food. Hence, ...
Nanotechnology provides the food industry with new ways to modulate various aspects of food. Hence, ...
Titanium dioxide nanomaterials (TiO2 NMs) have a high potential for ingestion by human populations, ...
International audienceBackground: The widespread use of nano-biomaterials (NBMs) has increased the c...
The gastrointestinal tract represents one of primary routes of entry for many nanomaterials. Their s...
<p>Oral exposure to nanomaterials is a current concern, asking for innovative biological test system...
Oral exposure to nanomaterials is a current concern, asking for innovative biological test systems t...
Nano-scale formulations are being developed to improve the delivery of orally administered medicines...
The use of nanoparticles (e.g. titanium dioxide) in commercial food products to modify some properti...
Many natural chemicals in food are in the nanometer size range, and the selective uptake of nutrient...
International audienceBackground: Nanoparticles (NPs) found in the human diet mainly originate from ...
The technology based on manufactured nanomaterials (NMs) has been pointed as key enabling technology...
The conditions of the gastrointestinal tract may change the physicochemical properties of nanopartic...
Food nanoemulsions are known as very effective and excellent carriers for both lipophilic and hydrop...
The epithelial lining of the gastrointestinal tract (GIT) acts as a barrier to uptake of potentially...
Nanotechnology provides the food industry with new ways to modulate various aspects of food. Hence, ...
Nanotechnology provides the food industry with new ways to modulate various aspects of food. Hence, ...
Titanium dioxide nanomaterials (TiO2 NMs) have a high potential for ingestion by human populations, ...
International audienceBackground: The widespread use of nano-biomaterials (NBMs) has increased the c...
The gastrointestinal tract represents one of primary routes of entry for many nanomaterials. Their s...
<p>Oral exposure to nanomaterials is a current concern, asking for innovative biological test system...
Oral exposure to nanomaterials is a current concern, asking for innovative biological test systems t...
Nano-scale formulations are being developed to improve the delivery of orally administered medicines...
The use of nanoparticles (e.g. titanium dioxide) in commercial food products to modify some properti...
Many natural chemicals in food are in the nanometer size range, and the selective uptake of nutrient...
International audienceBackground: Nanoparticles (NPs) found in the human diet mainly originate from ...
The technology based on manufactured nanomaterials (NMs) has been pointed as key enabling technology...
The conditions of the gastrointestinal tract may change the physicochemical properties of nanopartic...
Food nanoemulsions are known as very effective and excellent carriers for both lipophilic and hydrop...
The epithelial lining of the gastrointestinal tract (GIT) acts as a barrier to uptake of potentially...
Nanotechnology provides the food industry with new ways to modulate various aspects of food. Hence, ...
Nanotechnology provides the food industry with new ways to modulate various aspects of food. Hence, ...
Titanium dioxide nanomaterials (TiO2 NMs) have a high potential for ingestion by human populations, ...