Engineered nanoparticles (NPs) such as TiO2 and ZnO are key UV-blocking ingredients in sunscreens. While toxicological risks of applying these materials are generally regarded as low due to minute levels of penetration across the skin, our understanding of the physiological influence of potential cell-nanoparticle interactions in the skin is limited. This study plugs the current knowledge gap by profiling TiO2 and ZnO NP interaction with primary human epidermal keratinocytes, based on potential levels of NP penetration across the skin. Specific attention was given to profiling real-life relevant levels of exposure, and accurate dosimetry measurements in vitro. ZnO was expectedly more cytotoxic than TiO2. Although both NPs generated Reactive...
Understanding the cellular responses to nano zinc oxide particles (Nano-ZnO) (<100 nm) is key to its...
Understanding the mechanisms of cell-nanomaterial interactions is vital in harnessing the potential ...
The long-term health risks of nanoparticles remain poorly understood, which is a serious concern giv...
The application of nanomaterials in cosmetic, sunscreens, and topical products is growing rapidly, e...
The application of nanomaterials in cosmetic, sunscreens, and topical products is growing rapidly, e...
Nanotoxicology encompasses the study of the toxicity of nanoparticles (NPs) in order to better under...
Nanotoxicology encompasses the study of the toxicity of nanoparticles (NPs) in order to better under...
Nanotoxicology encapsulates studying the interactions nanomaterials can have with biological systems...
Nanomaterials have been receiving a lot of attention in recent years and are undergoing intense safe...
Nanomaterials have been receiving a lot of attention in recent years and are undergoing intense safe...
Zinc oxide (ZnO) and Titanium oxide (TiO₂) are two chemical compound with very wide industrial and c...
The long-term health risks of nanoparticles remain poorly understood, which is a serious concern giv...
The long-term health risks of nanoparticles remain poorly understood, which is a serious concern giv...
Understanding the cellular responses to nano zinc oxide particles (Nano-ZnO) (<100 nm) is key to its...
Background: Interactions between nanoparticles and cells are now the focus of a fast-growing area of...
Understanding the cellular responses to nano zinc oxide particles (Nano-ZnO) (<100 nm) is key to its...
Understanding the mechanisms of cell-nanomaterial interactions is vital in harnessing the potential ...
The long-term health risks of nanoparticles remain poorly understood, which is a serious concern giv...
The application of nanomaterials in cosmetic, sunscreens, and topical products is growing rapidly, e...
The application of nanomaterials in cosmetic, sunscreens, and topical products is growing rapidly, e...
Nanotoxicology encompasses the study of the toxicity of nanoparticles (NPs) in order to better under...
Nanotoxicology encompasses the study of the toxicity of nanoparticles (NPs) in order to better under...
Nanotoxicology encapsulates studying the interactions nanomaterials can have with biological systems...
Nanomaterials have been receiving a lot of attention in recent years and are undergoing intense safe...
Nanomaterials have been receiving a lot of attention in recent years and are undergoing intense safe...
Zinc oxide (ZnO) and Titanium oxide (TiO₂) are two chemical compound with very wide industrial and c...
The long-term health risks of nanoparticles remain poorly understood, which is a serious concern giv...
The long-term health risks of nanoparticles remain poorly understood, which is a serious concern giv...
Understanding the cellular responses to nano zinc oxide particles (Nano-ZnO) (<100 nm) is key to its...
Background: Interactions between nanoparticles and cells are now the focus of a fast-growing area of...
Understanding the cellular responses to nano zinc oxide particles (Nano-ZnO) (<100 nm) is key to its...
Understanding the mechanisms of cell-nanomaterial interactions is vital in harnessing the potential ...
The long-term health risks of nanoparticles remain poorly understood, which is a serious concern giv...