International audienceManufactured nanomaterials (NMs) are increasingly used in a wide range of industrial applications leading to a constant increase in the market size of nano-enabled products. The increased production and use of NMs are constantly raising concerns among different stakeholder groups with regard to their effects on human and environmental health. Currently, nanosafety hazard assessment is still widely performed using in vivo (animal) models, however the development of robust and regulatory relevant strategies is required to prioritize and/or reduce animal testing. Adverse outcome pathways (AOPs) are a structured representation of biological events that start from a molecular initiating event (MIE) leading to an adverse ou...
Nanotechnology introduces a new field that requires novel approaches and methods for hazard and risk...
There has been a conceptual shift in toxicological studies from describing what happens to explainin...
In this document, we describe a tool for prediction of molecular Initiating events (MIE) which are t...
Manufactured nanomaterials (NMs) are increasingly used in a wide range of industrial applications le...
Manufactured nanomaterials (NMs) are increasingly used in a wide range of industrial applications le...
Nanomaterials (NMs) have the potential to improve novel and useful wide applications in electronics,...
Nanomaterials (NMs) have important and useful applications in chemical industry, electronics, pharma...
Toxicity testing and regulation of advanced materials at the nanoscale, i.e. nanosafety, is challeng...
An Adverse Outcome Pathway (AOP) is a conceptual construct that describes existing knowledge on the ...
AbstractAn Adverse Outcome Pathway (AOP) is a conceptual construct that describes existing knowledge...
The ever-growing production of nano-enabled products has generated the need for dedicated risk asses...
Much of the current innovation in advanced materials is occurring at the nanoscale, specifically in ...
The Adverse Outcome Pathway (AOP) framework plays a crucial role in the paradigm shift of toxicity t...
The Adverse Outcome Pathway (AOP) framework plays a crucial role in the paradigm shift of toxicity t...
Nanosafety has been a subject of scrupulous indagation attributed to the ambiguity in terms of harmo...
Nanotechnology introduces a new field that requires novel approaches and methods for hazard and risk...
There has been a conceptual shift in toxicological studies from describing what happens to explainin...
In this document, we describe a tool for prediction of molecular Initiating events (MIE) which are t...
Manufactured nanomaterials (NMs) are increasingly used in a wide range of industrial applications le...
Manufactured nanomaterials (NMs) are increasingly used in a wide range of industrial applications le...
Nanomaterials (NMs) have the potential to improve novel and useful wide applications in electronics,...
Nanomaterials (NMs) have important and useful applications in chemical industry, electronics, pharma...
Toxicity testing and regulation of advanced materials at the nanoscale, i.e. nanosafety, is challeng...
An Adverse Outcome Pathway (AOP) is a conceptual construct that describes existing knowledge on the ...
AbstractAn Adverse Outcome Pathway (AOP) is a conceptual construct that describes existing knowledge...
The ever-growing production of nano-enabled products has generated the need for dedicated risk asses...
Much of the current innovation in advanced materials is occurring at the nanoscale, specifically in ...
The Adverse Outcome Pathway (AOP) framework plays a crucial role in the paradigm shift of toxicity t...
The Adverse Outcome Pathway (AOP) framework plays a crucial role in the paradigm shift of toxicity t...
Nanosafety has been a subject of scrupulous indagation attributed to the ambiguity in terms of harmo...
Nanotechnology introduces a new field that requires novel approaches and methods for hazard and risk...
There has been a conceptual shift in toxicological studies from describing what happens to explainin...
In this document, we describe a tool for prediction of molecular Initiating events (MIE) which are t...