Before placing a new nanoform (NF) on the market, its potential adverse effects must be evaluated. This may e.g. be done via hazard and risk assessment. Grouping and read-across of NFs is a possible strategy to reduce resource consumption, maximising the use of existing data for assessment of NFs. The GRACIOUS project provides a framework in which possible grouping and read-across for NFs is mainly based on an evaluation of their similarity. The impact of NFs on human health and the environment depends strongly on the concentration of the NF and its physicochemical properties, such as chemical composition, size distribution, shape, etc. Hence, knowledge of the most relevant physicochemical properties is essential information for comparing s...
According to legislation grouping can streamline data generation for the risk assessment of substanc...
Physicochemical properties of chemicals affect their exposure, toxicokinetics/fate and hazard, and f...
Physicochemical properties of chemicals affect their exposure, toxicokinetics/fate and hazard, and f...
According to some legislation grouping can streamline data gap filling for the hazard assessment of ...
The risk of each nanoform (NF) of the same substance cannot be assumed to be the same, as they may v...
The use of non-testing strategies like read-across in the hazard assessment of chemicals and nanomat...
The physico-chemical properties of manufactured nanomaterials (NMs) can be fine-tuned to obtain diff...
Grouping of substances is a method used to streamline hazard and risk assessment. Assessment of simi...
The physico-chemical properties of manufactured nanomaterials (NMs) can be fine-tuned to obtain diff...
AbstractThe grouping of substances serves to streamline testing for regulatory purposes. General gro...
A substance may have one or more nanoforms, defined for regulatory purposes under EU chemicals legis...
Introduction: Here, we describe the generation of hypotheses for grouping nanoforms (NFs) after inha...
There is an urgent need to establish a fundamental understanding of the mechanisms of nanomaterial (...
Physicochemical properties of chemicals affect their exposure, toxicokinetics/fate and hazard, and f...
According to legislation grouping can streamline data generation for the risk assessment of substanc...
Physicochemical properties of chemicals affect their exposure, toxicokinetics/fate and hazard, and f...
Physicochemical properties of chemicals affect their exposure, toxicokinetics/fate and hazard, and f...
According to some legislation grouping can streamline data gap filling for the hazard assessment of ...
The risk of each nanoform (NF) of the same substance cannot be assumed to be the same, as they may v...
The use of non-testing strategies like read-across in the hazard assessment of chemicals and nanomat...
The physico-chemical properties of manufactured nanomaterials (NMs) can be fine-tuned to obtain diff...
Grouping of substances is a method used to streamline hazard and risk assessment. Assessment of simi...
The physico-chemical properties of manufactured nanomaterials (NMs) can be fine-tuned to obtain diff...
AbstractThe grouping of substances serves to streamline testing for regulatory purposes. General gro...
A substance may have one or more nanoforms, defined for regulatory purposes under EU chemicals legis...
Introduction: Here, we describe the generation of hypotheses for grouping nanoforms (NFs) after inha...
There is an urgent need to establish a fundamental understanding of the mechanisms of nanomaterial (...
Physicochemical properties of chemicals affect their exposure, toxicokinetics/fate and hazard, and f...
According to legislation grouping can streamline data generation for the risk assessment of substanc...
Physicochemical properties of chemicals affect their exposure, toxicokinetics/fate and hazard, and f...
Physicochemical properties of chemicals affect their exposure, toxicokinetics/fate and hazard, and f...