New strategies to characterize the effects of engineered nanomaterials (ENMs) based on omics technologies are emerging. However, given the intricate interplay of multiple regulatory layers, the study of a single molecular species in exposed biological systems might not allow the needed granularity to successfully identify the pathways of toxicity (PoT) and, hence, portraying adverse outcome pathways (AOPs). Moreover, the intrinsic diversity of different cell types composing the exposed organs and tissues in living organisms poses a problem when transferring in vivo experimentation into cell-based in vitro systems. To overcome these limitations, we have profiled genome-wide DNA methylation, mRNA and microRNA expression in three human cell li...
Toxicogenomics approaches are increasingly used to gain mechanistic insight into the toxicity of eng...
Understanding the complex molecular alterations related to engineered nanomaterial (ENM) exposure is...
In the last years, “omics” approaches have been applied to study the toxicity of nanomaterials (NM) ...
New strategies to characterize the effects of engineered nanomaterials (ENMs) based on omics technol...
We present data derived from an exposure experiment in which three cell-lines representative of cell...
The varied transcriptomic response to nanoparticles has hampered the understanding of the mechanism ...
Despite considerable efforts, the properties that drive the cytotoxicity of engineered nanomaterials...
The use of omics is gaining importance in the field of nanoecotoxicology; an increasing number of st...
Nanoparticles are being explored for biomedical applications in diagnostics and therapeutics. Howeve...
A rapid increase of new nanomaterial products poses new challenges for their risk assessment. Curren...
Understanding toxicity pathways of engineered nanomaterials (ENM) has recently been brought forward ...
Despite considerable efforts, the properties that drive the cytotoxicity of engineered nanomaterials...
There is an urgent need to apply effective, data-driven approaches to reliably predict engineered na...
open access articleAbstract BACKGROUND: It is well established that toxicological evaluation of en...
Toxicogenomics opens novel opportunities for hazard assessment by utilizing computational methods to...
Toxicogenomics approaches are increasingly used to gain mechanistic insight into the toxicity of eng...
Understanding the complex molecular alterations related to engineered nanomaterial (ENM) exposure is...
In the last years, “omics” approaches have been applied to study the toxicity of nanomaterials (NM) ...
New strategies to characterize the effects of engineered nanomaterials (ENMs) based on omics technol...
We present data derived from an exposure experiment in which three cell-lines representative of cell...
The varied transcriptomic response to nanoparticles has hampered the understanding of the mechanism ...
Despite considerable efforts, the properties that drive the cytotoxicity of engineered nanomaterials...
The use of omics is gaining importance in the field of nanoecotoxicology; an increasing number of st...
Nanoparticles are being explored for biomedical applications in diagnostics and therapeutics. Howeve...
A rapid increase of new nanomaterial products poses new challenges for their risk assessment. Curren...
Understanding toxicity pathways of engineered nanomaterials (ENM) has recently been brought forward ...
Despite considerable efforts, the properties that drive the cytotoxicity of engineered nanomaterials...
There is an urgent need to apply effective, data-driven approaches to reliably predict engineered na...
open access articleAbstract BACKGROUND: It is well established that toxicological evaluation of en...
Toxicogenomics opens novel opportunities for hazard assessment by utilizing computational methods to...
Toxicogenomics approaches are increasingly used to gain mechanistic insight into the toxicity of eng...
Understanding the complex molecular alterations related to engineered nanomaterial (ENM) exposure is...
In the last years, “omics” approaches have been applied to study the toxicity of nanomaterials (NM) ...