Many unique chemical compounds and nanomaterials are being developed, and each one requires a considerable range of in vitro and/or in vivo toxicity screening in order to evaluate their safety. The current methodology of in vitro toxicological screening on cells is based on well-plate assays that require time-consuming manual handling or expensive automation to gather enough meaningful toxicology data. Cost reduction; access to faster, more comprehensive toxicity data; and a robust platform capable of quantitative testing, will be essential in evaluating the safety of new chemicals and nanomaterials, and, at the same time, in securing the confidence of regulators and end-users. Microfluidic chips offer an alternative platform for toxicity s...
Nanomaterials are defined as materials with at least one dimension of 100 nm or less. Their small si...
The number of newly engineered nanomaterials is vastly increasing along with their applications. Des...
The number of newly engineered nanomaterials is vastly increasing along with their applications. Des...
Many unique chemical compounds and nanomaterials are being developed, and each one requires a consid...
Microfluidic technology is a valuable tool for realizing more in vitro models capturing cellular and...
Microfluidic technology is a valuable tool for realizing more in vitro models capturing cellular and...
Microfluidic technology is a valuable tool for realizing more in vitro models capturing cellular and...
The last decades of biological, toxicological, and pharmacological research have deeply changed the ...
With the growing numbers of nanomaterials (NMs), there is a great demand for rapid and reliable ways...
A microfluidic chip has been developed to enable the screening of chemicals for environmental toxici...
Increasing useof nanomaterials in consumer products and biomedical applications creates the possibil...
The recent emergence of antimicrobial resistance has become a major concern for worldwide policy mak...
Cytotoxicity screening is important for the identification of different toxins and the quantificatio...
To meet the demands of political, ethical and scientific pressures on animal testing, research into ...
In vitro cytotoxicity testing is essential in the pharmaceutical and environmental industry to study...
Nanomaterials are defined as materials with at least one dimension of 100 nm or less. Their small si...
The number of newly engineered nanomaterials is vastly increasing along with their applications. Des...
The number of newly engineered nanomaterials is vastly increasing along with their applications. Des...
Many unique chemical compounds and nanomaterials are being developed, and each one requires a consid...
Microfluidic technology is a valuable tool for realizing more in vitro models capturing cellular and...
Microfluidic technology is a valuable tool for realizing more in vitro models capturing cellular and...
Microfluidic technology is a valuable tool for realizing more in vitro models capturing cellular and...
The last decades of biological, toxicological, and pharmacological research have deeply changed the ...
With the growing numbers of nanomaterials (NMs), there is a great demand for rapid and reliable ways...
A microfluidic chip has been developed to enable the screening of chemicals for environmental toxici...
Increasing useof nanomaterials in consumer products and biomedical applications creates the possibil...
The recent emergence of antimicrobial resistance has become a major concern for worldwide policy mak...
Cytotoxicity screening is important for the identification of different toxins and the quantificatio...
To meet the demands of political, ethical and scientific pressures on animal testing, research into ...
In vitro cytotoxicity testing is essential in the pharmaceutical and environmental industry to study...
Nanomaterials are defined as materials with at least one dimension of 100 nm or less. Their small si...
The number of newly engineered nanomaterials is vastly increasing along with their applications. Des...
The number of newly engineered nanomaterials is vastly increasing along with their applications. Des...