3D printing has emerged as a rapid and cost-efficient manufacturing technique to enable the fabrication of bespoke, complex prototypes. If the technology is to have a significant impact in biomedical applications, such as drug discovery and molecular diagnostics, the devices produced must be biologically compatible to enable their use with established reference assays and protocols. In this work we demonstrate that we can adapt the Fish Embryo Test (FET) as a new method to quantify the toxicity of 3D printed microfluidic devices. We assessed the biocompatibility of four commercially available 3D printeing polymers (VisiJetCrystal EX200, Watershed 11122XC, Fototec SLA 7150 Clear and ABSplus P-430), through the observation of key developmenta...
Zebrafish (Danio rerio) embryo assays have recently come into the spotlight as convenient experiment...
Embargo until 28 June 2021Nanotechnology and use of nanomaterials (NMs) improve life quality, econom...
Standard toxicological assays using the zebrafish model system evaluate lethality and teratogenicity...
3D printing has emerged as a rapid and cost-efficient manufacturing technique to enable the fabricat...
3D printing is gaining popularity by providing a tool for fast, cost-effective, and highly customiza...
Implementations of Lab-on-a-Chip technologies for in-situ analysis of small model organisms and embr...
The capacity of 3D printing (3DP) technologies to initiate speedy polymerization of solvent-free res...
The fish embryo toxicity (FET) biotest has gained popularity as one of the alternative approaches to...
Zebrafish (Danio rerio) has recently emerged as a powerful experimental model in drug discovery and ...
To meet the demands of political, ethical and scientific pressures on animal testing, research into ...
The fish embryo toxicity (FET) biotest has gained popularity as one of the alternative approaches to...
Drug discovery screenings performed on zebrafish embryos mirror with a high level of accuracy. The t...
Nanoparticles are increasingly used for biomedical purposes. Many different diagnostic and therapeut...
The fish embryo toxicity test (FET) is currently one of the most advocated animal alternative tests ...
The increasing use of zebrafish larvae for biomedical research applications is resulting in versatil...
Zebrafish (Danio rerio) embryo assays have recently come into the spotlight as convenient experiment...
Embargo until 28 June 2021Nanotechnology and use of nanomaterials (NMs) improve life quality, econom...
Standard toxicological assays using the zebrafish model system evaluate lethality and teratogenicity...
3D printing has emerged as a rapid and cost-efficient manufacturing technique to enable the fabricat...
3D printing is gaining popularity by providing a tool for fast, cost-effective, and highly customiza...
Implementations of Lab-on-a-Chip technologies for in-situ analysis of small model organisms and embr...
The capacity of 3D printing (3DP) technologies to initiate speedy polymerization of solvent-free res...
The fish embryo toxicity (FET) biotest has gained popularity as one of the alternative approaches to...
Zebrafish (Danio rerio) has recently emerged as a powerful experimental model in drug discovery and ...
To meet the demands of political, ethical and scientific pressures on animal testing, research into ...
The fish embryo toxicity (FET) biotest has gained popularity as one of the alternative approaches to...
Drug discovery screenings performed on zebrafish embryos mirror with a high level of accuracy. The t...
Nanoparticles are increasingly used for biomedical purposes. Many different diagnostic and therapeut...
The fish embryo toxicity test (FET) is currently one of the most advocated animal alternative tests ...
The increasing use of zebrafish larvae for biomedical research applications is resulting in versatil...
Zebrafish (Danio rerio) embryo assays have recently come into the spotlight as convenient experiment...
Embargo until 28 June 2021Nanotechnology and use of nanomaterials (NMs) improve life quality, econom...
Standard toxicological assays using the zebrafish model system evaluate lethality and teratogenicity...