Ubiquitous chemicals may interfere with the thyroid system that is essential in the development and physiology of vertebrates. We applied a surface plasmon resonance (SPR) biosensor-based screening method for the fast screening of chemicals with thyroxine (T4) transport disrupting activity. Two inhibition assays using the main thyroid hormone transport proteins, T4 binding globulin (TBG) and transthyretin (TTR), in combination with a T4-coated biosensor chip were optimized and automated for screening chemical libraries. The transport protein-based biosensor assays were rapid, high throughput and bioeffect-related. A library of 62 chemicals including the natural hormones, polychlorinated biphenyls (PCBs), polybrominated diphenylethers (PBDEs...
Thyroid hormone (TH) disrupting compounds are potentially important environmental contaminants due t...
Thyroid hormone (TH) disrupting compounds are potentially important environmental contaminants due t...
A number of chemicals released into the environment share structural similarity to the thyroid hormo...
Ubiquitous chemicals may interfere with the thyroid system that is essential in the development and ...
Ubiquitous chemicals may interfere with the thyroid system that is essential in the development and ...
Novel surface plasmon resonance-based biosensor assays for the bioeffect-related screening of chemic...
Novel surface plasmon resonance-based biosensor assays for the bioeffect-related screening of chemic...
Novel surface plasmon resonance-based biosensor assays for the bioeffect-related screening of chemic...
Polybrominated diphenyl ethers (PBDEs) have been shown to disrupt thyroid hormone (TH) functions on ...
For the analysis of thyroid transporter ligands, a triple bioaffinity mass spectrometry (BioMS) conc...
For the analysis of thyroid transporter ligands, a triple bioaffinity mass spectrometry (BioMS) conc...
We developed a thyroid testing panel to assess endocrine disrupting chemicals (EDCs) capacities to b...
Polychlorinated biphenyls (PCBs) and polybrominated diphenyl-ethers (PBDEs) are metabolized into hyd...
Thyroid hormone (TH) disrupting compounds are potentially important environmental contaminants due t...
Thyroid hormone (TH) disrupting compounds are potentially important environmental contaminants due t...
Thyroid hormone (TH) disrupting compounds are potentially important environmental contaminants due t...
Thyroid hormone (TH) disrupting compounds are potentially important environmental contaminants due t...
A number of chemicals released into the environment share structural similarity to the thyroid hormo...
Ubiquitous chemicals may interfere with the thyroid system that is essential in the development and ...
Ubiquitous chemicals may interfere with the thyroid system that is essential in the development and ...
Novel surface plasmon resonance-based biosensor assays for the bioeffect-related screening of chemic...
Novel surface plasmon resonance-based biosensor assays for the bioeffect-related screening of chemic...
Novel surface plasmon resonance-based biosensor assays for the bioeffect-related screening of chemic...
Polybrominated diphenyl ethers (PBDEs) have been shown to disrupt thyroid hormone (TH) functions on ...
For the analysis of thyroid transporter ligands, a triple bioaffinity mass spectrometry (BioMS) conc...
For the analysis of thyroid transporter ligands, a triple bioaffinity mass spectrometry (BioMS) conc...
We developed a thyroid testing panel to assess endocrine disrupting chemicals (EDCs) capacities to b...
Polychlorinated biphenyls (PCBs) and polybrominated diphenyl-ethers (PBDEs) are metabolized into hyd...
Thyroid hormone (TH) disrupting compounds are potentially important environmental contaminants due t...
Thyroid hormone (TH) disrupting compounds are potentially important environmental contaminants due t...
Thyroid hormone (TH) disrupting compounds are potentially important environmental contaminants due t...
Thyroid hormone (TH) disrupting compounds are potentially important environmental contaminants due t...
A number of chemicals released into the environment share structural similarity to the thyroid hormo...