X-ray screening reveals two promising SARS-CoV-2 drug candidates
Using a high-brilliance X-ray lightsource and protein crystallography, researchers have identified two drugs that inhibit the main protease of SARS-CoV-2.
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Using a high-brilliance X-ray lightsource and protein crystallography, researchers have identified two drugs that inhibit the main protease of SARS-CoV-2.
Researchers have elucidated the 3D structure of the Taspase 1 enzyme, known to be involved in a range of cancers.
Researchers have created a single-celled synthetic organism able to grow and divide that could be used to produce drugs and detect disease.
Researchers have used imaging mass cytometry to analyse the cellular landscape of diseased lung tissue in severe COVID-19, revealing insights into the disease.
The isolation of microbial DNA is a key prerequisite for determining the microbiome profile of each body habitat.
Researchers have imaged the entire Survival Motor Neuron complex using X-ray diffraction analysis, among other techniques.
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Insights into the interaction between telaprevir and the SARS-CoV-2 main protease could aid in future COVID-19 drug design, say scientists.
Having revealed the activation mechanism and functional states of A2AR signalling, a GPCR, researchers say this could aid drug discovery.
Working with RNA requires rigorous nuclease contamination controls in place. Stock up on Nuclease-Free tubes tips and buffers #Back2Lab
A large number of nanorobots in the bladders of mice have been visualised to reveal their movement and behaviour.
Achieve intact SARS-CoV-2 virus enrichment products. You only need a centrifuge, and the intact virus is enriched in less than 3 hours with very little hands-on time.
A team has developed nanolitre cell assays on droplet microarrays to enable pharmacodynamic monitoring in live cells.
An artificial intelligence platform has been created to enable tens of thousands of microscopy images to be generated in an hour.
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