Technique to synthesise anticancer compound FE399 developed
A team has successfully created a new method to artificially produce FE399, a compound known to induce apoptosis in cancer cells.
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A team has successfully created a new method to artificially produce FE399, a compound known to induce apoptosis in cancer cells.
Exploring large databases and selecting compounds of interest can be extremely time-consuming for researchers. Here, Sacha Javor, Horst Flotow and Jingwen Shi discuss a novel chemoinformatics approach for drug discovery.
The novel peripheral serotonin antagonist, based on Parkinson’s drug pimavanserin, increased glucose tolerance and lean body mass in a murine model of non-alcoholic fatty liver disease (NAFLD).
Included in this in-depth focus are articles on how high-throughput screening can be used to identify lead compounds, using chemoinformatics as a map to guide drug discovery and a novel in vitro model to screen potential treatments for non-alcoholic fatty liver disease (NAFLD).
Researchers are utilising computers to aid in their investigations into a COVID-19 treatment. Here, we highlight three studies using simulations, calculations and AI to identify a drug to combat the coronavirus.
Using mass spectrometry, researchers have shown how human cells are changed by infection from SARS-CoV-2, allowing the team to identify drug targets to prevent viral reproduction.
A series of three new assays to screen for drug compounds or proteins that combat the COVID-19 coronavirus has been developed.
A study has shown that cannabidiol (CBD) slows cancer cell growth and is toxic to human glioblastoma cell lines, presenting a possible treatment.
The antibody targets a cell receptor in blood vessels and slowed breast and lung cancer growth as well as metastasis in murine models.
Researchers investigating telomere dieases such as dyskeratosis congenita have found lead compounds that reverse cellular ageing in mouse models of the condition.
Ali Shilatifard’s article explains how investment in institutes performing molecular research is essential, as it is the foundation for all attempts to combat COVID-19 and other future pandemics.
Researchers have found a lead compound which they say inhibits SARS-CoV-2 viral replication and demonstrates good pharmacokinetic activity in vivo.
High-throughput screening of thousands of compounds has revealed several candidates, including lead compound ebselen, with the potential for treating COVID-19.
The enterprise revealed that it has made its COVID-19 Drug Repurposing Database open-access to aid in the search for an effective therapeutic.
Ursolic acid was shown to halt the progression of chronic multiple sclerosis (MS) and reverse the damage already caused in a mouse model of the disease.