• Mashup Score: 4

    Summary Drug repositioning represents a cost- and time-efficient strategy for drug development. Artificial intelligence-based algorithms have been applied in drug repositioning by predicting drug-target interactions in an efficient and high throughput manner. Here, we present a workflow of in silico drug repositioning for host-based antivirals using specially defined…

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    • Online in @STARProtocols: Dr. Teng Fei and colleagues @davidliwei, describing #insilico drug repositioning for host-based #antivirals and the use of artificial intelligence-based algorithms to predict drug-target interaction: https://t.co/GUyr8thFvq https://t.co/egr3ti2Y5u

  • Mashup Score: 5
    Issue: Cell - 3 year(s) ago

    CommentaryPreviewsTracking self-performance in the prefrontal cortex: It’s layeredShannon S. Schiereck,Christine M. ConstantinopleIn this issue of Cell, Spellman and colleagues record and manipulate the activity of neurons in the medial prefrontal cortex of mice performing a task in which they must pay attention to different stimuli. They show that this brain region is important for monitoring…

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    • #AAI2021 check out @CellCellPress’s recent special issue Biology of an Uncertain Future. #tissue-specific immunity, food #allergy, maternal antibodies, #ethics, #asthma, #vaccines, #antivirals, #immunotherapy, and much more! https://t.co/uQQcbNdTYO #immunology https://t.co/BiWDXBJmAL

  • Mashup Score: 0

    As viruses emerge and re-emerge, identifying antivirals that target conserved and functionally important pathways across pathogens will be important to support other therapeutic measures such as antibodies and vaccines.

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    • Review in @CellCellPress! Fudan University scientists reviewed the development of #antivirals with common targets or the same #viral function, to provide clues for development of antivirals for future epidemics. https://t.co/UunBhYJfv8 https://t.co/z3NbvGeEzp