AI Designs Novel Antibiotics That Work Against Drug-Resistant Superbugs
MIT researchers used generative AI to create entirely new antibiotics effective against MRSA and gonorrhea in animal models.
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MIT researchers used generative AI to create entirely new antibiotics effective against MRSA and gonorrhea in animal models.
New review reveals how protective pain signals transform into chronic suffering through neural, immune, and psychological changes.
Study reveals how gut microbes transform T cells into potent autoimmune drivers that migrate to joints and promote arthritis.
Study reveals tryptophan metabolites from gut bacteria correlate with brain activity patterns and autism severity in youth.
Shotgun sequencing reveals specific gut microbes linked to amyloid burden and tau pathology in mild cognitive impairment patients.
Scientists develop scBPS tool to identify which human cells interact with specific gut microbes, revealing new therapeutic targets.
New review reveals how gut microbe chemicals directly reprogram tumor immune responses through multiple pathways.
New research reveals how mitochondria regulate multiple cell death pathways and trigger inflammation, offering targets for cancer therapy.
Scientists review breakthrough methods for transferring healthy mitochondria into damaged cells to restore cellular energy and combat aging.
New nanotechnology selectively destroys cancer cell mitochondria, making tumors more vulnerable to T cell attacks across multiple cancer types.
Scientists develop LOCL-TL to map where proteins are made inside cells, discovering two distinct strategies for mitochondrial protein synthesis.
New research reveals how LARP4 protein causes T cells to malfunction in tumors by disrupting cellular energy production.