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    "headline": "A Protein Pathway Blunted Neuron Damage After Injury",
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    "dek": "Preclinical work links STUB1, SIRT6 and NRF2 to stronger antioxidant defenses after spinal-cord injury.",
    "summary": "Preclinical work links STUB1, SIRT6 and NRF2 to stronger antioxidant defenses after spinal-cord injury.",
    "body_text": "Researchers report that STUB1 stabilized SIRT6 through K63-linked ubiquitination, supporting NRF2 antioxidant signaling after spinal-cord injury. In mice, activating the pathway reduced ferroptosis and axon damage and improved motor recovery. The study identifies a preclinical target; it does not establish a human therapy or prove that the same intervention will be safe in patients.",
    "why_it_matters": "Preclinical work links STUB1, SIRT6 and NRF2 to stronger antioxidant defenses after spinal-cord injury.",
    "limitations": [
      "In mice, activating the pathway reduced ferroptosis and axon damage and improved motor recovery.",
      "The study identifies a preclinical target; it does not establish a human therapy or prove that the same intervention will be safe in patients."
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    "tags": [
      "spinal cord injury",
      "STUB1",
      "SIRT6",
      "ferroptosis"
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      "title": "Burns & Trauma via Newswise: STUB1 pathway after spinal-cord injury",
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    "title": "A Protein Pathway Blunted Neuron Damage After Injury",
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