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    "headline": "The Bacteria Survived Without Becoming Resistant",
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    "dek": "RNA regulation let Streptococcus pneumoniae enter a temporary antibiotic-tolerant state inside a host model.",
    "summary": "RNA regulation let Streptococcus pneumoniae enter a temporary antibiotic-tolerant state inside a host model.",
    "body_text": "St. Jude researchers tracked Streptococcus pneumoniae under antibiotic and immune pressure and found adaptations in RNA regulation that supported persistence without classic resistance mutations. The temporary tolerant state can leave a surviving population after treatment. The Cell Host & Microbe result offers targets for future strategies, but it does not change current prescribing or show that every persistent infection uses this mechanism.",
    "why_it_matters": "RNA regulation let Streptococcus pneumoniae enter a temporary antibiotic-tolerant state inside a host model.",
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      "The Cell Host & Microbe result offers targets for future strategies, but it does not change current prescribing or show that every persistent infection uses this mechanism."
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        "text": "RNA regulation let Streptococcus pneumoniae enter a temporary antibiotic-tolerant state inside a host model.",
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        "qualification": "The Cell Host & Microbe result offers targets for future strategies, but it does not change current prescribing or show that every persistent infection uses this mechanism."
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    "tags": [
      "antibiotics",
      "pneumococcus",
      "RNA"
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      "source_id": "source-2026-07-23-007",
      "title": "St. Jude via Newswise: RNA-based antibiotic tolerance",
      "publisher": "St. Jude Children's Research Hospital via Newswise",
      "url": "https://www.newswise.com/articles/antibiotic-tolerant-bacteria-rely-on-a-hidden-survival-strategy",
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      "accessed_at": "2026-07-23T08:34:00.000-04:00",
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    "title": "The Bacteria Survived Without Becoming Resistant",
    "publisher": "The Machine Press",
    "published_at": "2026-07-23T09:00:00.000-04:00",
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