Let-7g* and miR-98 Reduce Stroke-Induced Production of Proinflammatory Cytokines in Mouse Brain

David L Bernstein1, Slava Rom1,2

  • 1Department of Pathology and Laboratory Medicine, Lewis Katz School of Medicine, Temple University, Philadelphia, PA, United States.

Insights

let-7 microRNAs (miRs) protect the brain after stroke by regulating immune responses and reducing inflammation. Restoring let-7 miRs improves neurovascular function and recovery, offering a potential therapeutic avenue.

Area of Science:

  • Neuroscience
  • Immunology
  • Molecular Biology

Background:

  • Stroke is a leading cause of death with limited treatment options.
  • Ischemic stroke damages the blood-brain barrier (BBB), allowing peripheral immune cells to infiltrate the brain and worsen injury.
  • let-7 microRNAs (miRs) are crucial for regulating immune responses at the BBB after stroke, with decreased expression linked to stroke severity.

Purpose of the Study:

  • To investigate the specific mechanisms by which let-7 miRs (miR-98 and let-7g*) impact cytokine targeting and release following ischemic stroke.
  • To evaluate the effects of miR-98 and let-7g* on neurovascular perfusion and cell-specific changes in the neurovascular space.

Main Methods:

  • Analysis of cytokine mRNA targeting by miR-98 and let-7g*.
  • Measurement of cytokine release post-ischemic stroke.
  • Assessment of neurovascular perfusion and cell-specific changes.

Main Results:

  • miR-98 was found to specifically target and attenuate Interferon-induced protein 10 (IP-10) mRNA.
  • let-7g* specifically targeted and attenuated Interleukin-8 (IL-8) mRNA, and also impacted CCL2 and CCL5.
  • let-7g* significantly improved neurovascular perfusion after ischemic stroke.

Conclusions:

  • let-7 miRs play a critical role in mediating endothelial-immune reactions within the BBB following ischemic stroke.
  • Restoration of let-7 miRs, specifically miR-98 and let-7g*, offers neuroprotection and enhances recovery by modulating cytokine profiles and improving perfusion.

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