Molecular Targets for Intracranial Aneurysm Treatment

Hunter Hutchinson1, Rogina Rezk1, Mariam Farag1

  • 1College of Medicine, University of Florida, Gainesville, FL 32610, USA.

Insights

Intracranial aneurysms (IAs) involve complex molecular pathways driving formation and rupture. Understanding these mechanisms, including inflammation and matrix remodeling, is key to developing new therapies for IA treatment.

Area of Science:

  • Cerebrovascular pathology
  • Molecular mechanisms of disease

Background:

  • Intracranial aneurysms (IAs) are common, potentially deadly cerebrovascular conditions.
  • Endovascular coiling is a common treatment but has high recurrence rates.
  • New therapies are needed to reduce IA growth, rupture, and associated mortality.

Purpose of the Study:

  • To explore the molecular mechanisms driving intracranial aneurysm (IA) formation, progression, and rupture.
  • To identify potential molecular targets for novel IA therapies.

Main Methods:

  • Review of molecular pathways involved in IA pathogenesis.
  • Analysis of the roles of hemodynamic shear stress, inflammation, and extracellular matrix remodeling.
  • Examination of key molecular players: DAMPs, NF-κB, IL-6, MCP-1, IL-8, MMPs, and TIMPs.

Main Results:

  • Hemodynamic shear stress initiates IA formation via DAMPs, inflammation, and matrix remodeling.
  • NF-κB and IL-6 promote inflammation, while MCP-1 and IL-8 attract immune cells.
  • An elevated MMP/TIMP ratio characterizes IA progression, indicating active remodeling.

Conclusions:

  • Understanding the molecular underpinnings of IA development is crucial.
  • Targeting inflammatory and matrix remodeling pathways offers potential for new IA therapies.
  • Further research into these molecular mechanisms will guide the development of effective treatments to reduce IA morbidity and mortality.

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