Stroke: Molecular mechanisms and therapies: Update on recent developments

Faheem Shehjar1, Briana Maktabi1, Zainab A Rahman1

  • 1Department of Medicinal and Biological Chemistry, College of Pharmacy and Pharmaceutical Sciences, Toledo, OH, USA.

Insights

This study explores novel stroke treatments, including the promising drug DM199 and cell-based therapies, aiming to improve outcomes for stroke survivors. Research focuses on understanding stroke mechanisms to develop effective therapeutic strategies.

Area of Science:

  • Neurology
  • Pharmacology
  • Regenerative Medicine

Background:

  • Stroke is a leading cause of death and disability globally, with significant economic impact.
  • Complex pathophysiology involves atherosclerosis, thrombus, embolus, excitotoxicity, oxidative stress, and neuroinflammation.
  • Current treatments like tPA have limitations, necessitating exploration of advanced therapeutic strategies.

Purpose of the Study:

  • To review current and emerging therapeutic strategies for stroke.
  • To highlight the potential of DM199 and cell-based therapies in stroke treatment.
  • To understand the molecular mechanisms underlying stroke for targeted drug development.

Main Methods:

  • Literature review of stroke pathophysiology and therapeutic interventions.
  • Analysis of emerging treatments including DM199 and various stem cell therapies.
  • Discussion of molecular mechanisms and risk factors associated with stroke.

Main Results:

  • DM199, a synthetic KLK1, shows potential for stroke treatment with fewer side effects than tPA.
  • Cell-based therapies (Neural Stem Cells, HSCs, HUCB-MSCs) are under investigation for stroke recovery.
  • Existing therapies like GABA agonists and receptor inhibitors show promise but require combination strategies.

Conclusions:

  • Developing effective stroke therapies requires understanding complex molecular mechanisms and risk factors.
  • DM199 and cell-based therapies represent promising avenues for improving stroke patient outcomes.
  • Continued research is crucial to minimize post-stroke damage and restore neurological function.