Hotspots and trends of microglia in ischemic stroke: A bibliometric analysis from 1998 to 2024

Li Ma1, Jiang-Peng Cao2,3, Jia-Shan Li1

  • 1Research Center of Experimental Acupuncture Science, Tianjin University of Traditional Chinese Medicine, Tianjin, China.

Medicine
|May 23, 2026
PubMed
Abstract

Insights

This bibliometric analysis reveals a significant global research increase in microglia and ischemic stroke (IS). Key emerging frontiers include microglia polarization, inflammasomes, and extracellular vesicles, guiding future neuroinflammation research.

Area of Science:

  • Neuroscience
  • Immunology
  • Biomedical Research

Background:

  • Ischemic stroke (IS) is a leading cause of global disability, with microglia-driven neuroinflammation playing a critical role.
  • Understanding the research landscape of microglia in IS is crucial for advancing therapeutic strategies.
  • A quantitative bibliometric analysis was lacking to map this field's development and frontiers.

Purpose of the Study:

  • To conduct a comprehensive bibliometric analysis of microglia research in ischemic stroke.
  • To elucidate historical trends, identify current research frontiers, and propose future research directions.
  • To quantitatively assess publication trends, collaboration networks, and conceptual framework evolution.

Main Methods:

  • Systematic literature search in the Web of Science Core Collection using IS and microglia keywords.
  • Inclusion of 5709 publications (articles and reviews) after applying exclusion criteria.
  • Utilized Bibliometrix R, VOSviewer, and CiteSpace for advanced bibliometric analysis.

Main Results:

  • Exponential growth in publications (14.6% CAGR) over the last 5 years, indicating strong research momentum.
  • China and the United States are the leading contributors; Journal of Neuroinflammation and Stroke are key publications.
  • Emerging research frontiers include microglia polarization, NLR family inflammasomes, and extracellular vesicles.

Conclusions:

  • Identified three key research trajectories: microglia activation mechanisms (NLRP3 pathways), phenotypic modulation in stroke recovery, and roles in angiogenesis/immunomodulation.
  • Highlighted novel research themes such as the gut-microbiota-brain axis and mitochondrial transfer.
  • Provided a strategic framework for prioritizing future research in neuroinflammation and neurorepair post-stroke.