Harnessing neuromodulation to target microglial activity in neurodegenerative diseases

Venkata Chaitanya Chirumamilla1, Muthuraman Muthuraman2

  • 1The Zickler Family Prenatal Pediatrics Institute, Children's National Hospital, Washington, DC, United States.

Advances in Immunology
|August 21, 2026
PubMed

Insights

Neuromodulation may offer a novel therapeutic strategy for neurodegenerative diseases by targeting microglia, the brain's immune cells. This approach aims to restore neuroimmune homeostasis and improve brain health.

Area of Science:

  • Neuroscience
  • Immunology
  • Pharmacology

Background:

  • Neurodegenerative diseases involve disrupted neuroimmune homeostasis, with microglia playing a key role.
  • Microglia are involved in synaptic remodeling and neural circuit regulation, with functions varying by brain region and disease stage.
  • Neuromodulation influences neural activity and downstream immune signaling in the central nervous system.

Purpose of the Study:

  • To present a mechanistic framework for using neuromodulation to modulate microglial activity in neurodegenerative diseases.
  • To integrate understanding of microglial heterogeneity, neuromodulation, and biomarkers for therapeutic targeting.
  • To position microglia as measurable and biologically grounded therapeutic targets.

Main Methods:

  • Synthesizing experimental findings from animal models and translational human studies.
  • Examining activity-dependent neuron-microglia interactions.
  • Analyzing modulation of inflammatory signaling pathways.

Main Results:

  • Neuromodulatory interventions can influence microglial state, morphology, and function.
  • Evidence suggests neuron-microglia interactions are key to neuromodulation's effects on microglia.
  • The framework integrates microglial heterogeneity and neuromodulation mechanisms.

Conclusions:

  • Neuromodulation presents a promising strategy for targeting microglial activity in neurodegenerative diseases.
  • This approach offers a pathway to restore neuroimmune balance and potentially treat neurodegeneration.
  • Further research integrating biomarkers and addressing translational challenges is needed.

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