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Synapse
February 23, 202610 citationsOpen Access

Alzheimer’s Disease as a Disorder of Neuroimmune Dysregulation

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GAGonzálo Emiliano Aranda-AbreuFRFausto Rojas-DuránMHMaría Elena Hernández-Aguilar

Key Points

  • To explore the role of neuroinflammation in Alzheimer's Disease and its implications for treatment.
  • Analysis of molecular pathology related to neuroinflammation in Alzheimer's Disease.
  • Assessment of neuroinflammatory biomarkers for disease activity and treatment response.
  • Evaluation of immune responses, including synaptic pruning and inflammatory processes.
  • Chronic neuroinflammation is identified as key in cognitive decline in Alzheimer's Disease.
  • Neuroinflammatory responses correlate with cognitive impairment, more than neuronal loss.
  • Therapeutic strategies targeting immunomodulation may improve neuroimmune homeostasis in Alzheimer's.

Abstract

Alzheimer’s disease (AD) is traditionally defined by Amyloid-β (Aβ) plaques and tau neurofibrillary tangles, yet these proteinopathies alone fail to explain disease heterogeneity, progression, and cognitive decline. Emerging evidence identifies chronic neuroinflammation as a central integrator that converts molecular pathology into synaptic failure and neurodegeneration. In this context, Aβ acts as a danger-associated molecular pattern that activates microglial and astrocytic immune programs through receptors such as TREM2, TLRs, and RAGE, leading to inflammasome activation, cytokine release, and oxidative stress. These responses pathologically re-engage developmental complement pathways (C1q–C3–CR3), driving excessive synaptic pruning that correlates more closely with cognitive impairment than neuronal loss. Reactive astrocytes further amplify dysfunction by impairing glutamate and potassium homeostasis, promoting excitotoxic and metabolic stress, while inflammatory glia facilitate prion-like tau propagation via extracellular vesicles. Concurrent neurovascular inflammation disrupts blood–brain barrier integrity and cerebral perfusion, reinforcing immune-metabolic failure. Importantly, neuroinflammatory biomarkers (GFAP, sTREM2, YKL-40, cytokines, complement, and TSPO-PET) provide dynamic readouts of disease activity and therapeutic response. Together, these findings position AD as a disorder of failed immune resolution and support precision immunomodulatory and pro-resolving therapies aimed at restoring neuroimmune homeostasis rather than merely removing protein aggregates.

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Cite This Study

Aranda-Abreu et al. (2026) studied this question.

synapsesocial.com/papers/699ba07072792ae9fd8700cfhttps://doi.org/10.3390/neurolint18020037
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