Jul 2026· Journal of Clinical Technology and Theory· 0 citations
TL;DR
This review synthesises current understanding of neuroinflammatory pathogenesis in AD, with emphasis on Microglial polarisation (M1/M2), Disease-Associated Microglia (DAM), TREM2 signalling, and reactive astrocyte conversion.
Abstract
Alzheimer's Disease (AD) is a multifactorial neurodegenerative disorder affecting over 55 million individuals worldwide, characterised by Amyloid beta (Aβ) plaques, neurofibrillary tangles, and sustained neuroinflammation. While amyloid- and tau-targeted therapies have dominated therapeutic research, their limited clinical efficacy has intensified focus on neuroinflammation as a central and modifiable disease mechanism. This review synthesises current understanding of neuroinflammatory pathogenesis in AD, with emphasis on Microglial polarisation (M1/M2), Disease-Associated Microglia (DAM), TREM2 signalling, and reactive astrocyte conversion. This paper further evaluates pharmacological strategies targeting these pathways, including cytokine inhibitors (TNF-α and IL-6 blockade), microglial modulators (CSF-1R inhibitors, TREM2 agonistic antibodies), and emerging innate immune targets (cGAS-STING pathway inhibitors, and S-palmitoylation inhibitors). Despite strong preclinical rationale, clinical translation has been impeded by Blood-Brain Barrier (BBB) penetration challenges, intervention timing, peripheral immunosuppression risks, and the biological redundancy of neuroimmune networks. Future therapeutic success will likely require combination approaches, CNS-targeted delivery systems, and biomarker-guided patient stratification to fully exploit the therapeutic potential of neuroinflammation-directed strategies in AD.
New knowledge about the protective and detrimental aspects of neuroinflammation in AD and PD is summarized, providing an analysis on these developing prospects for targeted interventions toward slowing or stopping neurodegeneration.
R. Kumar, Kamaljeet, Sourabh Kosey· InflammoPharmacology· 0 citations
The dual and stage‐dependent roles of microglia and astrocytes are explored, discussion of blood–brain barrier dysfunction and peripheral immune infiltration as underappreciated pathogenic contributors are expanded, and emerging evidence linking neuroinflammation specifically to tau pathology is integrated.
S. Papelian· International Journal of Dev...· 0 citations
It is illustrated how endogenous pathological triggers, such as amyloid-β (Aβ) peptide, hyperphosphorylated tau, and α-synuclein, activate glial cells, contributing to chronic neuroinflammation that exacerbates neurodegeneration.
This review consolidates current evidence regarding the mechanisms by which polyphenols modulate microglial phenotypic balance and polarization states and examines advanced delivery strategies designed to enhance their therapeutic efficacy in neuroinflammatory disorders.
The protective and deleterious roles of NETs are investigated and how this knowledge may reveal new therapeutic strategies to modulate neurodegenerative diseases and preserve neural integrity are investigated, offering valuable insights for potential applications in clinical practice.