ArticleMolecular biomedicine2021
α-Linolenic acid induces clearance of Tau seeds via Actin-remodeling in Microglia.
Article in Molecular biomedicine, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 10 papers.
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Who cites it
10 citing papers in PubMed, 42 citations in OpenAlex.
- Tau-mediated Mechanisms in Alzheimer's Disease Pathogenesis.Molecular neurobiology · 2026Review
- Photo-Excited Dyes: Emerging Technique Against Tau Protein Aggregation.Methods in molecular biology (Clifton, N.J.) · 2024Article
- Actin Polymerization Defects Induce Mitochondrial Dysfunction in Cellular Models of Nemaline Myopathies.Antioxidants (Basel, Switzerland) · 2023Article
- Metabolic regulation of microglial phagocytosis: Implications for Alzheimer's disease therapeutics.Translational neurodegeneration · 2023Review
- Microglia degrade Tau oligomers deposit via purinergic P2Y12-associated podosome and filopodia formation and induce chemotaxis.Cell & bioscience · 2023Article
- Impact of Nut Consumption on Cognition across the Lifespan.Nutrients · 2023Review
- Microglia: Friend and foe in tauopathy.Progress in neurobiology · 2022Review
- Photodynamic treatment modulates various GTPase and cellular signalling pathways in Tauopathy.Small GTPases · 2022Article
- α- Linolenic acid modulates phagocytosis and endosomal pathways of extracellular Tau in microglia.Cell adhesion & migration · 2021Article
- G-protein coupled receptor, PI3K and Rho signaling pathways regulate the cascades of Tau and amyloid-β in Alzheimer's disease.Molecular biomedicine · 2021Review
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Authors and funding
2 authors at 1 institution in 1 country.
Funding
Abstract
Alzheimer's disease (AD) is known by characteristic features, extracellular burden of amyloid-β and intracellular neuronal Tau. Microglia, the innate immune cell of the brain has the ability to clear the burden of accumulated proteins via phagocytosis. But the excessive proinflammatory cytokine production, altered cellular signaling and actin remodeling hampers the process of migration and phagocytosis by microglia. Actin remodeling is necessary to initiate the chemotactic migration of microglia towards the target and engulf it. The formation of lamellipodia, filopodia, membrane ruffling and rapid turnover of F-actin is necessary to sense the extracellular target by the cells. Omega-3 fatty acids, are known to impose anti-inflammatory phenotype of microglia by enhancing its ability for migration and phagocytosis. But the role of omega-3 fatty acids in cellular actin remodeling, which is the basis of cellular functions such as migration and phagocytosis, is not well understood. Here, we have focused on the effect of dietary supplement of α-linolenic acid (ALA) on extracellular Tau internalization and assisted actin polymerization for the process. ALA is found to induce membrane ruffling and phagocytic cup formation along with cytoskeletal rearrangement. ALA also enhances the localization of Arp2/3 complex at the leading edge and its colocalization with F-actin to induce the actin polymerization. The excessive actin polymerization might help the cell to protrude forward and perform its migration. The results suggest that dietary supplement of ALA could play a neuroprotective role and slow down the AD pathology.
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