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Restoring metabolism of myeloid cells reverses cognitive decline in ageing

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  1. Article

    Open Access

    Quinolinic acid injection in mouse medial prefrontal cortex affects reversal learning abilities, cortical connectivity and hippocampal synaptic plasticity

    Intracerebral injection of the excitotoxic, endogenous tryptophan metabolite, quinolinic acid (QA), constitutes a chemical model of neurodegenerative brain disease. Complementary techniques were combined to ex...

    Amira Latif-Hernandez, Disha Shah, Tariq Ahmed, Adrian C. Lo in Scientific Reports (2016)

  2. Article

    Open Access

    Spatial reversal learning defect coincides with hypersynchronous telencephalic BOLD functional connectivity in APPNL-F/NL-F knock-in mice

    Amyloid pathology occurs early in Alzheimer’s disease (AD), and has therefore been the focus of numerous studies. Transgenic mouse models have been instrumental to study amyloidosis, but observations might hav...

    Disha Shah, Amira Latif-Hernandez, Bart De Strooper, Takashi Saito in Scientific Reports (2018)

  3. Article

    Open Access

    The two faces of synaptic failure in AppNL-G-F knock-in mice

    Intensive basic and preclinical research into Alzheimer’s disease (AD) has yielded important new findings, but they could not yet been translated into effective therapies. One of the reasons is the lack of ani...

    Amira Latif-Hernandez, Victor Sabanov, Tariq Ahmed in Alzheimer's Research & Therapy (2020)

  4. Article

    Open Access

    Myeloid deficiency of the intrinsic clock protein BMAL1 accelerates cognitive aging by disrupting microglial synaptic pruning

    Aging is associated with loss of circadian immune responses and circadian gene transcription in peripheral macrophages. Microglia, the resident macrophages of the brain, also show diurnal rhythmicity in regula...

    Chinyere Agbaegbu Iweka, Erica Seigneur in Journal of Neuroinflammation (2023)