MANF improves cognitive function and attenuates neuroinflammation in APP/PS1 transgenic mice through the

Yanchao Tang1,2, Enba Zhuo1,2, Pengman Li1,2

  • 1Department of Anesthesiology, The First Affiliated Hospital of Anhui Medical University, Hefei 230022, China.

Journal of Anesthesia and Translational Medicine
|April 3, 2026
PubMed
Abstract

Insights

Mesencephalic astrocyte-derived neurotrophic factor (MANF) improved cognitive function in Alzheimer's disease (AD) mice by reducing amyloid plaques and neuroinflammation. This suggests MANF is a promising therapeutic for AD and other neurodegenerative disorders.

Area of Science:

  • Neuroscience
  • Molecular Biology
  • Pharmacology

Background:

  • Alzheimer's disease (AD) is a prevalent neurodegenerative disorder marked by cognitive decline and pathological hallmarks like amyloid plaques and neuroinflammation.
  • Neuroinflammation, oxidative stress, and apoptosis are key contributors to AD pathogenesis.
  • Mesencephalic astrocyte-derived neurotrophic factor (MANF) exhibits neuroprotective properties, making it a potential therapeutic agent for AD.

Purpose of the Study:

  • To investigate the therapeutic potential of MANF in ameliorating cognitive deficits and pathological changes in a mouse model of Alzheimer's disease.
  • To explore MANF's effects on neuroinflammation, oxidative stress, apoptosis, and neural plasticity in the context of AD.

Main Methods:

  • APP/PS1 transgenic mice received daily injections of recombinant human MANF (rhMANF) for one month.
  • Cognitive function was assessed using behavioral tests (Morris water maze, open field, fear conditioning).
  • Brain tissue analysis involved immunofluorescence, immunohistochemistry, western blotting, ELISA, and RNA sequencing; in vitro co-culture systems were also used.

Main Results:

  • rhMANF treatment significantly improved cognitive function in APP/PS1 mice.
  • MANF reduced amyloid-beta deposition, inhibited microglial activation, and decreased inflammatory cytokines.
  • MANF mitigated oxidative stress, reduced neuronal apoptosis, restored synaptic protein levels, and counteracted Aβ1-42 toxicity in vitro.

Conclusions:

  • MANF demonstrates significant neuroprotective effects in an Alzheimer's disease mouse model.
  • MANF modulates neuroinflammation and enhances neural plasticity, suggesting its therapeutic potential.
  • MANF is a promising candidate for treating Alzheimer's disease and other age-related neurodegenerative disorders.

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