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Aging modulates microglia phenotypes in neuroinflammation of MPTP-PD mice
1Department of neurology, Jinshan Hospital Affiliated to Fudan University, Shanghai 201508, China.
Abstract:
As the crucial etiological factor, aging-related microglia activation promotes the development of Parkinson's disease (PD). However, the molecular and functional changes of aged-microglia and their contribution to neurodegeneration in PD are only partially understood, which was investigated in our study. Female C57BL/6 mice were randomly divided into four groups, included young-control group, young-MPTP group, aged-control group and aged-MPTP group. Pole test and adhesive removal test were firstly performed. ELISA assay was used to detect the content of interleukin-1β (IL-1β) and tumor necrosis factor alpha (TNF-α) in brain tissue. Then we tested the expression of tyrosine hydroxylase (TH), p-nuclear transcription factor (NF-κB), toll-like receptor2 (TLR2), arginase-1 (arg-1), inducible nitric oxide synthase (iNOS) by western blot and immunofluorescence analysis. Our results showed that aging promoted M1 microglia activation and inhibited M2 microglia activation in SN in MPTP-PD model, accompanied by the elevation of proinflammatory cytokine (TNF-α and IL-1β). Consequently, aging significantly aggravated motor dysfunction and dopaminergic neuron loss in SN. Besides, compared with young-MPTP group, the protein expression of TLR2 and p-NF-κB-p65 increased obviously in aged-MPTP group. The results revealed that aging aggravated inflammatory response by modulated microglia phenotypes transition in SN in PD, and contributed to further understand the pathogenesis of PD.
Insights
Aging exacerbates Parkinson's disease (PD) by promoting pro-inflammatory M1 microglia activation and inhibiting M2 microglia. This leads to increased neuroinflammation and motor dysfunction in aged mice.
Area of Science:
- Neuroscience
- Immunology
- Aging Research
Background:
- Microglia activation is a key factor in Parkinson's disease (PD) pathogenesis.
- The specific roles and changes in aged microglia within PD are not fully understood.
Purpose of the Study:
- To investigate the molecular and functional changes in aged microglia.
- To determine the contribution of aged microglia to neurodegeneration in a Parkinson's disease model.
Main Methods:
- Utilized a MPTP-induced Parkinson's disease mouse model comparing young and aged groups.
- Assessed motor function using Pole test and adhesive removal test.
- Quantified inflammatory markers (IL-1β, TNF-α) and microglial markers (TH, p-NF-κB, TLR2, arginase-1, iNOS) via ELISA, Western blot, and immunofluorescence.
Main Results:
- Aging promoted M1 microglia activation and suppressed M2 microglia activation in the substantia nigra (SN).
- Elevated levels of pro-inflammatory cytokines (TNF-α, IL-1β) were observed in aged mice.
- Aging significantly worsened motor deficits and dopaminergic neuron loss, with increased TLR2 and p-NF-κB expression.
Conclusions:
- Aging aggravates the inflammatory response in Parkinson's disease by altering microglia phenotypes in the SN.
- These findings enhance understanding of PD pathogenesis, highlighting the role of aging-associated neuroinflammation.
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