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Published on: September 4, 2013
M2-Like Microglia Polarization Attenuates Neuropathic Pain Associated with Alzheimer's Disease
Jing Jin1, Jia Guo1, Hongbin Cai1
1Department of Neurology, the Second Hospital of Lanzhou University, Lanzhou, China.
Abstract:
Many Alzheimer's disease (AD) patients suffer from persistent neuropathic pain (NP), which is mediated, at least partially, but microglia. Nevertheless, the exact underlying mechanism is unknown. Moreover, a clinically translatable approach through modulating microglia for treating AD-associated NP is not available. Here, in a doxycycline-induced mouse model (rTg4510) for AD, we showed development of NP. We found that the total number of microglia in the CA3 region was not increased, but polarized to pro-inflammatory M1-like phenotype, with concomitant increases in production and secretion of pro-inflammatory cytokines. To examine whether this microglia polarization plays an essential role in the AD-associated NP, we generated an adeno-associated virus (AAV) serotype PHP.B (capable of crossing the blood-brain barrier) carrying shRNA for DNA methyltransferase 1 (DNMT1) under a microglia-specific TMEM119 promoter (AAV-pTMEM119-shDNMT1), which specifically targeted microglia and induced a M2-like polarization in vitro and in vivo in doxycycline-treated rTg4510 mice. Intravenous infusion of AAV-pTMEM119-shDNMT1 induced M2-polarization of microglia and attenuated both AD-associated behavior impairment but also NP in the doxycycline-treated rTg4510 mice. Thus, our data suggest that AD-associated NP may be treated through M2-polarization of microglia.
Insights
Alzheimer's disease (AD) patients often experience neuropathic pain (NP). Targeting microglia to promote an anti-inflammatory M2-like state may offer a novel therapeutic strategy for AD-associated NP.
Area of Science:
- Neuroscience
- Immunology
- Pharmacology
Background:
- Alzheimer's disease (AD) is frequently accompanied by neuropathic pain (NP).
- Microglia, the brain's immune cells, are implicated in NP pathogenesis in AD, but mechanisms remain unclear.
- Current treatments for AD-associated NP are lacking, especially those targeting microglia.
Purpose of the Study:
- To investigate the role of microglia polarization in AD-associated NP.
- To develop a targeted microglia-modulating therapy for AD-associated NP.
Main Methods:
- Utilized a doxycycline-inducible AD mouse model (rTg4510) exhibiting NP.
- Administered adeno-associated virus (AAV) serotype PHP.B carrying shRNA for DNMT1 under a microglia-specific promoter (AAV-pTMEM119-shDNMT1) via intravenous infusion.
- Assessed microglia phenotype, pro-inflammatory cytokine production, behavioral impairment, and NP.
Main Results:
- AD mice showed microglia polarization to a pro-inflammatory M1-like state with increased cytokine production.
- AAV-pTMEM119-shDNMT1 treatment induced M2-like microglia polarization in AD mice.
- This M2-polarization attenuated both behavioral deficits and neuropathic pain in the AD model.
Conclusions:
- Microglia polarization to an M1-like phenotype contributes to AD-associated NP.
- Targeting microglia for M2-like polarization represents a potential therapeutic avenue for AD-associated NP.

