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Updated: Feb 5, 2026

Simultaneous Imaging of Microglial Dynamics and Neuronal Activity in Awake Mice
Published on: August 23, 2022
GPR17 mediates ischemia-like neuronal injury via microglial activation
Bing Zhao1, Hao Wang2, Cai-Xia Li1
1Department of Anesthesiology, The First Affiliated Hospital, School of Medicine, Zhejiang University, Hangzhou, Zhejiang 310003, P.R. China.
Abstract:
GPR17 is a G (i)-coupled dual receptor, linked to P2Y and CysLT receptors stimulated by uracil nucleotides and cysteinyl leukotrienes, respectively. Recent evidence has demonstrated that GPR17 inhibition ameliorates the progression of cerebral ischemic injury by regulating neuronal death and microglial activation. The present study aimed to assess the detailed regulatory roles of this receptor in oxygen‑glucose deprivation/recovery (OGD/R)‑induced ischemia‑like injury in vitro and explore the underlying mechanism. The results demonstrated that OGD/R induced ischemic neuronal injury and microglial activation, including enhanced phagocytosis and increased inflammatory cytokine release in neuron‑glial mixed cultures of cortical cells. GPR17 upregulation during OGD/R was spatially and temporally correlated with neuronal injury and microglial activation. In addition, GPR17 knockdown inhibited OGD/R‑induced responses in neuron‑glial mixed cultures. GPR17 knockdown also attenuated cell injury induced by the agonist leukotriene D4 (LTD4) or uridine 5'‑diphosphate (UDP) in neuron‑glial mixed cultures. However, GPR17 knockdown did not affect OGD/R‑induced ischemic neuronal injury in primary cultures of neurons. In primary astrocyte cultures, neither GPR17 nor OGD/R induced injury. By contrast, GPR17 knockdown ameliorated OGD/R‑induced microglial activation, boosting phagocytosis and inflammatory cytokine release in primary microglia cultures. Finally, the results demonstrated that the conditioned medium of microglia pretreated with OGD/R induced neuronal death, and the neuronal injury was significantly inhibited by GPR17 knockdown. These findings suggested that GPR17 may mediate ischemia‑like neuronal injury and microglial activation in vitro; however, the protective effects on ischemic neuronal injury might depend upon microglial activation. Whether GPR17 regulates neuronal injury mediated by oligodendrocyte linkage remains to be investigated.
Insights
GPR17 receptor upregulation exacerbates brain injury after oxygen-glucose deprivation by activating microglia. Inhibiting GPR17 lessens this microglial activation and subsequent neuronal damage in vitro.
Area of Science:
- Neuroscience
- Cell Biology
- Pharmacology
Background:
- GPR17 is a G(i)-coupled receptor activated by uracil nucleotides and cysteinyl leukotrienes.
- GPR17 inhibition shows promise in mitigating cerebral ischemic injury by modulating neuronal death and microglial activity.
Purpose of the Study:
- To investigate the role of GPR17 in oxygen-glucose deprivation/recovery (OGD/R)-induced in vitro ischemia-like injury.
- To elucidate the underlying mechanisms of GPR17's regulation in neuronal and microglial responses to OGD/R.
Main Methods:
- Utilized neuron-glial mixed cultures, primary neuron cultures, primary astrocyte cultures, and primary microglia cultures.
- Employed oxygen-glucose deprivation/recovery (OGD/R) models and GPR17 knockdown techniques.
- Assessed neuronal injury, microglial activation (phagocytosis, cytokine release), and cell viability.
Main Results:
- OGD/R induced neuronal injury and microglial activation, with correlated GPR17 upregulation.
- GPR17 knockdown attenuated OGD/R-induced responses in mixed cultures and microglia, but not in primary neurons or astrocytes.
- GPR17 knockdown ameliorated OGD/R-induced microglial activation, enhancing phagocytosis and reducing inflammatory cytokine release.
- Microglia exposed to OGD/R induced neuronal death, which was reduced by GPR17 knockdown.
Conclusions:
- GPR17 plays a significant role in mediating ischemia-like neuronal injury and microglial activation in vitro.
- The neuroprotective effects of GPR17 modulation in ischemic injury appear to be dependent on its influence on microglial activation.
- Further research is needed to explore GPR17's regulation of oligodendrocyte-mediated neuronal injury.
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