Targeting the Zbp1-Ripk3 axis attenuates ischemic neuronal injury by suppressing PANoptosis
Abstract:
Cerebral ischemia-reperfusion injury (CIRI) significantly exacerbates neuronal damage following ischemic stroke. Emerging evidence implicates PANoptosis, a novel inflammatory form of programmed cell death, in CIRI pathogenesis. However, the role of Z-DNA-binding protein 1 (Zbp1), a key regulator of PANoptosis and innate immune responses, remains poorly understood in this context. Here, we establish a middle cerebral artery occlusion/reperfusion (MCAO/R) mouse model and an oxygen-glucose deprivation/re-oxygenation (OGD/R) model in which HT-22 cells are used to simulate CIRI and investigate the effects of Zpb1. Western blot analysis is performed to assess Zbp1 and PANoptosis-related protein expressions. Cell viability and death are evaluated using Hoechst 33342 staining and Calcein AM/PI assays, and the cerebral infarct volume is quantified using 2,3,5-triphenyltetrazolium chloride staining. Immunoprecipitation and mass spectrometry identify Ripk3 as a potential downstream effector of Zbp1. Furthermore, Zbp1 and PANoptosis-related proteins are significantly upregulated following OGD/R treatment. Zbp1 knockdown markedly reduces PANoptosis and cell injury in both models, decreases infarct volume and improves neurological outcomes in MCAO/R model mice. Conversely, Zbp1 overexpression exacerbates OGD/R-induced neuronal injury and PANoptosis in HT-22 cells. This effect is partially reversed by Ripk3 knockdown, indicating that Ripk3 mediates Zbp1-induced neuronal damage. These findings highlight Zbp1 as a promising therapeutic target in ischemic stroke and underscore the need for further research into Zbp1-mediated PANoptotic pathways to aid in the development of novel neuroprotective strategies.
Insights
Z-DNA-binding protein 1 (Zbp1) exacerbates brain damage after stroke by promoting PANoptosis, a cell death pathway. Inhibiting Zbp1 reduces injury and improves outcomes, suggesting Zbp1 as a therapeutic target for ischemic stroke.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Cerebral ischemia-reperfusion injury (CIRI) worsens neuronal damage after stroke.
- PANoptosis, an inflammatory programmed cell death, is implicated in CIRI.
- The role of Z-DNA-binding protein 1 (Zbp1) in CIRI and PANoptosis is unclear.
Purpose of the Study:
- To investigate the role of Zbp1 in cerebral ischemia-reperfusion injury (CIRI) and PANoptosis.
- To explore Zbp1 as a potential therapeutic target for ischemic stroke.
Main Methods:
- Established middle cerebral artery occlusion/reperfusion (MCAO/R) and oxygen-glucose deprivation/re-oxygenation (OGD/R) models.
- Assessed Zbp1 and PANoptosis markers via Western blot.
- Evaluated cell viability, death, and infarct volume.
- Used immunoprecipitation and mass spectrometry to identify Zbp1 effectors.
Main Results:
- Zbp1 and PANoptosis proteins were upregulated in OGD/R-treated cells.
- Zbp1 knockdown reduced PANoptosis, cell injury, and infarct volume, improving neurological function in MCAO/R mice.
- Zbp1 overexpression worsened OGD/R-induced injury, an effect partially reversed by Ripk3 knockdown.
- Ripk3 was identified as a Zbp1 effector mediating neuronal damage.
Conclusions:
- Zbp1 plays a critical role in promoting neuronal injury and PANoptosis during CIRI.
- Zbp1 inhibition shows neuroprotective potential in ischemic stroke models.
- Targeting Zbp1-mediated PANoptosis offers a novel therapeutic strategy for ischemic stroke.


