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Baicalin inhibits PANoptosis by blocking mitochondrial Z-DNA formation and ZBP1-PANoptosome assembly in macrophages
Yi-Ping You1,2,3,4,5, Liang Yan2,3,5, Hua-Yu Ke1,2,5
1State Key Laboratory of Bioactive Molecules and Druggability Assessment, Jinan University, Guangzhou, 510632, China.
Abstract:
PANoptosis is an emerging form of regulated cell death (RCD) characterized by simultaneous activation of pyroptotic, apoptotic, and necroptotic signaling that not only participates in pathologies of inflammatory diseases but also has a critical role against pathogenic infections. Targeting PANoptosis represents a promising therapeutic strategy for related inflammatory diseases, but identification of inhibitors for PANoptosis remains an unmet demand. Baicalin () is an active flavonoid isolated from Scutellaria baicalensis Georgi (Huangqin), a traditional Chinese medicinal herb used for heat-clearing and detoxifying. Numerous studies suggest that baicalin possesses inhibitory activities on various forms of RCD including apoptosis/secondary necrosis, pyroptosis, and necroptosis, thereby mitigating inflammatory responses. In this study we investigated the effects of baicalin on PANoptosis in macrophage cellular models. Primary macrophages (BMDMs) or J774A.1 macrophage cells were treated with 5Z-7-oxozeaenol (OXO, an inhibitor for TAK1) in combination with TNF-α or LPS. We showed that OXO plus TNF-α or LPS induced robust lytic cell death, which was dose-dependently inhibited by baicalin (50-200 μM). We demonstrated that PANoptosis induction was accompanied by overt mitochondrial injury, mitochondrial DNA (mtDNA) release and Z-DNA formation. Z-DNA was formed from cytosolic oxidized mtDNA. Both oxidized mtDNA and mitochondrial Z-DNA puncta were co-localized with the PANoptosome (including ZBP1, RIPK3, ASC, and caspase-8), a platform for mediating PANoptosis. Intriguingly, baicalin not only prevented mitochondrial injury but also blocked mtDNA release, Z-DNA formation and PANoptosome assembly. Knockdown of ZBP1 markedly decreased PANoptotic cell death. In a mouse model of hemophagocytic lymphohistiocytosis (HLH), administration of baicalin (200 mg/kg, i.g., for 4 times) significantly mitigated lung and liver injury and reduced levels of serum TNF-α and IFN-γ, concomitant with decreased levels of PANoptosis hallmarks in these organs. Baicalin also abrogated the hallmarks of PANoptosis in liver-resident macrophages (Kupffer cells) in HLH mice. Collectively, our results demonstrate that baicalin inhibits PANoptosis in macrophages by blocking mitochondrial Z-DNA formation and ZBP1-PANoptosome assembly, thus conferring protection against inflammatory diseases. PANoptosis is a form of regulated cell death displaying simultaneous activation of pyroptotic, apoptotic, and necroptotic signaling. This study shows that induction of PANoptosis is linked to mitochondrial dysfunction and mitochondrial Z-DNA formation. Baicalin inhibits PANoptosis in macrophages in vitro via blocking mitochondrial dysfunction and the mitochondrial Z-DNA formation and thereby impeding the assembly of ZBP1-associated PANoptosome. In a mouse model of hemophagocytic lymphohistiocytosis (HLH), baicalin inhibits the activation of PANoptotic signaling in liver-resident macrophages (Kupffer cells) in vivo, thus mitigating systemic inflammation and multiple organ injury in mice.
Insights
Baicalin, a traditional Chinese medicine compound, inhibits PANoptosis, a cell death pathway linked to inflammation. It prevents mitochondrial damage and Z-DNA formation, offering a potential treatment for inflammatory diseases.
Area of Science:
- Immunology
- Cell Biology
- Pharmacology
Background:
- PANoptosis is an emerging regulated cell death (RCD) pathway involving pyroptosis, apoptosis, and necroptosis.
- It plays a role in inflammatory diseases and infections, making it a therapeutic target.
- Baicalin, derived from traditional Chinese medicine, shows inhibitory effects on various RCDs.
Purpose of the Study:
- To investigate the effects of baicalin on PANoptosis in macrophage models.
- To elucidate the molecular mechanisms by which baicalin inhibits PANoptosis.
- To evaluate baicalin's therapeutic potential in a mouse model of hemophagocytic lymphohistiocytosis (HLH).
Main Methods:
- Macrophage cell models (BMDMs, J774A.1) were treated with inducers of PANoptosis (OXO, TNF-α, LPS).
- Baicalin's inhibitory effects on cell death, mitochondrial injury, mitochondrial DNA (mtDNA) release, and Z-DNA formation were assessed.
- ZBP1 knockdown and a mouse model of HLH were used to evaluate in vivo efficacy.
Main Results:
- Baicalin dose-dependently inhibited OXO/TNF-α or LPS-induced PANoptosis and lytic cell death.
- Baicalin prevented mitochondrial injury, mtDNA release, Z-DNA formation, and PANoptosome assembly.
- Baicalin treatment mitigated organ injury and reduced inflammatory cytokines in a mouse model of HLH.
Conclusions:
- Baicalin inhibits PANoptosis in macrophages by blocking mitochondrial Z-DNA formation and ZBP1-PANoptosome assembly.
- Baicalin demonstrates therapeutic potential for inflammatory diseases by targeting PANoptosis.
- This study highlights baicalin as a promising agent for treating conditions associated with PANoptosis.
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