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Published on: May 22, 2014
HSP60 Mediates NLRP3 Inflammasome-Dependent Microglial Pyroptosis Via the TLR4/MyD88/NF-κB Signaling Axis After
Zheng-Qing Hu1, Ruijie Ma1, Hang Zhang1
1Department of Neurosurgery, The Translational Research Institute for Neurological Disorders of Wannan Medical College, the First Affiliated Hospital of Wannan Medical College (Yijishan Hospital of Wannan Medical College), No.2 West Zheshan Road, Wuhu, Anhui, 241001, China.
Abstract:
This study aims to elucidate the mechanism by which Heat Shock Protein 60 (HSP60) mediates microglial pyroptosis in the context of early brain injury (EBI) following subarachnoid hemorrhage (SAH), and to investigate the effects of HSP60 inhibition on EBI after SAH. A mouse subarachnoid hemorrhage (SAH) model was established using prechiasmatic cistern blood injection. In vitro, microglia were stimulated with 25 µmol/L oxyhemoglobin (OxyHB) to simulate the SAH pathological environment. In vivo, mice received 100 mg/kg Mizoribine, while in vitro, 80 µmol/L Mizoribine was used to suppress SAH-induced HSP60 upregulation. Techniques including Western blotting, immunofluorescence, immunohistochemistry, transmission electron microscopy, ELISA, modified Garcia neurological scoring, beam walking, brain water content measurement, Morris water maze, TUNEL staining, and Nissl staining were employed to systematically investigate the role of HSP60 inhibition in neuroinflammation and microglial pyroptosis after SAH. Compared to the sham group, both in vivo and in vitro studies with blinded, random sampling of six groups demonstrated a significant increase in HSP60 expression post-SAH. In vivo, 100 mg/kg Mizoribine alleviated blood-brain barrier disruption, cerebral edema, neuronal apoptosis/necrosis, and improved neurological deficits and cognitive impairment. In vitro, 80 µmol/L Mizoribine markedly attenuated microglial activation and pyroptosis, downregulated pro-inflammatory cytokines, and mitigated neuroinflammation. The upregulation of HSP60 after SAH promotes NLRP3 inflammasome assembly by activating the TLR4/MyD88/NF-κB signaling pathway, thereby inducing microglial pyroptosis and exacerbating the progression of early brain injury. Inhibition of HSP60 represents a potential therapeutic strategy for ameliorating EBI after SAH.
Insights
Heat Shock Protein 60 (HSP60) drives microglial pyroptosis after subarachnoid hemorrhage (SAH), worsening early brain injury (EBI). Inhibiting HSP60 reduces inflammation and protects the brain, offering a potential therapy for EBI.
Area of Science:
- Neuroscience
- Immunology
- Cell Biology
Background:
- Subarachnoid hemorrhage (SAH) causes early brain injury (EBI), characterized by neuroinflammation and microglial pyroptosis.
- Heat Shock Protein 60 (HSP60) is implicated in inflammatory responses, but its role in SAH-induced EBI requires elucidation.
Purpose of the Study:
- To investigate the mechanism of Heat Shock Protein 60 (HSP60) in mediating microglial pyroptosis following early brain injury (EBI) after subarachnoid hemorrhage (SAH).
- To evaluate the therapeutic potential of HSP60 inhibition in mitigating EBI after SAH.
Main Methods:
- Established a mouse model of SAH and used in vitro oxyhemoglobin-stimulated microglia.
- Administered Mizoribine to inhibit HSP60 in vivo and in vitro.
- Employed techniques including Western blotting, immunofluorescence, ELISA, neurological scoring, and histological analyses.
Main Results:
- SAH significantly upregulated HSP60 expression in vivo and in vitro.
- HSP60 inhibition with Mizoribine attenuated neuroinflammation, microglial pyroptosis, blood-brain barrier disruption, cerebral edema, and neuronal damage.
- Neurological deficits and cognitive impairments were improved following HSP60 inhibition.
Conclusions:
- Upregulated HSP60 promotes NLRP3 inflammasome assembly via the TLR4/MyD88/NF-κB pathway, inducing microglial pyroptosis and exacerbating EBI post-SAH.
- HSP60 inhibition is a promising therapeutic strategy for ameliorating early brain injury following subarachnoid hemorrhage.
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