Modulating inflammasome (NLRP3) activation and stress granule (SG) formation: Insight of neuroprotection by Normobaric oxygen (NBO) in ischemic stroke
Sichao Guo, Zhe Cheng, Abdullah Al Tekreeti, Fengwu Li, Yuchuan Ding, Xiaokun Geng
Journal:EXPERIMENTAL NEUROLOGY
IF:4.8
DOI:10.1016/j.expneurol.2026.115885
PMID:
Published:2026-06-19
research field:神经科学分子生物学应激颗粒生物学缺血再灌注损伤脑血管病学炎性小体生物学炎症免疫学
Abstract
BACKGROUND NBO therapy has demonstrated a neuroprotective effect on ischemic stroke. This study investigated the role of HIF-1α in regulating SG formation and NLRP3 inflammasome activation following I/R injury in NBO-induced neuroprotection. METHODS A total of 137 adult male SD rats underwent 2 h of MCAO, followed by 2, 6, 24 or 48 h of reperfusion. NBO (95% O₂ at 2 L/min) was administered for 2 h at the onset of reperfusion. HIF-1α inhibitor (YC-1) was administered 2 h before MCAO. Brain damage was assessed by infarct volumes (TTC staining), LDH and ROS levels (ELISA), and apoptotic and pyroptosis cell death (flow cytometry and TUNEL assay). Gene and protein levels of HIF-1α and inflammasome related factors (IL-18, IL-1β, NLRP3, cleaved-Caspase-1, GSDMD-N, ASC, TXNIP) were analyzed. SG proteins levels (G3BP1, TIA-1) and DDX3X were detected by Western blot. Co-IP detected the interaction between DDX3X and G3BP1 or NLRP3. RESULTS Infarct volume, LDH expression, ROS levels, and cell death (apoptosis and pyroptosis) were significantly increased after I/R injury. NBO and YC-1 treatments significantly reduced infarct volume, LDH and ROS levels, and cell death at 24 and 48 h of reperfusion. NBO suppressed the expression of inflammasome-related markers (IL-1β, IL-18, NLRP3, TXNIP, ASC, cleaved-Caspase-1, GSDMD-N) at both mRNA and protein levels. Co-IP analysis showed that I/R enhanced the interaction between DDX3X and NLRP3, which was suppressed by NBO and YC-1. NBO increased SG formation by regulating G3BP1 and TIA-1 expression and strengthened the interaction between DDX3X and G3BP1. NBO + YC-1 did not show additive effects, indicating that the two treatments act through the same HIF-1α-dependent pathway. CONCLUSION
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