Zheng Yihui, Zhu Tingyu, Chen Binwen, Fang Yu, Wu Yiqing, Feng Xiaoli, Pang Mengdan, Wang Hongzeng, Zhu Jianghu, Lin Zhenlang
Department of Neonatology, The Second Affiliated Hospital and Yuying Children's Hospital, Wenzhou Medical University, Wenzhou, China; Key Laboratory of Perinatal Medicine of Wenzhou, Wenzhou, Zhejiang, China; School of Second Clinical Medical, Wenzhou Medical University, Wenzhou, China.
Department of Neonatology, The Second Affiliated Hospital and Yuying Children's Hospital, Wenzhou Medical University, Wenzhou, China; Key Laboratory of Perinatal Medicine of Wenzhou, Wenzhou, Zhejiang, China.
Int Immunopharmacol. 2023 Nov;124(Pt B):111030. doi: 10.1016/j.intimp.2023.111030. Epub 2023 Oct 14.
Hypoxic-ischemic encephalopathy (HIE) is a perinatal brain disease caused by hypoxia in neonates. It is one of the leading causes of neonatal death in the perinatal period, as well as disability beyond the neonatal period. Due to the lack of a unified and comprehensive treatment strategy for HIE, research into its pathogenesis is essential. Diallyl disulfide (DADS) is an allicin extract, with detoxifying, antibacterial, and cardiovascular disease protective effects. This study aimed to determine whether DADS can alleviate HIE induced brain damage in rats and oxygen-glucose deprivation (OGD)-induced pyroptosis in PC12 cells, as well as whether it can inhibit pyroptosis via the NLRP3/Caspase-1/IL-1β signaling pathway. In vivo, DADS significantly reduced the cerebral infarction volume, alleviated inflammatory reaction, reduced astrocyte activation, promoted tissue structure recovery, improved pyroptosis caused by HIE and improved the prognosis following HI injury. In vitro findings indicated that DADS increased cell activity, decreased LDH activity and reduced the expression of pyroptosis-related proteins, including IL-1β, IL-18, and certain inflammatory factors in PC12 cells caused by OGD. Mechanistically, DADS inhibited pyroptosis and protected against HIE via the NLRP3/Caspase-1/IL-1β pathway. The specific inhibitor of caspase-1, VX-765, inhibited caspase-1 activation, and IL-1β expression was determined. Additionally, the overexpression of NLRP3 reversed the protective effect of allicin against OGD-induced pyroptosis. In conclusion, these findings demonstrated that DADS inhibits the NLRP3/Caspase-1/IL-1β signaling pathway and decreases HI brain damage.
缺氧缺血性脑病(HIE)是新生儿期因缺氧引起的一种围产期脑部疾病。它是围产期新生儿死亡以及新生儿期后残疾的主要原因之一。由于缺乏针对HIE的统一且全面的治疗策略,对其发病机制的研究至关重要。二烯丙基二硫醚(DADS)是一种大蒜素提取物,具有解毒、抗菌和心血管疾病保护作用。本研究旨在确定DADS是否能减轻大鼠HIE诱导的脑损伤以及氧糖剥夺(OGD)诱导的PC12细胞焦亡,以及它是否能通过NLRP3/半胱天冬酶-1/白细胞介素-1β信号通路抑制焦亡。在体内,DADS显著减少脑梗死体积,减轻炎症反应,减少星形胶质细胞活化,促进组织结构恢复,改善HIE引起的焦亡,并改善HI损伤后的预后。体外研究结果表明,DADS增加细胞活性,降低乳酸脱氢酶活性,并减少OGD引起的PC12细胞中焦亡相关蛋白(包括白细胞介素-1β、白细胞介素-18)及某些炎症因子的表达。机制上,DADS通过NLRP3/半胱天冬酶-1/白细胞介素-1β途径抑制焦亡并预防HIE。半胱天冬酶-1的特异性抑制剂VX-765抑制了半胱天冬酶-1的活化,并测定了白细胞介素-1β的表达。此外,NLRP3的过表达逆转了大蒜素对OGD诱导的焦亡的保护作用。总之,这些发现表明DADS抑制NLRP3/半胱天冬酶-1/白细胞介素-1β信号通路并减少HI脑损伤。