Li Xin-Nan, Shang Nian-Ying, Liu Meng-Yao, Sui Song-Yang, Tang Jing-Shu, Lan Jia-Qi, Kang Yu-Ying, Zhang Bao-Dan, Wen Zi-Peng, Feng Xin-Hong, Wu Lei, Dai Jun-Gui, Peng Ying
State Key Laboratory of Bioactive Substances and Functions of Natural Medicines, Institute of Materia Medica, Chinese Academy of Medical Sciences & Peking Union Medical College, Beijing, 100050, China.
Department of Neurology, Beijing Tsinghua Changgung Hospital, School of Clinical Medicine, Tsinghua University, Beijing, 102218, China.
Acta Pharmacol Sin. 2025 Jun 5. doi: 10.1038/s41401-025-01590-y.
Ischemic stroke is one of the most common forms of stroke. There are no effective pharmacological agents to promote recovery yet. Dendrobium is a valuable herb in traditional Chinese medicine, which has shown antiviral, anti-inflammatory, antioxidant and immunomodulatory activities. We previously used dendrobium to synthesize a novel bibenzyl compound NPB-1575 with the ability to scavenge free radicals in vitro. Increasing evidence shows that IRS2 has biological functions other than participating in the insulin signaling pathway. In this study we utilized NPB-1575 to explore the role of IRS2 in neuroinflammation and ferroptosis during cerebral ischemia. Rats were subjected to permanent middle cerebral artery occlusion (pMCAO) surgery. NPB-1575 (25 mg/kg) was orally administered to the rats 5 min to 4 h after the surgery. We showed that NPB-1575 administration significantly reduced the infarct volume and improved neurological outcome at different stages of ischemic stroke in pMCAO rats. In the brain tissue of pMCAO rats and LPS-stimulated BV2 cells, we demonstrated that NPB-1575 exerted the anti-inflammatory effect on microglia through upregulating Nrf2 and inhibiting FOXO1 via IRS2. NPB-1575 might effectively interact with IRS2 to enhance the stability of IRS2 protein. Knockdown of IRS2 in BV2 cells reversed the protective effect of NPB-1575 against cerebral ischemic injury, manifested by upregulated NF-κB and inactivated ferroptosis defense system. In conclusion, we demonstrate that IRS2 might be a novel target in regulation of neuroinflammation and played an indispensable role in anti-ischemic injury of the brain. NPB-1575 mitigates neuroinflammation and resists ferroptosis through the IRS2/Nrf2/NF-κB axis, demonstrating its potential therapeutic effects on ischemic stroke. Cerebral ischemic injury leads to the translocation of NF-κB into the nucleus of microglia, which initiates the transcription of inflammatory genes and further releases inflammatory factors. The release of NO, IL-6, TNFα further leads to ferroptosis of neurons, which is manifested as iron overload and weakened resistance of the Xct system. NPB-1575 up-regulates IRS2, which further up-regulates pAKT/AKT and Nrf2 signaling way, down-regulates FOXO1 and NF-κB. Then the reduced microglial inflammatory response reduced neuronal ferroptosis.
缺血性中风是最常见的中风形式之一。目前尚无促进恢复的有效药物。石斛是一种名贵的中药材,具有抗病毒、抗炎、抗氧化和免疫调节活性。我们之前利用石斛合成了一种新型联苄化合物NPB-1575,其在体外具有清除自由基的能力。越来越多的证据表明,IRS2除了参与胰岛素信号通路外还具有其他生物学功能。在本研究中,我们利用NPB-1575探究IRS2在脑缺血期间神经炎症和铁死亡中的作用。对大鼠进行永久性大脑中动脉闭塞(pMCAO)手术。术后5分钟至4小时给大鼠口服NPB-1575(25mg/kg)。我们发现,给予NPB-1575可显著降低pMCAO大鼠缺血性中风不同阶段的梗死体积并改善神经功能结局。在pMCAO大鼠的脑组织和脂多糖刺激的BV2细胞中,我们证明NPB-1575通过上调Nrf2并经由IRS2抑制FOXO1对小胶质细胞发挥抗炎作用。NPB-1575可能与IRS2有效相互作用以增强IRS2蛋白的稳定性。在BV2细胞中敲低IRS2可逆转NPB-1575对脑缺血损伤的保护作用,表现为NF-κB上调和铁死亡防御系统失活。总之,我们证明IRS2可能是调节神经炎症的新靶点,在脑缺血损伤的抗损伤过程中发挥不可或缺的作用。NPB-1575通过IRS2/Nrf2/NF-κB轴减轻神经炎症并抵抗铁死亡,证明其对缺血性中风具有潜在治疗作用。脑缺血损伤导致NF-κB易位至小胶质细胞核内,启动炎症基因转录并进一步释放炎症因子。NO、IL-6、TNFα的释放进一步导致神经元铁死亡,表现为铁过载和Xct系统抗性减弱。NPB-1575上调IRS2,进而上调pAKT/AKT和Nrf2信号通路,下调FOXO1和NF-κB。随后小胶质细胞炎症反应减轻,神经元铁死亡减少。