神经保护
神经炎症
黑质
药理学
小胶质细胞
神经退行性变
多巴胺能
医学
脂质过氧化
促炎细胞因子
炎症
帕金森病
化学
氧化应激
免疫学
多巴胺
内科学
疾病
作者
Fangling Sun,Yifu Ma,Dan Li,Yang Qianqian,Tingting Yuan,Tingting Liu,Xin Tian,Zixin Zhu,Wenrong Zheng,Yu‐Feng Wang,Wen Wang
摘要
ABSTRACT Along with the hallmark of α‐synuclein deposition, neuroinflammation and iron accumulation have emerged as essential pathological features for dopaminergic neuron degeneration in PD patients and animal models. Preclinical studies have highlighted gentiopicroside's anti‐inflammatory activities in treating arthritis, colitis and pancreatitis, and its neuroprotective effects on neurological diseases such as AD , chronic neuropathic pain and ischemia. However, the effects and mechanisms of gentiopicroside on PD‐related conditions remain uncertain. Here, we evaluated the potential benefits of gentiopicroside using a unilateral 6‐OHDA rat model and a MPP + ‐induced cell model. Our findings indicated that gentiopicroside improved motor deficits and restored nigral TH‐positive neurons in vivo. Mechanistically, gentiopicroside ameliorated inflammatory responses of 6‐OHDA‐induced rats, decreased NF‐κB and pro‐inflammatory cytokines levels and reduced Iba‐1‐positive microglia in the substantia nigra. Furthermore, gentiopicroside regulated the levels of DMT1 and FPN1, thereby inhibiting iron accumulation in PD rats. In vitro, gentiopicroside preserved the viability of MPP + ‐treated SH‐SY5Y cells and suppressed NF‐κB activity and its downstream factors' levels. Meanwhile, gentiopicroside inhibited lipid peroxidation and ROS production, while it upregulated the expression of GPX4 in MPP + ‐treated cells. And these antiferroptosis effects were also linked to iron transporters regulation. Conclusively, gentiopicroside exhibits neuroprotective effects via alleviating neuroinflammation and iron‐dependent ferroptosis, offering promise for PD treatment.
科研通智能强力驱动
Strongly Powered by AbleSci AI