Cardiology Research Institute, Tomsk National Research Medical Center, Russian Academy of Sciences, Tomsk 634012, Russia.
Department of Microbiology and Immunology, Montana State University, Bozeman, MT 59717, USA.
Cells. 2020 Oct 24;9(11):2350. doi: 10.3390/cells9112350.
Neuroinflammation is involved in the progression or secondary injury of multiple brain conditions, including stroke and neurodegenerative diseases. Alarmins, also known as damage-associated molecular patterns, are released in the presence of neuroinflammation and in the acute phase of ischemia. Defensins, cathelicidin, high-mobility group box protein 1, S100 proteins, heat shock proteins, nucleic acids, histones, nucleosomes, and monosodium urate microcrystals are thought to be alarmins. They are released from damaged or dying cells and activate the innate immune system by interacting with pattern recognition receptors. Being principal sterile inflammation triggering agents, alarmins are considered biomarkers and therapeutic targets. They are recognized by host cells and prime the innate immune system toward cell death and distress. In stroke, alarmins act as mediators initiating the inflammatory response after the release from the cellular components of the infarct core and penumbra. Increased c-Jun N-terminal kinase (JNK) phosphorylation may be involved in the mechanism of stress-induced release of alarmins. Putative crosstalk between the alarmin-associated pathways and JNK signaling seems to be inherently interwoven. This review outlines the role of alarmins/JNK-signaling in cerebral neurovascular inflammation and summarizes the complex response of cells to alarmins. Emerging anti-JNK and anti-alarmin drug treatment strategies are discussed.
神经炎症参与多种脑部疾病的进展或继发性损伤,包括中风和神经退行性疾病。警报素也称为损伤相关分子模式,在神经炎症存在时以及在缺血的急性期释放。防御素、抗菌肽、高迁移率族蛋白 B1、S100 蛋白、热休克蛋白、核酸、组蛋白、核小体和单钠尿酸盐微晶被认为是警报素。它们从受损或死亡的细胞中释放出来,并通过与模式识别受体相互作用激活先天免疫系统。作为主要的无菌性炎症触发剂,警报素被认为是生物标志物和治疗靶点。它们被宿主细胞识别,并使先天免疫系统向细胞死亡和损伤方向发展。在中风中,警报素作为介质,在从梗死核心和半影区的细胞成分释放后,启动炎症反应。c-Jun N 末端激酶(JNK)磷酸化的增加可能参与了应激诱导警报素释放的机制。假定的警报素相关途径和 JNK 信号之间的串扰似乎是内在交织的。本文综述了警报素/JNK 信号在脑血管炎症中的作用,并总结了细胞对警报素的复杂反应。讨论了新兴的抗 JNK 和抗警报素药物治疗策略。