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证据表明,急性有机磷中毒后获得性癫痫的发病机制与血脑屏障损伤有关。

Evidence Implicating Blood-Brain Barrier Impairment in the Pathogenesis of Acquired Epilepsy following Acute Organophosphate Intoxication.

机构信息

Department of Molecular Biosciences, University of California, Davis, School of Veterinary Medicine, Davis, California (P.N.B., A.S.L., P.M.A., C.M.U., P.J.L.); Department of Neurology, University of California, Davis, School of Medicine, Sacramento, California (M.I.G.); and Department of Pharmacology, University of California, Davis, School of Medicine, Davis, California (A.G.).

Department of Molecular Biosciences, University of California, Davis, School of Veterinary Medicine, Davis, California (P.N.B., A.S.L., P.M.A., C.M.U., P.J.L.); Department of Neurology, University of California, Davis, School of Medicine, Sacramento, California (M.I.G.); and Department of Pharmacology, University of California, Davis, School of Medicine, Davis, California (A.G.)

出版信息

J Pharmacol Exp Ther. 2024 Jan 17;388(2):301-312. doi: 10.1124/jpet.123.001836.

Abstract

Organophosphate (OP) poisoning can trigger cholinergic crisis, a life-threatening toxidrome that includes seizures and status epilepticus. These acute toxic responses are associated with persistent neuroinflammation and spontaneous recurrent seizures (SRS), also known as acquired epilepsy. Blood-brain barrier (BBB) impairment has recently been proposed as a pathogenic mechanism linking acute OP intoxication to chronic adverse neurologic outcomes. In this review, we briefly describe the cellular and molecular components of the BBB, review evidence of altered BBB integrity following acute OP intoxication, and discuss potential mechanisms by which acute OP intoxication may promote BBB dysfunction. We highlight the complex interplay between neuroinflammation and BBB dysfunction that suggests a positive feedforward interaction. Lastly, we examine research from diverse models and disease states that suggest mechanisms by which loss of BBB integrity may contribute to epileptogenic processes. Collectively, the literature identifies BBB impairment as a convergent mechanism of neurologic disease and justifies further mechanistic research into how acute OP intoxication causes BBB impairment and its role in the pathogenesis of SRS and potentially other long-term neurologic sequelae. Such research is critical for evaluating BBB stabilization as a neuroprotective strategy for mitigating OP-induced epilepsy and possibly seizure disorders of other etiologies. SIGNIFICANCE STATEMENT: Clinical and preclinical studies support a link between blood-brain barrier (BBB) dysfunction and epileptogenesis; however, a causal relationship has been difficult to prove. Mechanistic studies to delineate relationships between BBB dysfunction and epilepsy may provide novel insights into BBB stabilization as a neuroprotective strategy for mitigating epilepsy resulting from acute organophosphate (OP) intoxication and non-OP causes and potentially other adverse neurological conditions associated with acute OP intoxication, such as cognitive impairment.

摘要

有机磷(OP)中毒可引发胆碱能危象,这是一种危及生命的毒蕈碱样综合征,包括癫痫发作和癫痫持续状态。这些急性毒性反应与持续性神经炎症和自发性反复发作性癫痫(SRS)有关,也称为获得性癫痫。血脑屏障(BBB)损伤最近被提出是将急性 OP 中毒与慢性不良神经结局联系起来的发病机制。在这篇综述中,我们简要描述了 BBB 的细胞和分子成分,回顾了急性 OP 中毒后 BBB 完整性改变的证据,并讨论了急性 OP 中毒可能促进 BBB 功能障碍的潜在机制。我们强调了神经炎症和 BBB 功能障碍之间的复杂相互作用,提示存在正反馈相互作用。最后,我们检查了来自不同模型和疾病状态的研究,这些研究表明 BBB 完整性的丧失可能有助于致痫过程的机制。总之,文献确定了 BBB 损伤作为神经疾病的一种趋同机制,并证明了进一步研究急性 OP 中毒如何导致 BBB 损伤及其在 SRS 发病机制中的作用以及潜在的其他长期神经后遗症的必要性。这种研究对于评估 BBB 稳定作为减轻 OP 诱导性癫痫和可能其他病因的癫痫发作障碍的神经保护策略至关重要。

意义陈述

临床和临床前研究支持血脑屏障(BBB)功能障碍与癫痫发生之间的联系;然而,因果关系很难证明。阐明 BBB 功能障碍与癫痫之间关系的机制研究可能为 BBB 稳定作为减轻急性有机磷(OP)中毒和非 OP 原因引起的癫痫以及与急性 OP 中毒相关的其他潜在不良神经状况(如认知障碍)的神经保护策略提供新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee9d/10801776/2d464a4ea29d/jpet.123.001836f1.jpg

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