NLRP3炎性小体:多发性硬化症的核心参与者。

IF 5.3 2区 医学 Q1 PHARMACOLOGY & PHARMACY Biochemical pharmacology Pub Date : 2024-12-07 DOI:10.1016/j.bcp.2024.116667
Almudena Otálora-Alcaraz, Thomas Reilly, Martí Oró-Nolla, Melody Cui Sun, Lisa Costelloe, Hugh Kearney, Pabitra H Patra, Eric J Downer
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引用次数: 0

摘要

多发性硬化症(MS)是一种神经自身免疫性疾病,与痉挛、疼痛、肢体麻木和虚弱等许多症状相关。它的特征是炎症性脱髓鞘和脑和脊髓轴突变性。一系列疾病修饰疗法(DMTs)可用于抑制多发性硬化症的炎症性疾病活动,然而,迫切需要新的治疗途径,因为DMTs抑制已证实的残疾进展的能力有限。大量文献表明,先天免疫炎症与多发性硬化症进展有关。核苷酸结合寡聚化结构域(NOD)样受体pyrin结构域含蛋白3 (NLRP3)炎性小体在先天免疫中具有明确的功能,与神经炎症的发病机制密切相关。有证据表明,炎症小体可能是MS等疾病的治疗靶点,目前,NLRP3炎症小体的抑制剂正处于临床前开发阶段。因此,本文系统地强调了炎症小体在MS中的致病作用,综述了炎症小体相关多态性与MS易感性的研究证据,并收集了NLRP3生物标志物在MS中的研究证据,并进一步讨论了NLRP3炎症小体在MS小鼠模型中的作用。最后,本综述的一个重要组成部分集中在NLRP3信号传导成分是MS中新的药物靶点的证据上。总体而言,本综述定义了炎性小体在MS发病机制中的作用,并确定了炎性小体抑制剂靶点,这些靶点在MS和相关疾病中值得充分研究。
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The NLRP3 inflammasome: A central player in multiple sclerosis.

Multiple sclerosis (MS) is a neurological autoimmune condition associated with many symptoms including spasticity, pain, limb numbness and weakness. It is characterised by inflammatory demyelination and axonal degeneration of the brain and spinal cord. A range of disease-modifying therapies (DMTs) are available to suppress inflammatory disease activity in MS, however, there is a pressing need for new therapeutic avenues as DMTs have a limited ability to suppress confirmed disability progression. A body of literature indicates that innate immune inflammation is linked to MS progression. The nucleotide-binding oligomerization domain (NOD)-like receptor pyrin domain containing protein 3 (NLRP3) inflammasome has a well-established function in innate immunity which is closely associated with the pathogenesis of neuroinflammatory conditions. Evidence suggests that the inflammasome may be a therapeutic target in disorders such as MS and at present, inhibitors of the NLRP3 inflammasome are in pre-clinical development. Therefore, this review systematically highlights the pathogenic role of inflammasomes in MS, presenting an overview of research evidence linking inflammasome-related polymorphisms to MS susceptibility, and gathering evidence investigating NLRP3 biomarkers in MS. The role of the NLRP3 inflammasome in murine models of MS is furthermore discussed. Finally, a significant component of this review focuses on evidence that NLRP3 signalling components are novel drug targets in MS. Overall this review defines the role of the inflammasome in MS pathogenesis and identifies inflammasome inhibitor targets that warrant full investigation in MS and related disorders.

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来源期刊
Biochemical pharmacology
Biochemical pharmacology 医学-药学
CiteScore
10.30
自引率
1.70%
发文量
420
审稿时长
17 days
期刊介绍: Biochemical Pharmacology publishes original research findings, Commentaries and review articles related to the elucidation of cellular and tissue function(s) at the biochemical and molecular levels, the modification of cellular phenotype(s) by genetic, transcriptional/translational or drug/compound-induced modifications, as well as the pharmacodynamics and pharmacokinetics of xenobiotics and drugs, the latter including both small molecules and biologics. The journal''s target audience includes scientists engaged in the identification and study of the mechanisms of action of xenobiotics, biologics and drugs and in the drug discovery and development process. All areas of cellular biology and cellular, tissue/organ and whole animal pharmacology fall within the scope of the journal. Drug classes covered include anti-infectives, anti-inflammatory agents, chemotherapeutics, cardiovascular, endocrinological, immunological, metabolic, neurological and psychiatric drugs, as well as research on drug metabolism and kinetics. While medicinal chemistry is a topic of complimentary interest, manuscripts in this area must contain sufficient biological data to characterize pharmacologically the compounds reported. Submissions describing work focused predominately on chemical synthesis and molecular modeling will not be considered for review. While particular emphasis is placed on reporting the results of molecular and biochemical studies, research involving the use of tissue and animal models of human pathophysiology and toxicology is of interest to the extent that it helps define drug mechanisms of action, safety and efficacy.
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