CKN reduces TLR4-mediated inflammation and cerebral I/R injury by activating the LXRα/ABCA1 pathway in microglia

IF 5.1 2区 医学 Q1 MEDICINE, RESEARCH & EXPERIMENTAL Life sciences Pub Date : 2025-03-17 DOI:10.1016/j.lfs.2025.123571
Xuejiao Lei , Xiaodong Ran , Jiawei Wang , Lin Li , Niting Wu , Xufang Ru , Pengbo Wang , Xiaohui Li , Wenyan Li , Yan Huang
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Abstract

Aims

CKN is a self-developed LXRα agonist capable of up-regulating the expression of ABCA1, diminishing intracellular lipid deposition, and attenuating the inflammatory response. Nevertheless, the protective effect and mechanism of ischemic stroke remain indistinct. The aim of this study is to investigate the therapeutic effects and the underlying mechanisms of CKN in ischemic stroke.

Materials and methods

In this study, the tMCAO model was utilized to induce cerebral artery occlusion in mice, and cholesterol-induced BV2 and primary microglia models were adopted. Neuronal damage and the effect of CKN on ABCA1 expression, lipid deposition, and TLR4 signaling in penumbra microglia were assessed.

Key findings

The results demonstrated that: (1) CKN treatment markedly ameliorated the neurological deficit score of the tMCAO model, contracted the infarct size, and mitigated the damage of the cerebral cortex. (2) CKN has the capacity to up-regulate the expression of ABCA1 in microglia within the ischemic penumbra by activating the LXRα/ABCA1 signaling pathway, and minimize lipid deposition and inflammatory responses. (3) The activation of the LXRα/ABCA1 signaling pathway is profoundly implicated in the inflammatory response triggered by CKN inhibition of the TLR4 signaling pathway in microglia.

Significance

The present study demonstrated for the first time that the activation of the LXRα/ABCA1 signaling possessed the ability to attenuate reperfusion injury in ischemic stroke by means of reducing lipid droplet formation and TLR4-mediated inflammatory signaling within microglia in the ischemic penumbra.

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CKN通过激活小胶质细胞中的LXRα/ABCA1通路,减少tlr4介导的炎症和脑I/R损伤。
目的:CKN是一种自主研发的LXRα激动剂,能够上调ABCA1的表达,减少细胞内脂质沉积,减轻炎症反应。然而,缺血性脑卒中的保护作用和机制尚不清楚。本研究旨在探讨CKN对缺血性脑卒中的治疗作用及其机制。材料和方法:本研究采用tMCAO模型诱导小鼠脑动脉闭塞,采用胆固醇诱导的BV2模型和原代小胶质细胞模型。评估神经元损伤及CKN对半暗带小胶质细胞ABCA1表达、脂质沉积和TLR4信号的影响。主要发现:结果表明:(1)CKN治疗显著改善了tMCAO模型的神经功能缺损评分,缩小了梗死面积,减轻了大脑皮层的损伤。(2) CKN能够通过激活LXRα/ABCA1信号通路,上调缺血半暗带内小胶质细胞中ABCA1的表达,减少脂质沉积和炎症反应。(3) LXRα/ABCA1信号通路的激活与CKN抑制TLR4信号通路引发的小胶质细胞炎症反应密切相关。意义:本研究首次证实LXRα/ABCA1信号的激活通过减少缺血半暗带小胶质细胞内脂滴形成和tlr4介导的炎症信号传导,具有减轻缺血性卒中再灌注损伤的能力。
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来源期刊
Life sciences
Life sciences 医学-药学
CiteScore
12.20
自引率
1.60%
发文量
841
审稿时长
6 months
期刊介绍: Life Sciences is an international journal publishing articles that emphasize the molecular, cellular, and functional basis of therapy. The journal emphasizes the understanding of mechanism that is relevant to all aspects of human disease and translation to patients. All articles are rigorously reviewed. The Journal favors publication of full-length papers where modern scientific technologies are used to explain molecular, cellular and physiological mechanisms. Articles that merely report observations are rarely accepted. Recommendations from the Declaration of Helsinki or NIH guidelines for care and use of laboratory animals must be adhered to. Articles should be written at a level accessible to readers who are non-specialists in the topic of the article themselves, but who are interested in the research. The Journal welcomes reviews on topics of wide interest to investigators in the life sciences. We particularly encourage submission of brief, focused reviews containing high-quality artwork and require the use of mechanistic summary diagrams.
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