Minimally Oxidized-LDL-Driven Alterations in the Level of Pathological Mediators and Biological Processes in Carotid Atherosclerosis

Finosh G. Thankam, Taj Rai, Jeffrey Liu, J. Tam, D. Agrawal
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引用次数: 3

Abstract

The global burden of cerebrovascular disease, especially cerebral infarction has been increasing at an alarming rate with the atherosclerosis in carotid arteries as the primary risk factor. Despite the active involvement of minimally oxidized LDL (oxLDL) in atherosclerosis, limited information is available regarding the role of oxLDL in the pathogenesis of cerebrovascular diseases. The present study utilized the carotid bifurcation tissues and isolated carotid SMCs challenged with oxLDL from clinically relevant minimally invasive minimally-oxLDL-induced carotid atheroma microswine model to examine the levels of pro-atherogenic and pro-inflammatory mediators and cellular processes following immunostaining approaches. The immunopositivity of IL18, PDGFRA, IL17, LOX1, TLR4, MYF5, IL1B, and PDPN were increased in the carotid artery bifurcation tissues with a concomitant decrease in DAMPs, HMGB1 and S100B in oxLDL (600μg)-treated group compared to non-intervention control. Moreover, the cultured SMCs displayed increased level of IL18, LOX1, TLR4, MYF5, NLRP3, and PDPN upon challenging with oxLDL (100 mg/ml) compared to non-treatment control. In addition, the SMCs treated with oxLDL were resistant to the peroxidation of lipids as evident from lipid peroxidation staining. Also, the oxLDL displayed compromised mitochondrial membrane potential based on mitochondrial pore transition assay and increased hypertrophy due to decreased level of microtubules. Overall, oxLDL alters the expression status of pathological mediators and multiple biological processes in carotid SMCs aggravating carotid atherosclerosis. The understanding regarding the molecular mechanisms underlying oxLDL-driven pathological events would open novel translational avenues in the management of carotid atherosclerosis.
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极少量氧化低密度脂蛋白驱动的颈动脉粥样硬化病理介质水平和生物学过程的变化
脑血管疾病,特别是脑梗死的全球负担以惊人的速度增加,颈动脉粥样硬化是主要的危险因素。尽管最低氧化低密度脂蛋白(oxLDL)在动脉粥样硬化中有积极作用,但关于oxLDL在脑血管疾病发病机制中的作用的信息有限。本研究利用颈动脉分叉组织和从临床相关的微创oxLDL诱导的颈动脉粥样硬化微葡萄酒模型中分离的oxLDL攻击的颈动脉SMC,通过免疫染色方法检测促动脉粥样硬化和促炎介质的水平以及细胞过程。与非干预对照组相比,oxLDL(600μg)治疗组颈动脉分叉组织中IL18、PDGFRA、IL17、LOX1、TLR4、MYF5、IL1B和PDPN的免疫阳性率增加,同时DAMP、HMGB1和S100B降低。此外,与非治疗对照相比,在用oxLDL(100mg/ml)攻击时,培养的SMC显示出IL18、LOX1、TLR4、MYF5、NLRP3和PDPN水平增加。此外,oxLDL处理的SMC对脂质过氧化具有抗性,这从脂质过氧化染色中可以明显看出。此外,基于线粒体孔转换测定,oxLDL显示线粒体膜电位受损,并且由于微管水平降低而增加肥大。总的来说,oxLDL改变了加重颈动脉粥样硬化的颈动脉SMC中病理介质和多种生物学过程的表达状态。对oxLDL驱动的病理事件的分子机制的理解将为颈动脉粥样硬化的治疗开辟新的转化途径。
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