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在高级斑块中,纤维帽中的 PCSK9 表达具有破裂的标志物。

PCSK9 expression in fibrous cap possesses a marker for rupture in advanced plaque.

机构信息

Department of Neurology, Fudan University Zhongshan Hospital, Shanghai, China.

Department of Neurovascular Center, Naval Medical University Changhai Hospital, Shanghai, China.

出版信息

Vasc Med. 2024 Oct;29(5):483-495. doi: 10.1177/1358863X241252370. Epub 2024 Jun 11.

Abstract

BACKGROUND

To date, PCSK9 inhibitors are well known for eliminating cardiac and cerebral artery ischemia events by lowering the serum lipid level. However, the pathophysiological value of in-plaque PCSK9 expression is still unclear.

METHODS

Advanced plaques removed by carotid endarterectomy were sectioned and stained to identify the PCSK9 expression pattern and its co-expression with rupture-relevant markers. To investigate the correlation of PCSK9 expression with regional blood shear flow, hemodynamic characteristics were analyzed using computational fluid dynamics, and representative parameters were compared between PCSK9 positive and negative staining plaques. To explore this phenomenon in vitro, human aortic vascular smooth muscle cells were used to overexpress and knock down PCSK9. The impacts of PCSK9 modulations on mechanical sensor activity were testified by western blot and immunofluorescence. Real-time polymerase chain reaction was used to evaluate the transcription levels of downstream rupture-prone effectors.

RESULTS

PCSK9 distribution in plaque preferred cap and shoulder regions, residing predominantly in smooth muscle actin-positive cells. Cap PCSK9 expression correlated with fibrous cap thickness negatively and co-expressed with MMP-9, both pointing to the direction of plaque rupture. A hemodynamic profile indicated a rupture-prone feature of cap PCSK9 expression. In vitro, overexpression and knockdown of PCSK9 in human aortic vascular smooth muscle cells has positive modulation on mechanical sensor Yes-associated protein 1 (YAP) activity and transcription levels of its downstream rupture-prone effectors. Serial section staining verified in situ colocalization among PCSK9, YAP, and downstream effectors.

CONCLUSIONS

Cap PCSK9 possesses a biomarker for rupture risk, and its modulation may lead to a novel biomechanical angle for plaque interventions.

摘要

背景

迄今为止,PCSK9 抑制剂通过降低血清脂质水平,已被证实可消除心脏和脑动脉缺血事件。然而,斑块内 PCSK9 表达的病理生理学价值尚不清楚。

方法

通过颈动脉内膜切除术切除的高级斑块被切片并染色,以确定 PCSK9 表达模式及其与破裂相关标志物的共表达。为了研究 PCSK9 表达与局部血流剪切力的相关性,使用计算流体动力学分析血流动力学特征,并比较 PCSK9 阳性和阴性染色斑块之间的代表性参数。为了在体外探索这一现象,使用人主动脉血管平滑肌细胞过表达和敲低 PCSK9。通过 Western blot 和免疫荧光法验证 PCSK9 调节对机械传感器活性的影响。使用实时聚合酶链反应评估下游易破裂效应物的转录水平。

结果

斑块中 PCSK9 的分布倾向于帽和肩部区域,主要位于平滑肌肌动蛋白阳性细胞中。帽部 PCSK9 表达与纤维帽厚度呈负相关,与 MMP-9 共表达,均指向斑块破裂的方向。血流动力学特征表明帽部 PCSK9 表达具有易破裂的特征。在体外,人主动脉血管平滑肌细胞中 PCSK9 的过表达和敲低对机械传感器 Yes 相关蛋白 1(YAP)活性及其下游易破裂效应物的转录水平具有正向调节作用。连续切片染色验证了 PCSK9、YAP 和下游效应物在原位的共定位。

结论

帽部 PCSK9 具有破裂风险的生物标志物,其调节可能为斑块干预提供新的生物力学角度。

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