[Disrupting atherosclerotic plaque formation <i>via</i> the "<i>qi</i> meridian-blood channel": mechanism of <i>Jiangzhi Huaban</i> Decoction for regulating hepatic reverse cholesterol transport to improve atherosclerosis]. [PDF]
Wang H +8 more
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[ATF3 regulates inflammatory response in atherosclerotic plaques in mice through the NF-κB signaling pathway]. [PDF]
Xia B +8 more
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Association between remnant cholesterol and atherosclerosis plaques in single and multiple vascular territories. [PDF]
Liu X, Chen K, Wang Y, Wang J, Wang C.
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脂筏是位于细胞膜上的富含胆固醇和鞘脂的具有流动性的微结构域。其作为信号转导平台在动脉粥样硬化的发生发展中发挥关键作用。本文通过对脂筏的结构与功能特征以及其在动脉粥样硬化发生发展中作用的研究进展进行综述,包括其促进脂质蓄积和泡沫细胞形成、介导血管内皮功能障碍、激活多种炎症信号通路、引发炎症级联反应。旨在为防治动脉粥样硬化的新靶标提供思考。
李忱蔚, 海鹏丽, 杨楠, 徐立
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[circ_0084043/miR-31-5p Is Involved in Atherosclerosis by Regulating HMGA1: Investigation of the Mechanisms]. [PDF]
Wang K, Li Y, Ren X, Wang L.
europepmc +1 more source
[Correlation between the systemic immune<b>-</b>inflammation index and carotid atherosclerosis: A cross<b>-</b>sectional study based on a health examination population]. [PDF]
Liu R +7 more
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[Pharmacodynamics of Qingxin Jieyu Granules for treatment of atherosclerosis and its regulatory mechanism for lipid metabolism]. [PDF]
Zhang S +7 more
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[Relationship between lipid metabolism molecules in plasma and carotid atheroscle-rotic plaques, traditional cardiovascular risk factors, and dietary factors]. [PDF]
He J +8 more
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[Association between CMTM5 gene and coronary artery disease and the relative mechanism]. [PDF]
Liu TF, Lin T, Ren LH, Li GP, Peng JJ.
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[Effect of Porphyromonas gingivalis infection on atherosclerosis in apolipoprotein-E knockout mice]. [PDF]
Xuan Y +5 more
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