Spatial metabolomics identifies lipid profiles of human carotid atherosclerosis

脂质代谢 甘油磷脂 脂类学 颈动脉内膜切除术 病理 内科学 鞘脂 医学 生物 生物化学 颈动脉 磷脂
作者
Wei Li,Jichang Luo,Fangda Peng,Ruiting Liu,Xue‐Song Bai,Tao Wang,Xiao Zhang,Junge Zhu,Xuying Li,Zhanjun Wang,Wubin Liu,Jiyue Wang,Liyong Zhang,Xianyang Chen,Teng Xue,Chunguang Ding,Chaodong Wang,Liqun Jiao
出处
期刊:Atherosclerosis [Elsevier BV]
卷期号:364: 20-28 被引量:23
标识
DOI:10.1016/j.atherosclerosis.2022.11.019
摘要

Carotid atherosclerosis is an important cause of ischemic stroke. Lipids play a key role in the progression of atherosclerosis. To date, the spatial lipid profile of carotid atherosclerotic plaques related to histology has not been systematically investigated.Carotid atherosclerosis samples from 12 patients were obtained and classified into four classical pathological stages (preatheroma, atheroma, fibroatheroma and complicated lesion) by histological staining. Desorption electrospray ionization-mass spectrometry imaging (DESI-MSI) was used to investigate the lipid profile of carotid atherosclerosis, and correlated it with histological information. Bioinformatics technology was used to process MSI data among different pathological stages of atherosclerosis lesions.A total of 55 lipids (26 throughout cross-section regions [TCSRs], 13 in lipid-rich regions [LRRs], and 16 in collagen-rich regions [CRRs]) were initially identified in carotid plaque from one patient. Subsequently, 32 of 55 lipids (12 in TCSRs, eight in LRRs, and 12 in CRRs) were further screened in 11 patients. Pathway enrichment analysis showed that multiple metabolic pathways, such as fat digestion and absorption, cholesterol metabolism, lipid and atherosclerosis, were enriched in TCSRs; sphingolipid signaling pathway, necroptosis pathway were enriched in LRRs; and glycerophospholipid metabolism, ether lipid metabolism pathway were mainly enriched in CRRs.This study comprehensively showed the spatial lipid metabolism footprint in human carotid atherosclerotic plaques. The lipid profiles and related metabolism pathways in three regions of plaque with disease progression were different markedly, suggesting that the different metabolic mechanisms in these regions of carotid plaque may be critical in atherosclerosis progression.
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