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Plasma Lipid Profiling Contributes to Untangle the Complexity of Moyamoya Arteriopathy

发病机制 病理生理学 炎症 血管生成 鞘脂 生物标志物 医学 免疫学 病理 生物 内科学 细胞生物学 生物化学
作者
Michele Dei,Tatiana Carrozzini,Giuliana Pollaci,Antonella Potenza,Sara Nava,Isabella Canavero,Francesca Tinelli,Gemma Gorla,Ignazio G. Vetrano,Francesco Acerbi,Paolo Ferroli,Elisa Ciceri,Silvia Esposito,Veronica Saletti,Emilio Ciusani,Aı́da Zulueta,Rita Paroni,E. Parati,Riccardo Ghidoni,Bradford B. Worrall,Laura Gatti
出处
期刊:International Journal of Molecular Sciences [Multidisciplinary Digital Publishing Institute]
卷期号:22 (24): 13410-13410 被引量:11
标识
DOI:10.3390/ijms222413410
摘要

Moyamoya arteriopathy (MA) is a rare cerebrovascular disorder characterized by ischemic/hemorrhagic strokes. The pathophysiology is unknown. A deregulation of vasculogenic/angiogenic/inflammatory pathways has been hypothesized as a possible pathophysiological mechanism. Since lipids are implicated in modulating neo-vascularization/angiogenesis and inflammation, their deregulation is potentially involved in MA. Our aim is to evaluate angiogenic/vasculogenic/inflammatory proteins and lipid profile in plasma of MA patients and control subjects (healthy donors HD or subjects with atherosclerotic cerebrovascular disease ACVD). Angiogenic and inflammatory protein levels were measured by ELISA and a complete lipidomic analysis was performed on plasma by mass spectrometry. ELISA showed a significant decrease for MMP-9 released in plasma of MA. The untargeted lipidomic analysis showed a cumulative depletion of lipid asset in plasma of MA as compared to HD. Specifically, a decrease in membrane complex glycosphingolipids peripherally circulating in MA plasma with respect to HD was observed, likely suggestive of cerebral cellular recruitment. The quantitative targeted approach demonstrated an increase in free sphingoid bases, likely associated with a deregulated angiogenesis. Our findings indicate that lipid signature could play a central role in MA and that a detailed biomarker profile may contribute to untangle the complex, and still obscure, pathogenesis of MA.

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