Leibniz-Institut für Analytische Wissenschaften-ISAS-e.V., Dortmund, Germany.
Department of Cardiology and Cardiovascular Medicine and.
Blood. 2018 Aug 2;132(5):e1-e12. doi: 10.1182/blood-2017-12-822890. Epub 2018 May 21.
Platelet integrity and function critically depend on lipid composition. However, the lipid inventory in platelets was hitherto not quantified. Here, we examined the lipidome of murine platelets using lipid-category tailored protocols on a quantitative lipidomics platform. We could show that the platelet lipidome comprises almost 400 lipid species and covers a concentration range of 7 orders of magnitude. A systematic comparison of the lipidomics network in resting and activated murine platelets, validated in human platelets, revealed that <20% of the platelet lipidome is changed upon activation, involving mainly lipids containing arachidonic acid. Sphingomyelin phosphodiesterase-1 (Smpd1) deficiency resulted in a very specific modulation of the platelet lipidome with an order of magnitude upregulation of lysosphingomyelin (SPC), and subsequent modification of platelet activation and thrombus formation. In conclusion, this first comprehensive quantitative lipidomic analysis of platelets sheds light on novel mechanisms important for platelet function, and has therefore the potential to open novel diagnostic and therapeutic opportunities.
血小板的完整性和功能取决于脂质组成。然而,血小板中的脂质库存迄今尚未被量化。在这里,我们使用定量脂质组学平台上针对脂质类别的定制方案,检测了小鼠血小板中的脂质组。我们发现血小板脂质组几乎包含 400 种脂质,其浓度范围跨越 7 个数量级。对在人类血小板中验证的静止和激活的小鼠血小板中的脂质组学网络进行系统比较后发现,<20%的血小板脂质组在激活时发生变化,主要涉及含有花生四烯酸的脂质。鞘磷脂磷酸二酯酶-1(Smpd1)缺乏导致血小板脂质组发生非常特异性的调制,溶血鞘磷脂(SPC)的上调达 1 个数量级,随后修饰血小板激活和血栓形成。总之,这项对血小板进行的首次全面的定量脂质组学分析揭示了对血小板功能很重要的新机制,因此有可能开辟新的诊断和治疗机会。