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首页> 外文期刊>Journal of chromatography, B. Analytical technologies in the biomedical and life sciences >Qualitative distribution of endogenous sphingolipids in plasma of human and rodent species by UPLC-Q-Exactive-MS
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Qualitative distribution of endogenous sphingolipids in plasma of human and rodent species by UPLC-Q-Exactive-MS

机译:UPLC-Q-Axactive-MS对人和啮齿动物等血浆内源性鞘脂的定性分布

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摘要

Sphingolipids (SLs) are endogenously bioactive molecules with diverse structures, and its metabolic disorders are involved in the progression of many diseases. In this study, an ultra-performance liquid chromatography quadrupole exactive mass spectrometry (UPLC-Q-Exactive-MS) method was established to comprehensively profile SLs in plasma. First, the fragment patterns of SL standards of each subclass were investigated. Then, the SL species in plasma were characterized based on the fragmentation rules. Finally, a total of 144 endogenous SL species consisting of 216 regioisomers were identified in plasma of human, golden hamster and C57BL/6 mice, which was the most comprehensive identification for SLs in plasma. In addition to the known species, 19 SL species that have never been reported were also identified. The profile of SLs in plasma of human and two rodent species was compared subsequently. It was worth noting that a total of 9 SL molecular species consisting of 11 regioisomers with low abundance were successfully identified in human plasma through comparison among species. Those findings contribute to a deeper understanding of SLs in human plasma and provide scientific basis for the selection of animal model. The established profile of SLs in plasma could be used for screening of lipid biomarkers of various diseases.
机译:鞘脂是一种具有多种结构的内源性生物活性分子,其代谢紊乱参与了多种疾病的进展。本研究建立了超高效液相色谱-四极杆萃取质谱(UPLC-Q-exactive-MS)方法,用于全面分析血浆中的SLs。首先,研究了每个亚类的SL标准片段模式。然后,根据碎片规则对血浆中的SL物种进行了表征。最后,在人类、金黄地鼠和C57BL/6小鼠的血浆中共鉴定出144种内源性SL物种,包括216个区域异构体,这是对血浆中SLs最全面的鉴定。除已知物种外,还发现了19种从未报告过的SL物种。随后比较了人和两种啮齿类动物血浆中SLs的分布。值得注意的是,通过物种间的比较,在人类血浆中成功鉴定出9种SL分子物种,包括11个低丰度区域异构体。这些发现有助于深入了解人血浆中的SLs,并为动物模型的选择提供科学依据。所建立的SLs在血浆中的分布可用于筛选各种疾病的脂质生物标志物。

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