Groupe de Chimie Analytique de Paris-Sud, EA4041, Faculté de Pharmacie, Univ Paris-Sud, 5 rue Jean-Baptiste Clément, 92296 Châtenay-Malabry Cedex, France.
Anal Bioanal Chem. 2012 Jan;402(3):1169-82. doi: 10.1007/s00216-011-5520-3. Epub 2011 Nov 8.
Leishmaniasis is a widespread parasitic disease principally treated by intravenous drugs. Hexadecylphosphocholine (miltefosine) has recently proved its efficacy by oral route. Although its mechanism of action has been investigated, and principally relies on perturbations of the metabolism of lipids and especially phospholipids, further studies need to be conducted to detect precisely which metabolic pathways are impacted. For this purpose, the present work proposes a complete lipidomic study focused on membrane phospholipids of clones of Leishmania donovani non-treated (NT), treated (T) and resistant (R) to miltefosine. Firstly, a separation of phospholipids in normal phase high-performance liquid chromatography (NP-HPLC) was coupled to a mass spectrometer (MS) equipped with an electrospray (ESI) ion source, and response was compared to evaporative light scattering detection (ELSD). Secondly, a quantification of phospholipid classes was performed using NP-HPLC/ESI/MS on NT, T and R clones of L. donovani. Thirdly, full-scan acquisitions of analyzed samples were compared using orthogonal signal correction-partial least square-discriminant analysis (OSC-PLS-DA) to highlight phospholipid molecular species of interest between the three types of clones. Structural determination of the most relevant species has finally been performed using tandem mass spectrometry. A first hypothesis on the effect of miltefosine on lipid metabolic pathways is then proposed.
利什曼病是一种广泛存在的寄生虫病,主要通过静脉注射药物进行治疗。十六烷基磷酸胆碱(米替福新)最近通过口服途径证明了其疗效。尽管已经对其作用机制进行了研究,主要依赖于脂质代谢,特别是磷脂代谢的紊乱,但仍需要进一步研究以准确检测哪些代谢途径受到影响。为此,本工作提出了一项针对未处理(NT)、处理(T)和对米替福新耐药(R)的利什曼原虫克隆的膜磷脂的完整脂质组学研究。首先,将正相高效液相色谱(NP-HPLC)与配备电喷雾(ESI)离子源的质谱仪(MS)相结合,对磷脂进行分离,并将响应与蒸发光散射检测(ELSD)进行比较。其次,使用 NP-HPLC/ESI/MS 对 NT、T 和 R 克隆的 L. donovani 进行磷脂类别的定量分析。第三,使用正交信号校正-偏最小二乘判别分析(OSC-PLS-DA)对分析样品的全扫描采集进行比较,以突出三种类型克隆之间感兴趣的磷脂分子种类。最后,使用串联质谱法对最相关的物种进行结构测定。然后提出了一个关于米替福新对脂质代谢途径影响的假设。