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用于临床诊断的脂质组学:基质辅助激光解吸/电离质谱成像中脂质检测的染料辅助激光解吸/电离(DALDI)方法。

Lipidomics for clinical diagnosis: Dye-Assisted Laser Desorption/Ionization (DALDI) method for lipids detection in MALDI mass spectrometry imaging.

作者信息

Arafah Karim, Longuespée Rémi, Desmons Annie, Kerdraon Olivier, Fournier Isabelle, Salzet Michel

机构信息

1 Laboratoire de Protéomique, Réponse Inflammatoire, Spectrométrie de Masse (PRISM), Université de Lille 1 , Cité Scientifique, Villeneuve D'Ascq, France.

出版信息

OMICS. 2014 Aug;18(8):487-98. doi: 10.1089/omi.2013.0175. Epub 2014 Jun 6.

Abstract

Lipid-based biomarkers for research and diagnosis are rapidly emerging to unpack the basis of person-to-person and population variations in disease susceptibility, drug and nutritional responses, to name but a few. Hence, with the advent of MALDI Mass Spectrometry Imaging, lipids have begun to be investigated intensively. However, lipids are highly mobile during tissue preparation, and are soluble in the solvent used for matrix preparation or in the fixing fluid such as formalin, resulting in substantial delocalization. In the present article, we investigated as another alternative, the possibility of using specific dyes that can absorb UV wavelengths, in order to desorb the lipids specifically from tissue sections, and are known to immobilize them in tissues. Indeed, after lipid insolubilization with chromate solution or chemical fixation with osmium tetroxide, heterocyclic-based dyes can be directly used without matrix. Taking into account the fact that some dyes have this matrix-free capability, we identified particular dyes dedicated to histological staining of lipids that could be used with MALDI mass spectrometry imaging. We stained tissue sections with either Sudan Black B, Nile Blue A, or Oil Red O. An important advantage of this assay relies on its compatibility with usual practices of histopathological investigation of lipids. As a new method, DALDI stands for Dye-Assisted Laser Desorption Ionization and allows for future clinical and histopathological applications using routine histological protocols. Additionally, this novel methodology was validated in human ovarian cancer biopsies to demonstrate its use as a suitable procedure, for histological diagnosis in lipidomics field.

摘要

用于研究和诊断的基于脂质的生物标志物正在迅速兴起,以揭示个体间和人群在疾病易感性、药物和营养反应等方面差异的基础,仅举几例。因此,随着基质辅助激光解吸电离质谱成像技术的出现,脂质开始受到深入研究。然而,脂质在组织制备过程中具有高度流动性,并且可溶于用于基质制备的溶剂或福尔马林等固定液中,导致大量脂质移位。在本文中,我们研究了另一种替代方法,即使用能够吸收紫外线波长的特定染料,以便从组织切片中特异性解吸脂质,并已知这些染料能将脂质固定在组织中。事实上,在用铬酸盐溶液使脂质不溶解或用四氧化锇进行化学固定后,基于杂环的染料无需基质即可直接使用。考虑到一些染料具有这种无基质能力,我们确定了专门用于脂质组织学染色的特定染料,这些染料可与基质辅助激光解吸电离质谱成像技术一起使用。我们用苏丹黑B、尼罗蓝A或油红O对组织切片进行染色。该检测方法的一个重要优点在于它与脂质组织病理学研究的常规操作具有兼容性。作为一种新方法,染料辅助激光解吸电离(DALDI)代表染料辅助激光解吸电离,它允许未来使用常规组织学方案进行临床和组织病理学应用。此外,这种新方法在人类卵巢癌活检中得到了验证,以证明其作为脂质组学领域组织学诊断的合适程序的用途。

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