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统一质量成像绘制脊椎动物发育的脂质组图谱。

Unified mass imaging maps the lipidome of vertebrate development.

作者信息

Schede Halima Hannah, Alieh Leila Haj Abdullah, Rohde Laurel Ann, Herrera Antonio, Schlaeppi Anjalie, Valentin Guillaume, Gargoori Motlagh Alireza, Dominguez Mantes Albert, Jollivet Chloe, Paz-Montoya Jonathan, Capolupo Laura, Khven Irina, Oates Andrew C, D'Angelo Giovanni, La Manno Gioele

机构信息

Institute of Bioengineering, School of Life Sciences, Swiss Federal Institute of Technology (EPFL), Lausanne, Switzerland.

Brain Mind Institute, School of Life Sciences, Swiss Federal Institute of Technology (EPFL), Lausanne, Switzerland.

出版信息

Nat Methods. 2025 Sep 3. doi: 10.1038/s41592-025-02771-7.

Abstract

Embryo development entails the formation of anatomical structures with distinct biochemical compositions. Compared with the wealth of knowledge on gene regulation, our understanding of metabolic programs operating during embryogenesis is limited. Mass spectrometry imaging (MSI) has the potential to map the distribution of metabolites across embryo development. Here we established uMAIA, an analytical framework for the joint analysis of large MSI datasets, which enables the construction of multidimensional metabolomic atlases. Employing this framework, we mapped the four-dimensional (4D) distribution of over a hundred lipids at micrometric resolution in Danio rerio embryos. We discovered metabolic trajectories that unfold in concert with morphogenesis and revealed spatially organized biochemical coordination overlooked by bulk measurements. Interestingly, lipid mapping revealed unexpected distributions of sphingolipid and triglyceride species, suggesting their involvement in pattern establishment and organ development. Our approach empowers a new generation of whole-organism metabolomic atlases and enables the discovery of spatially organized metabolic circuits.

摘要

胚胎发育需要形成具有不同生化组成的解剖结构。与基因调控方面丰富的知识相比,我们对胚胎发生过程中运行的代谢程序的了解有限。质谱成像(MSI)有潜力绘制整个胚胎发育过程中代谢物的分布图谱。在此,我们建立了uMAIA,这是一个用于联合分析大型MSI数据集的分析框架,能够构建多维代谢组图谱。利用这个框架,我们在斑马鱼胚胎中以微米级分辨率绘制了一百多种脂质的四维(4D)分布图。我们发现了与形态发生协同展开的代谢轨迹,并揭示了整体测量所忽略的空间组织化生化协调。有趣的是,脂质图谱揭示了鞘脂和甘油三酯种类的意外分布,表明它们参与了模式建立和器官发育。我们的方法推动了新一代全生物体代谢组图谱的发展,并能够发现空间组织化的代谢回路。

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