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A Comparative Study of Fat Storage Quantitation in Nematode Caenorhabditis elegans Using Label and Label-Free Methods

机译:使用标记和无标记方法对线虫秀丽隐杆线虫中脂肪储存定量的比较研究

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摘要

The nematode Caenorhabditis elegans has been employed as a model organism to study human obesity due to the conservation of the pathways that regulate energy metabolism. To assay for fat storage in C. elegans, a number of fat-soluble dyes have been employed including BODIPY, Nile Red, Oil Red O, and Sudan Black. However, dye-labeled assays produce results that often do not correlate with fat stores in C. elegans. An alternative label-free approach to analyze fat storage in C. elegans has recently been described with coherent anti-Stokes Raman scattering (CARS) microscopy. Here, we compare the performance of CARS microscopy with standard dye-labeled techniques and biochemical quantification to analyze fat storage in wild type C. elegans and with genetic mutations in the insulin/IGF-1 signaling pathway including the genes daf-2 (insulin/IGF-1 receptor), rict-1 (rictor) and sgk-1 (serum glucocorticoid kinase). CARS imaging provides a direct measure of fat storage with unprecedented details including total fat stores as well as the size, number, and lipid-chain unsaturation of individual lipid droplets. In addition, CARS/TPEF imaging reveals a neutral lipid species that resides in both the hypodermis and the intestinal cells and an autofluorescent organelle that resides exclusively in the intestinal cells. Importantly, coherent addition of the CARS fields from the C-H abundant neutral lipid permits selective CARS imaging of the fat store, and further coupling of spontaneous Raman analysis provides unprecedented details including lipid-chain unsaturation of individual lipid droplets. We observe that although daf-2, rict-1, and sgk-1 mutants affect insulin/IGF-1 signaling, they exhibit vastly different phenotypes in terms of neutral lipid and autofluorescent species. We find that CARS imaging gives quantification similar to standard biochemical triglyceride quantification. Further, we independently confirm that feeding worms with vital dyes does not lead to the staining of fat stores, but rather the sequestration of dyes in lysosome-related organelles. In contrast, fixative staining methods provide reproducible data but are prone to errors due to the interference of autofluorescent species and the non-specific staining of cellular structures other than fat stores. Importantly, both growth conditions and developmental stage should be considered when comparing methods of C. elegans lipid storage. Taken together, we confirm that CARS microscopy provides a direct, non-invasive, and label-free means to quantitatively analyze fat storage in living C. elegans.
机译:由于保留了调节能量代谢的途径,线虫秀丽隐杆线虫已被用作研究肥胖的模型生物。为了测定秀丽隐杆线虫中的脂肪存储,已使用了许多脂溶性染料,包括BODIPY,尼罗红,油红O和苏丹黑。但是,染料标记的测定所产生的结果通常与秀丽隐杆线虫中的脂肪储存不相关。最近,使用相干抗斯托克斯拉曼散射(CARS)显微镜描述了一种替代的无标记方法,用于分析秀丽隐杆线虫中的脂肪存储。在这里,我们将CARS显微镜的性能与标准的染料标记技术和生化定量分析相比较,以分析野生型秀丽隐杆线虫中的脂肪存储以及胰岛素/ IGF-1信号通路中的遗传突变,包括基因daf-2(胰岛素/ IGF-1受体),rict-1(rictor)和sgk-1(血清糖皮质激素激酶)。 CARS成像提供了直接的脂肪存储量度,具有前所未有的细节,包括总脂肪存储量以及单个脂质小滴的大小,数量和脂质链不饱和度。此外,CARS / TPEF成像显示存在于皮下组织和肠细胞中的中性脂质种类以及仅存在于肠细胞中的自体荧光细胞器。重要的是,从C-H丰富的中性脂质中相干地添加CARS字段可以对脂肪存储进行选择性CARS成像,并且自发拉曼分析的进一步耦合提供了前所未有的细节,包括单个脂质液滴的脂质链不饱和。我们观察到,尽管daf-2,rict-1和sgk-1突变体影响胰岛素/ IGF-1信号传导,但它们在中性脂质和自发荧光物质方面表现出截然不同的表型。我们发现,CARS成像可提供类似于标准生化甘油三酸酯定量的定量结果。此外,我们独立地证实,用活体染料喂养蠕虫并不会导致脂肪存储的染色,而是会导致溶酶体相关细胞器中的染料被隔离。相比之下,固定染色方法可提供可重现的数据,但由于自发荧光物质的干扰以及除脂肪存储区以外的细胞结构的非特异性染色,容易产生错误。重要的是,在比较秀丽隐杆线虫脂质存储方法时,应同时考虑生长条件和发育阶段。综上所述,我们确认CARS显微镜技术提供了直接,无创且无标签的方法来定量分析生活秀丽隐杆线虫中的脂肪。

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