Laboratory of Analytical Biochemistry and Metabolomics, Biology Centre, Czech Academy of Sciences, České Budějovice, Czech Republic; Department of Chemistry of Natural Compounds, Faculty of Food and Biochemical Technology, University of Chemistry and Technology Prague, Prague, Czech Republic.
Laboratory of Analytical Biochemistry and Metabolomics, Biology Centre, Czech Academy of Sciences, České Budějovice, Czech Republic.
J Lipid Res. 2024 Oct;65(10):100640. doi: 10.1016/j.jlr.2024.100640. Epub 2024 Sep 5.
Ecdysteroids represent a large class of polyhydroxylated steroids which, due to their anabolic properties, are marketed as dietary supplements. Some ecdysteroids also act as important hormones in arthropods, where they regulate molting, development, and reproduction and many of these insects are miniature organisms that contain submicroliter levels of circulating biofluids. Analysis of ecdysteroids is further complicated by their very low abundance, large fluctuations during development, and difficult access to a pooled sample, which is important for quantitative measurements. In this work, we propose a new method that overcomes the described difficulties and allows validated quantification of four ecdysteroids in minimal amounts of biological material. After methanolic extraction, detectability of the ecdysteroids is increased 16- to 20-fold by conversion to their 14,15-anhydrooximes. These are further purified by pipette tip solid-phase extraction on a three-layer sorbent and subjected to HPLC-MS/MS analysis. Full validation was achieved using hemolymph from larvae of the firebug Pyrrhocoris apterus as a blank matrix and by the determination of ecdysteroids in a single Drosophila larva. The lower limit of quantifications for the four target ecdysteroids (20-hydroxyecdysone, ecdysone, makisterone A, and 2-deoxyecdysone) were 0.01; 0.1; 0.05; and 0.025 pg·ml (20; 200; 100; 50 fmol ml), respectively, with very good accuracy, precision (expressed as relative standard deviation <15%) and recoveries (96%-119.9%). The application potential of the new method was demonstrated by quantification of ecdysteroids in various biological materials including human serum.
蜕皮甾酮属于一大类多羟基甾类化合物,由于其具有合成代谢特性,因此被作为膳食补充剂销售。一些蜕皮甾酮也作为节肢动物的重要激素,在这些动物中,它们调节蜕皮、发育和繁殖,许多这些昆虫是含有亚微升循环生物流体的微型生物体。蜕皮甾酮的分析进一步复杂化,因为它们的丰度非常低,在发育过程中波动很大,并且难以获得混合样本,这对于定量测量很重要。在这项工作中,我们提出了一种新方法,该方法克服了上述困难,并允许在最小量的生物材料中验证定量测量四种蜕皮甾酮。在甲醇提取后,通过将蜕皮甾酮转化为其 14,15-脱水肟,可将其检测性提高 16-20 倍。这些进一步通过在三层吸附剂上的移液器尖端固相萃取进行纯化,并进行 HPLC-MS/MS 分析。使用来自 Pyrrhocoris apterus 幼虫的血淋巴作为空白基质并通过单个果蝇幼虫中蜕皮甾酮的测定来实现全面验证。四种目标蜕皮甾酮(20-羟基蜕皮甾酮、蜕皮甾酮、makisterone A 和 2-脱氧蜕皮甾酮)的定量下限分别为 0.01;0.1;0.05;和 0.025 pg·ml(20;200;100;50 fmol·ml),具有非常好的准确性、精密度(表示为相对标准偏差 <15%)和回收率(96%-119.9%)。该新方法的应用潜力通过在各种生物材料中定量测定蜕皮甾酮来证明,包括人血清。