College of Nursing and Health Innovation, The University of Texas at Arlington, 411 S. Nedderman Dr., Arlington, TX 76019, USA.
Shimadzu Center for Advanced Analytical Chemistry, The University of Texas at Arlington, 700 Planetarium Place, Arlington, TX 76019, USA.
Anal Chim Acta. 2017 Sep 1;984:151-161. doi: 10.1016/j.aca.2017.07.024. Epub 2017 Jul 14.
Lipid mediators (LMs) are a class of bioactive metabolites of the essential polyunsaturated fatty acids (PUFA), which are involved in many physiological processes. Their quantification in biological samples is critical for understanding their functions in lifestyle and chronic diseases, such as diabetes, as well allergies, cancers, and in aging processes. We developed a rapid, and sensitive LC-MS/MS method to quantify the concentrations of 14 lipid mediators of interest in mouse skeletal muscle tissue without time-consuming liquid-liquid or solid-phase extractions. A restricted-access media (RAM) based trap was used prior to LC-MS as cleanup process to prevent the analytical column from clogging and deterioration. The system enabled automatic removal of residual proteins and other biological interferences presented in the tissue extracts; the target analytes were retained in the trap and then eluted to an analytical column for separation. Matrix evaluation tests demonstrated that the use of the combined RAM trap and chromatographic separation efficiently eliminated the biological or chemical matrix interferences typically encountered in bioanalytical analysis. Using 14 LM standards and 12 corresponding deuterated compounds as internal standards, the five-point calibration curves, established over the concentration range of 0.031-320 ng mL, demonstrated good linearity of r > 0.9903 (0.9903-0.9983). The lower detection limits obtained were 0.016, 0.031, 0.062, and 0.31 ng mL (0.5, 1, 2, and 10 pg on column), respectively, depending on the specific compounds. Good accuracy (87.1-114.5%) and precision (<13.4%) of the method were observed for low, medium, and high concentration quality control samples. The method was applied to measure the amount of 14 target LMs in mouse skeletal muscle tissues. All 14 analytes in this study were successfully detected and quantified in the gastrocnemius muscle samples, which provided crucial information for both age and gender-related aspects of LMs signaling in skeletal muscles previously unknown. This method could be applied to advance the understanding of skeletal muscle pathophysiology to study the role of LMs in health and disease. Furthermore, we will expand the application of this methodology to humans and other tissues/matrices in the near future.
脂质介质 (LMs) 是一类生物活性代谢产物,源自必需的多不饱和脂肪酸 (PUFA),参与许多生理过程。在生物样本中对其进行定量分析对于理解其在生活方式和慢性疾病(如糖尿病、过敏、癌症和衰老过程)中的作用至关重要。我们开发了一种快速灵敏的 LC-MS/MS 方法,用于定量分析小鼠骨骼肌组织中 14 种感兴趣的脂质介质的浓度,无需耗时的液液或固相萃取。在 LC-MS 之前,使用基于受限访问介质 (RAM) 的捕集器作为净化过程,以防止分析柱堵塞和劣化。该系统能够自动去除组织提取物中存在的残留蛋白质和其他生物干扰物;目标分析物被保留在捕集器中,然后洗脱到分析柱进行分离。基质评价测试表明,结合 RAM 捕集器和色谱分离,可有效消除生物分析中常见的生物或化学基质干扰。使用 14 种 LM 标准品和 12 种相应的氘代化合物作为内标,在 0.031-320ngmL 的浓度范围内建立的五点校准曲线具有良好的线性关系,r>0.9903(0.9903-0.9983)。根据具体化合物的不同,获得的最低检测限分别为 0.016、0.031、0.062 和 0.31ngmL(柱上分别为 0.5、1、2 和 10pg)。对于低、中、高浓度质控样品,该方法的准确性(87.1%-114.5%)和精密度(<13.4%)良好。该方法应用于测量小鼠骨骼肌组织中 14 种目标 LMs 的含量。在腓肠肌样本中成功检测和定量了本研究中的 14 种分析物,为以前未知的骨骼肌中 LMs 信号的年龄和性别相关方面提供了关键信息。该方法可用于推进对骨骼肌病理生理学的理解,以研究 LMs 在健康和疾病中的作用。此外,我们将在不久的将来将该方法应用于人类和其他组织/基质。