Department of Nutritional Sciences, The University of Texas at Austin, Austin, TX 78712, USA; Dell Pediatric Research Institute, Dell Medical School, The University of Texas at Austin, Austin, TX 78712, USA.
Department of Molecular Biosciences, College of Natural Sciences, The University of Texas at Austin, Austin, TX 78712, USA.
Anal Chim Acta. 2018 Jun 29;1011:68-76. doi: 10.1016/j.aca.2018.01.066. Epub 2018 Feb 6.
Coenzyme Q (CoQ) is a redox active molecule that plays a fundamental role in mitochondrial energy generation and functions as a potent endogenous antioxidant. Redox ratio of CoQ has been suggested as a good marker of mitochondrial dysfunction and oxidative stress. Nevertheless, simultaneous measurement of redox states of CoQ is challenging owing to its hydrophobicity and instability of the reduced form. In order to improve the analytical methodology, paying special attention to this instability, we developed a highly sensitive and selective high-resolution/accurate-mass (HR/AM) UHPLC-MS/MS method for the rapid determination of redox states of CoQ and CoQ by ultra-performance liquid chromatography-hybrid quadrupole-Orbitrap mass spectrometry. CoQs were extracted using hexane with the addition of butylated hydroxytoluene to limit oxidation during sample preparation. Chromatographic separation of the analytes was achieved on a Kinetex C column with the isocratic elution of 5 mM ammonium formate in 2-propanol/methanol (60:40) within 4 min. A full MS/all ion fragmentation (AIF) acquisition mode with mass accuracy < 5 ppm was used for detection and determination of redox states of CoQ and CoQ in healthy mice tissues using reduced and oxidized CoQ as internal standards. The validated method showed good linearity (r ≥ 0.9991), intraday, inter-day precision (CVs ≤ 11.9%) and accuracy (RE ≤±15.2%). In contrast to existing methods, the current method offers enhanced sensitivity (up to 52 fold) with LOD and LOQ ranged from 0.01 to 0.49 ng mL and 0.04-1.48 ng mL, respectively. Moreover, we evaluated various diluents to investigate bench top stability (at 4 °C) of targeted analytes in tissue samples during LC-MS assay up to 24 h. Ethanol was determined to be an optimum diluent without any significant oxidation of reduced CoQ up to 24 h. The developed method offers a rapid, highly sensitive and selective strategy for the measurement of redox states of CoQs in clinical studies.
辅酶 Q(CoQ)是一种氧化还原活性分子,在线粒体能量生成中起着基本作用,并作为一种有效的内源性抗氧化剂。CoQ 的氧化还原比被认为是线粒体功能障碍和氧化应激的良好标志物。然而,由于其疏水性和还原形式的不稳定性,同时测量 CoQ 的氧化还原状态具有挑战性。为了改进分析方法,特别注意这种不稳定性,我们开发了一种高灵敏度和选择性的高分辨率/精确质量(HR/AM)UHPLC-MS/MS 方法,用于通过超高效液相色谱-混合四极杆-Orbitrap 质谱法快速测定 CoQ 和 CoQ 的氧化还原状态。CoQ 使用正己烷提取,加入丁基化羟基甲苯以限制样品制备过程中的氧化。分析物的色谱分离在 Kinetex C 柱上实现,在 4 分钟内以 5mM 甲酸铵在 2-丙醇/甲醇(60:40)中的等度洗脱进行。使用全 MS/所有离子碎片化(AIF)采集模式,质量精度<5ppm,使用还原和氧化的 CoQ 作为内标,用于检测和测定健康小鼠组织中的 CoQ 和 CoQ 的氧化还原状态。验证的方法显示出良好的线性(r≥0.9991)、日内、日间精密度(CVs≤11.9%)和准确度(RE≤±15.2%)。与现有方法相比,该方法提供了更高的灵敏度(高达 52 倍),LOD 和 LOQ 范围分别为 0.01-0.49ng/mL 和 0.04-1.48ng/mL。此外,我们评估了各种稀释剂,以研究组织样品中目标分析物在 LC-MS 分析过程中的台式稳定性(在 4°C)长达 24 小时。结果表明,乙醇是一种最佳的稀释剂,在 24 小时内不会使还原型 CoQ 发生明显氧化。该方法为临床研究中 CoQ 氧化还原状态的测量提供了一种快速、高灵敏度和选择性的策略。