University of Maryland, School of Pharmacy, Department of Pharmaceutical Sciences, Baltimore, MD, United States.
University of Maryland, School of Pharmacy, Department of Pharmaceutical Sciences, Baltimore, MD, United States.
Prostaglandins Other Lipid Mediat. 2020 Dec;151:106484. doi: 10.1016/j.prostaglandins.2020.106484. Epub 2020 Sep 30.
Drug-induced liver injury (DILI) has a substantial impact on human health and is a major monetary burden on the drug development process. Presently, there is a lack of robust and analytically validated markers for predicting and early diagnosis of DILI. Sphingolipid metabolism and subsequent disruption of sphingolipid homeostasis has been documented to play a key role contributing to hepatocellular death and subsequent liver injury. A more comprehensive understanding of sphingolipid metabolism in response to liver toxicity has great potential to gain mechanistic insight into hepatotoxicity and define molecular markers that are responsible for hepatocyte dysfunction. Here, we present an analytical platform that provides multidimensional mass spectrometry-based datasets for comprehensive structure characterization of sphingolipids extracted from human primary hepatocytes (HPH) exposed to toxic levels of acetaminophen (APAP). Sphingolipid metabolism as measured by characterization of individual sphingolipid structure was sensitive to APAP toxicity displaying a concentration-dependent response. A number of sphingolipid structures were differentially expressed across varying APAP exposures highlighting the unique role sphingolipid metabolism has in response to hepatotoxicity and its potential use as a molecular marker in DILI.
药物性肝损伤(DILI)对人类健康有重大影响,也是药物开发过程中的一个主要经济负担。目前,缺乏预测和早期诊断 DILI 的强大和经过分析验证的标志物。已经记录到鞘脂代谢及其随后的鞘脂稳态破坏在促进肝细胞死亡和随后的肝损伤中起着关键作用。更全面地了解鞘脂代谢对肝毒性的反应,有可能深入了解肝毒性并确定负责肝细胞功能障碍的分子标志物。在这里,我们提出了一个分析平台,该平台提供了基于多维质谱的数据集,用于对暴露于有毒水平的对乙酰氨基酚 (APAP) 的人原代肝细胞 (HPH) 中提取的鞘脂进行全面的结构特征描述。通过对单个鞘脂结构的特征描述来测量的鞘脂代谢对 APAP 毒性敏感,表现出浓度依赖性反应。在不同的 APAP 暴露水平下,许多鞘脂结构的表达存在差异,这突出了鞘脂代谢在肝毒性反应中的独特作用及其作为 DILI 中分子标志物的潜在用途。