Department of Biochemistry and Systems Biology, Centre for Metabolomics Research (CMR), Institute of Systems, Molecular and Integrative Biology, University of Liverpool, Liverpool, UK.
Liverpool Clinical Laboratories, Department of Clinical Biochemistry and Metabolic Medicine, Royal Liverpool University Hospitals Trust, Liverpool, UK.
Metabolomics. 2023 Oct 18;19(11):87. doi: 10.1007/s11306-023-02048-0.
Since the beginning of the SARS-CoV-2 pandemic in December 2019 multiple metabolomics studies have proposed predictive biomarkers of infection severity and outcome. Whilst some trends have emerged, the findings remain intangible and uninformative when it comes to new patients.
In this study, we accurately quantitate a subset of compounds in patient serum that were found predictive of severity and outcome.
A targeted LC-MS method was used in 46 control and 95 acute COVID-19 patient samples to quantitate the selected metabolites. These compounds included tryptophan and its degradation products kynurenine and kynurenic acid (reflective of immune response), butyrylcarnitine and its isomer (reflective of energy metabolism) and finally 3',4'-didehydro-3'-deoxycytidine, a deoxycytidine analogue, (reflective of host viral defence response). We subsequently examine changes in those markers by disease severity and outcome relative to those of control patients' levels.
RESULTS & CONCLUSION: Finally, we demonstrate the added value of the kynurenic acid/tryptophan ratio for severity and outcome prediction and highlight the viral detection potential of ddhC.
自 2019 年 12 月 SARS-CoV-2 大流行开始以来,多项代谢组学研究提出了感染严重程度和结局的预测性生物标志物。虽然出现了一些趋势,但当涉及到新患者时,这些发现仍然是无形的,没有信息。
在本研究中,我们准确地定量了患者血清中一组被发现与严重程度和结局相关的化合物。
使用靶向 LC-MS 方法对 46 例对照和 95 例急性 COVID-19 患者样本进行定量分析,检测选定的代谢物。这些化合物包括色氨酸及其降解产物犬尿氨酸和犬尿氨酸(反映免疫反应),但酰基辅酶 A 和其异构体(反映能量代谢),最后是 3',4'-二脱氢-3'-脱氧胞苷,一种脱氧胞苷类似物,(反映宿主的病毒防御反应)。随后,我们根据疾病严重程度和结局检查这些标志物的变化与对照患者水平的变化。
最后,我们证明了犬尿氨酸/色氨酸比值在严重程度和结局预测方面的附加价值,并强调了 ddhC 的病毒检测潜力。