Integration of lipidomics and metabolomics for in-depth understanding of cellular mechanism and disease progression

被引:1
作者
Raoxu Wang [1 ,2 ]
Bowen Li [3 ]
Sin Man Lam [1 ,3 ]
Guanghou Shui [1 ,2 ]
机构
[1] State Key Laboratory of Molecular Developmental Biology,Institute of Genetics and Developmental Biology,Chinese Academy of Sciences
[2] University of Chinese Academy of Sciences
[3] Lipidall Technologies Company Limited
关键词
Metabolomics; Lipidomics; Integration; Disease progression;
D O I
暂无
中图分类号
R363 [病理生理学];
学科分类号
100104 ;
摘要
Mass spectrometry (MS)-based omics technologies are now widely used to profile small molecules in multiple matrices to confer comprehensive snapshots of cellular metabolic phenotypes.The metabolomes of cells,tissues,and organisms comprise a variety of molecules including lipids,amino acids,sugars,organic acids,and so on.Metabolomics mainly focus on the hydrophilic classes,while lipidomics has emerged as an independent omics owing to the complexities of the organismal lipidomes.The potential roles of lipids and small metabolites in disease pathogenesis have been widely investigated in various human diseases,but system-level understanding is largely lacking,which could be partly attributed to the insufficiency in terms of metabolite coverage and quantitation accuracy in current analytical technologies.While scientists are continuously striving to develop high-coverage omics approaches,integration of metabolomics and lipidomics is becoming an emerging approach to mechanistic investigation.Integration of metabolome and lipidome offers a complete atlas of the metabolic landscape,enabling comprehensive network analysis to identify critical metabolic drivers in disease pathology,facilitating the study of interconnection between lipids and other metabolites in disease progression.In this review,we summarize omics-based findings on the roles of lipids and metabolites in the pathogenesis of selected major diseases threatening public health.We also discuss the advantages of integrating lipidomics and metabolomics for in-depth understanding of molecular mechanism in disease pathogenesis.
引用
收藏
页码:69 / 83
页数:15
相关论文
共 86 条
[1]   Subventricular zone lipidomic architecture loss in Huntington's disease [J].
Hunter, Mandana ;
Demarais, Nicholas J. ;
Faull, Richard L. M. ;
Grey, AngusC. ;
Curtis, Maurice A. .
JOURNAL OF NEUROCHEMISTRY, 2018, 146 (05) :613-630
[2]  
Serum Lipidomics Profiling to Identify Biomarkers for Non-Small Cell Lung Cancer[J] . Yingrong Chen,Zhihong Ma,Xiongrong Shen,Liqin Li,Jing Zhong,Li Shan Min,Limin Xu,Hongwei Li,Jianbin Zhang,Licheng Dai,Xueyuan Cao.BioMed Research International . 2018
[3]  
An integrated method for direct interrogation of sphingolipid homeostasis in the heart and brain tissues of mice through postnatal development up to reproductive senescence[J] . Sin Man Lam,Raoxu Wang,Huan Miao,Bowen Li,Guanghou Shui.Analytica Chimica Acta . 2018
[4]  
mixOmics: An R package for ‘omics feature selection and multiple data integration[J] . Florian Rohart,Beno?t Gautier,Amrit Singh,Kim-Anh Lê Cao.PLOS Computational Biology . 2017 (11)
[5]   Significant Association Between Low Mitochondrial DNA Content in Peripheral Blood Leukocytes and Ischemic Stroke [J].
Lien, Li-Ming ;
Chiou, Hung-Yi ;
Yeh, Hsu-Ling ;
Chiu, Shang-Yen ;
Jeng, Jiann-Shing ;
Lin, Huey-Juan ;
Hu, Chaur-Jong ;
Hsieh, Fang-I ;
Wei, Yau-Huei .
JOURNAL OF THE AMERICAN HEART ASSOCIATION, 2017, 6 (11)
[6]   The metabolomics and lipidomics window into thyroid cancer research [J].
Yekta, R. Farrokhi ;
Tavirani, M. Rezaie ;
Oskouie, A. Arefi ;
Mohajeri-Tehrani, M. R. ;
Soroush, A. R. .
BIOMARKERS, 2017, 22 (07) :595-603
[7]  
Lipidomics, en route to accurate quantitation[J] . Sin Man Lam,He Tian,Guanghou Shui.BBA - Molecular and Cell Biology of Lipids . 2017 (8)
[8]  
Lipoprotein-associated phospholipase A2 and risks of coronary heart disease and ischemic stroke in the general population: A systematic review and meta-analysis[J] . Dongze Li,Wei Wei,Xun Ran,Jing Yu,Hui Li,Lizhi Zhao,Honglian Zeng,Yu Cao,Zhi Zeng,Zhi Wan.Clinica Chimica Acta . 2017
[9]  
Sequestration of polyunsaturated fatty acids in membrane phospholipids of Caenorhabditis elegans dauer larva attenuates eicosanoid biosynthesis for prolonged survival[J] . Sin Man Lam,Zehua Wang,Jie Li,Xun Huang,Guanghou Shui.Redox Biology . 2017
[10]  
Recent advances in using mass spectrometry for mitochondrial metabolomics and lipidomics - A review[J] . Xinyu Liu,Guowang Xu.Analytica Chimica Acta . 2017