scholarly article | Q13442814 |
P356 | DOI | 10.1002/JSSC.201500899 |
P698 | PubMed publication ID | 26394722 |
P2093 | author name string | Li Yang | |
Yu Bai | |||
Min Li | |||
Huwei Liu | |||
Sensen Shen | |||
Yabing Shan | |||
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Mixed brain pathologies account for most dementia cases in community-dwelling older persons | Q48136681 | ||
Lipidomic profiling reveals significant alterations in lipid biochemistry in hypothyroid rat cerebellum and the therapeutic effects of Sini decoction. | Q48443296 | ||
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NMR-Based Lipidomic Analysis of Blood Lipoproteins Differentiates the Progression of Coronary Heart Disease | Q57413730 | ||
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Pinpointing Double Bonds in Lipids by Paternò-Büchi Reactions and Mass Spectrometry | Q61446528 | ||
Imaging mass spectrometry of diversified cardiolipin molecular species in the brain | Q23909378 | ||
LC/MS analysis of cardiolipins in substantia nigra and plasma of rotenone-treated rats: implication for mitochondrial dysfunction in Parkinson's disease | Q23923990 | ||
Ceramide: a common pathway for atherosclerosis? | Q24630011 | ||
Alterations in myocardial cardiolipin content and composition occur at the very earliest stages of diabetes: a shotgun lipidomics study | Q24678475 | ||
A RAPID METHOD OF TOTAL LIPID EXTRACTION AND PURIFICATION | Q25939000 | ||
Neuropathological alterations in Alzheimer disease | Q27003314 | ||
Cancer statistics, 2014 | Q27861018 | ||
Assembly of Cell Regulatory Systems Through Protein Interaction Domains | Q28155799 | ||
Protein aggregation and neurodegenerative disease | Q28273600 | ||
Shotgun lipidomics: electrospray ionization mass spectrometric analysis and quantitation of cellular lipidomes directly from crude extracts of biological samples | Q28284074 | ||
Evaluation of the cardiolipin biosynthetic pathway and its interactions in the diabetic heart | Q28390032 | ||
Multi-dimensional mass spectrometry-based shotgun lipidomics and novel strategies for lipidomic analyses | Q28732813 | ||
Ras, PI(3)K and mTOR signalling controls tumour cell growth | Q29614734 | ||
The role of oxidized phospholipids in atherosclerosis | Q30436606 | ||
MALDI imaging mass spectrometry: molecular snapshots of biochemical systems | Q33300677 | ||
Tissue imaging at atmospheric pressure using desorption electrospray ionization (DESI) mass spectrometry | Q33435977 | ||
Identification of a new plasma biomarker of Alzheimer's disease using metabolomics technology | Q33452881 | ||
Analysis of human plasma lipids by using comprehensive two-dimensional gas chromatography with dual detection and with the support of high-resolution time-of-flight mass spectrometry for structural elucidation | Q33463305 | ||
Lipidomics reveals a link between CYP1B1 and SCD1 in promoting obesity | Q33598703 | ||
Characterization of bacterial lipid profiles by using rapid sample preparation and fast comprehensive two-dimensional gas chromatography in combination with mass spectrometry | Q33621521 | ||
The neuropathology of older persons with and without dementia from community versus clinic cohorts | Q33786327 | ||
A transcriptional signature and common gene networks link cancer with lipid metabolism and diverse human diseases | Q33789567 | ||
Cholesterol sulfate imaging in human prostate cancer tissue by desorption electrospray ionization mass spectrometry | Q33858266 | ||
Platelet-activating factors are associated with cognitive deficits in depressed coronary artery disease patients: a hypothesis-generating study. | Q33895279 | ||
Brain lipidomes of subcortical ischemic vascular dementia and mixed dementia | Q33906496 | ||
Alteration of the lipid profile in lymphomas induced by MYC overexpression | Q33971890 | ||
Lipid profiling of rat peritoneal surface layers by online normal- and reversed-phase 2D LC QToF-MS. | Q34053216 | ||
Mass spectrometric imaging of lipids using desorption electrospray ionization | Q34066058 | ||
Sphingolipids and ceramides of mouse aqueous humor: Comparative profiles from normotensive and hypertensive DBA/2J mice. | Q34177887 | ||
Epidemiology of breast cancer: an environmental disease? | Q34322597 | ||
Targeted profiling of atherogenic phospholipids in human plasma and lipoproteins of hyperlipidemic patients using MALDI-QIT-TOF-MS/MS. | Q34337489 | ||
Sphingomyelinase activity of LDL: a link between atherosclerosis, ceramide, and apoptosis? | Q34498155 | ||
Circulating sphingolipid biomarkers in models of type 1 diabetes | Q34560757 | ||
Reconstituted high-density lipoprotein infusion modulates fatty acid metabolism in patients with type 2 diabetes mellitus | Q34560800 | ||
Reduced signaling of PI3K-Akt and RAS-MAPK pathways is the key target for weight-loss-induced cancer prevention by dietary calorie restriction and/or physical activity | Q34614287 | ||
Multivariate statistical identification of human bladder carcinomas using ambient ionization imaging mass spectrometry | Q34632293 | ||
Glucosylceramide and lysophosphatidylcholines as potential blood biomarkers for drug-induced hepatic phospholipidosis | Q34736225 | ||
Lipidome of atherosclerotic plaques from hypercholesterolemic rabbits | Q34835482 | ||
Acetyl-CoA synthetase 2 promotes acetate utilization and maintains cancer cell growth under metabolic stress | Q34978574 | ||
Analytical methods in lipidomics and their applications | Q35038389 | ||
Lipidomics at the interface of structure and function in systems biology | Q35095381 | ||
A novel three serum phospholipid panel differentiates normal individuals from those with prostate cancer | Q35112837 | ||
Lipid Analysis of Airway Epithelial Cells for Studying Respiratory Diseases | Q35138292 | ||
Lipidomics for clinical diagnosis: Dye-Assisted Laser Desorption/Ionization (DALDI) method for lipids detection in MALDI mass spectrometry imaging | Q35182979 | ||
Lipidomics | Q35221392 | ||
A uniform 2,5-dihydroxybenzoic acid layer as a matrix for MALDI-FTICR MS-based lipidomics. | Q35539751 | ||
Lipidomic analysis of plasma samples from women with polycystic ovary syndrome. | Q35567919 | ||
Roux-en-Y Gastric Bypass Surgery Induces Early Plasma Metabolomic and Lipidomic Alterations in Humans Associated with Diabetes Remission | Q35577707 | ||
Age-dependent biochemical dysfunction in skeletal muscle of triple-transgenic mouse model of Alzheimer`s disease | Q35596754 | ||
ESI-MS/MS and MALDI-IMS Localization Reveal Alterations in Phosphatidic Acid, Diacylglycerol, and DHA in Glioma Stem Cell Xenografts | Q35603809 | ||
Comparative lipidomic analysis of mouse and human brain with Alzheimer disease. | Q35710041 | ||
Lipid alterations in the earliest clinically recognizable stage of Alzheimer's disease: implication of the role of lipids in the pathogenesis of Alzheimer's disease | Q36174566 | ||
CD1d-dependent activation of NKT cells aggravates atherosclerosis. | Q36399122 | ||
Macrophage reverse cholesterol transport: key to the regression of atherosclerosis? | Q36492920 | ||
Phospholipids and Alzheimer's disease: alterations, mechanisms and potential biomarkers | Q36590043 | ||
Arachidonoyl-phosphatidylcholine oscillates during the cell cycle and counteracts proliferation by suppressing Akt membrane binding | Q36617108 | ||
Mass spectrometry images acylcarnitines, phosphatidylcholines, and sphingomyelin in MDA-MB-231 breast tumor models. | Q36658347 | ||
A lipidomics analysis of the relationship between dietary fatty acid composition and insulin sensitivity in young adults | Q36720553 | ||
Hypoxic and Ras-transformed cells support growth by scavenging unsaturated fatty acids from lysophospholipids | Q36895786 | ||
Inflammation in atherosclerosis: from vascular biology to biomarker discovery and risk prediction | Q37045449 | ||
Plasma ceramides are elevated in obese subjects with type 2 diabetes and correlate with the severity of insulin resistance | Q37066869 | ||
Translating molecular discoveries into new therapies for atherosclerosis | Q37089723 | ||
Alterations in cerebrospinal fluid glycerophospholipids and phospholipase A2 activity in Alzheimer's disease. | Q37163086 | ||
Neuropathology of nondemented aging: presumptive evidence for preclinical Alzheimer disease | Q37332710 | ||
Specific changes of sulfatide levels in individuals with pre-clinical Alzheimer's disease: an early event in disease pathogenesis. | Q37351086 | ||
Glycerophospholipid and sphingolipid species and mortality: the Ludwigshafen Risk and Cardiovascular Health (LURIC) study | Q37490790 | ||
Metabolism and atherogenic disease association of lysophosphatidylcholine | Q37537825 | ||
Molecular lipids identify cardiovascular risk and are efficiently lowered by simvastatin and PCSK9 deficiency | Q37592818 | ||
Characterization and quantification of diacylglycerol species in biological extracts after one-step derivatization: a shotgun lipidomics approach | Q37638208 | ||
A comparison of trabecular meshwork sphingolipids and ceramides of ocular normotensive and hypertensive states of DBA/2J mice | Q37710675 | ||
Recent advances of chromatography and mass spectrometry in lipidomics | Q37807267 | ||
Plasmalogens the neglected regulatory and scavenging lipid species | Q37896869 | ||
Metabolomics as a tool for cardiac research | Q37935537 | ||
Lipidomics of Alzheimer's disease: current status | Q37980283 | ||
Novel methodologies in metabolic profiling with a focus on molecular diagnostic applications | Q38019000 | ||
Phospholipid profiles of control and glaucomatous human aqueous humor | Q38190354 | ||
Shotgun lipidomics for candidate biomarkers of urinary phospholipids in prostate cancer. | Q38480566 | ||
Quantitative analysis of urinary phospholipids found in patients with breast cancer by nanoflow liquid chromatography-tandem mass spectrometry: II. Negative ion mode analysis of four phospholipid classes | Q38490844 | ||
Quantitative analysis of phosphatidylcholines and phosphatidylethanolamines in urine of patients with breast cancer by nanoflow liquid chromatography/tandem mass spectrometry | Q38496680 | ||
Fatty acid and phospholipid biosynthetic pathways are regulated throughout mammary epithelial cell differentiation and correlate to breast cancer survival. | Q38980635 | ||
Small, dense high-density lipoprotein-3 particles are enriched in negatively charged phospholipids: relevance to cellular cholesterol efflux, antioxidative, antithrombotic, anti-inflammatory, and antiapoptotic functionalities. | Q39087357 | ||
Lipidomic approach to identify patterns in phospholipid profiles and define class differences in mammary epithelial and breast cancer cells. | Q39450910 | ||
Novel theranostic opportunities offered by characterization of altered membrane lipid metabolism in breast cancer progression | Q39574533 | ||
Identification of prognostic and diagnostic biomarkers of glucose intolerance in ApoE3Leiden mice | Q39665743 | ||
Lipidomics: a tool for studies of atherosclerosis | Q40815709 | ||
Increasing plasma lysophosphatidylcholine levels in patients with regular dextran sulfate lipoprotein apheresis | Q40983351 | ||
Skin imprinting in silica plates: a potential diagnostic methodology for leprosy using high-resolution mass spectrometry | Q41199180 | ||
An integrated metabolomics approach for the research of new cerebrospinal fluid biomarkers of multiple sclerosis. | Q41411691 | ||
Plasma lipidomics reveal profound perturbation of glycerophospholipids, fatty acids, and sphingolipids in diet-induced hyperlipidemia. | Q41529652 | ||
Metabolic phenotyping of atherosclerotic plaques reveals latent associations between free cholesterol and ceramide metabolism in atherogenesis | Q41615136 | ||
Circulating phospholipid profiling identifies portal contribution to NASH signature in obesity | Q41755444 | ||
Ion mobility-derived collision cross section as an additional measure for lipid fingerprinting and identification | Q42052782 | ||
The arachidonic acid metabolome serves as a conserved regulator of cholesterol metabolism | Q42096573 | ||
Multivariate statistical differentiation of renal cell carcinomas based on lipidomic analysis by ambient ionization imaging mass spectrometry | Q42856234 | ||
Link between plasma ceramides, inflammation and insulin resistance: association with serum IL-6 concentration in patients with coronary heart disease | Q43294444 | ||
Lipidomics reveals dysfunctional glycosynapses in schizophrenia and the G72/G30 transgenic mouse | Q43548986 | ||
Metabolomics signature improves the prediction of cardiovascular events in elderly subjects. | Q43576623 | ||
Regulation of SREBP processing and membrane lipid production by phospholipids in Drosophila | Q43978685 | ||
P433 | issue | 1 | |
P304 | page(s) | 38-50 | |
P577 | publication date | 2015-09-23 | |
P1433 | published in | Journal of Separation Science | Q15761632 |
P1476 | title | Recent advances in lipidomics for disease research | |
P478 | volume | 39 |
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