Werner F, Schumacher F, Muhle C, Adler W, Schug C, Schaflein E
Eur Arch Psychiatry Clin Neurosci. 2025; .
PMID: 40042667
DOI: 10.1007/s00406-025-01985-2.
Martineau T, Maranda B, Auray-Blais C
Biomolecules. 2025; 14(12.
PMID: 39766319
PMC: 11727146.
DOI: 10.3390/biom14121612.
Heise N, Koeller C, Sharif M, Bangs J
mBio. 2024; 16(2):e0350124.
PMID: 39679680
PMC: 11796370.
DOI: 10.1128/mbio.03501-24.
Bian Z, Zha X, Chen Y, Chen X, Yin Z, Xu M
Front Cell Dev Biol. 2024; 12:1491065.
PMID: 39498415
PMC: 11532037.
DOI: 10.3389/fcell.2024.1491065.
Wang X, Zhou G, Lin J, Zhang Z, Qin T, Guo L
Biology (Basel). 2024; 13(10).
PMID: 39452115
PMC: 11505847.
DOI: 10.3390/biology13100806.
Phospholipids, Sphingolipids, and Cholesterol-Derived Lipid Mediators and Their Role in Neurological Disorders.
Farooqui A, Farooqui T
Int J Mol Sci. 2024; 25(19).
PMID: 39409002
PMC: 11476704.
DOI: 10.3390/ijms251910672.
Sphingolipid Analysis in Clinical Research.
Oh J, Burla B, Muralidharan S, Wenk M, Torta F
Methods Mol Biol. 2024; 2855:225-268.
PMID: 39354312
DOI: 10.1007/978-1-0716-4116-3_15.
Bioinformatics to Identify Biomarkers of Diabetic Nephropathy based on Sphingolipid Metabolism and their Molecular Mechanisms.
Ning Y, Zhou X, Wang G, Zhang L, Wang J
Curr Diabetes Rev. 2024; 21(2):e070524229720.
PMID: 38712372
DOI: 10.2174/0115733998297749240418071555.
Dysregulation of sphingolipid metabolism in pain.
Wang J, Zheng G, Wang L, Meng L, Ren J, Shang L
Front Pharmacol. 2024; 15:1337150.
PMID: 38523645
PMC: 10957601.
DOI: 10.3389/fphar.2024.1337150.
Acid sphingomyelinase as a pathological and therapeutic target in neurological disorders: focus on Alzheimer's disease.
Choi B, Park M, Jin H, Bae J
Exp Mol Med. 2024; 56(2):301-310.
PMID: 38337058
PMC: 10907607.
DOI: 10.1038/s12276-024-01176-4.
Transcriptional suppression of sphingolipid catabolism controls pathogen resistance in C. elegans.
Nasrallah M, Peterson N, Szumel E, Liu P, Page A, Tse S
PLoS Pathog. 2023; 19(10):e1011730.
PMID: 37906605
PMC: 10637724.
DOI: 10.1371/journal.ppat.1011730.
Toxoplasma ceramide synthases: Gene duplication, functional divergence, and roles in parasite fitness.
Koutsogiannis Z, Mina J, Albus C, Kol M, Holthuis J, Pohl E
FASEB J. 2023; 37(11):e23229.
PMID: 37795915
PMC: 10946778.
DOI: 10.1096/fj.202201603RRR.
Chronic oral exposure to low-concentration fumonisin B2 significantly exacerbates the inflammatory responses of allergies in mice via inhibition of IL-10 release by regulatory T cells in gut-associated lymphoid tissue.
Ando M, Yamaguchi H, Morimoto A, Iwashita N, Takagi Y, Nagane M
Arch Toxicol. 2023; 97(10):2707-2719.
PMID: 37589943
DOI: 10.1007/s00204-023-03579-0.
A Sphingolipidomic Profiling Approach for Comparing X-ray-Exposed and Unexposed HepG2 Cells.
Moggio M, Faramarzi B, Portaccio M, Manti L, Lepore M, Diano N
Int J Mol Sci. 2023; 24(15).
PMID: 37569739
PMC: 10418425.
DOI: 10.3390/ijms241512364.
Development of Comorbid Depression after Social Fear Conditioning in Mice and Its Effects on Brain Sphingolipid Metabolism.
Zoicas I, Muhle C, Schumacher F, Kleuser B, Kornhuber J
Cells. 2023; 12(10).
PMID: 37408189
PMC: 10216690.
DOI: 10.3390/cells12101355.
Characterisation of the bovine C-type lectin receptor Mincle and potential evidence for an endogenous ligand.
Holder A, Kolakowski J, Rosentreter C, Knuepfer E, Jegouzo S, Rosenwasser O
Front Immunol. 2023; 14:1189587.
PMID: 37275870
PMC: 10235688.
DOI: 10.3389/fimmu.2023.1189587.
Upregulation of acid ceramidase contributes to tumor progression in tuberous sclerosis complex.
Astrinidis A, Li C, Zhang E, Zhao X, Zhao S, Guo M
JCI Insight. 2023; 8(9).
PMID: 36927688
PMC: 10243802.
DOI: 10.1172/jci.insight.166850.
Identification of Therapeutic Targets for Medulloblastoma by Tissue-Specific Genome-Scale Metabolic Model.
Ozbek I, Ulgen K
Molecules. 2023; 28(2).
PMID: 36677837
PMC: 9864031.
DOI: 10.3390/molecules28020779.
The Sphingosine 1-Phosphate Axis: an Emerging Therapeutic Opportunity for Endometriosis.
Zhang F, Lu Y
Reprod Sci. 2023; 30(7):2040-2059.
PMID: 36662421
PMC: 9857924.
DOI: 10.1007/s43032-023-01167-2.
Ganglioside lipidomics of CNS myelination using direct infusion shotgun mass spectrometry.
Arends M, Weber M, Papan C, Damm M, Surma M, Spiegel C
iScience. 2022; 25(11):105323.
PMID: 36310581
PMC: 9615322.
DOI: 10.1016/j.isci.2022.105323.