Plasma Metabolome Profiling Identifies Metabolic Subtypes of Pancreatic Ductal Adenocarcinoma.
Ujjwal Mukund MahajanAhmed AlnatshaQi LiBettina OehrleFrank-Ulrich WeissMatthias SendlerMarius DistlerWaldemar UhlTim FahlbuschElisabetta GoniGeorg BeyerAnsgar ChromikMarkus BahraFritz KleinChristian PilarskyRobert GrützmannMarkus M LerchKirsten LauberNicole ChristiansenBeate KamlageIvonne RegelJulia MayerlePublished in: Cells (2021)
Pancreatic ductal adenocarcinoma (PDAC) is one of the deadliest cancers. Developing biomarkers for early detection and chemotherapeutic response prediction is crucial to improve the dismal prognosis of PDAC patients. However, molecular cancer signatures based on transcriptome analysis do not reflect intratumoral heterogeneity. To explore a more accurate stratification of PDAC phenotypes in an easily accessible matrix, plasma metabolome analysis using MxP® Global Profiling and MxP® Lipidomics was performed in 361 PDAC patients. We identified three metabolic PDAC subtypes associated with distinct complex lipid patterns. Subtype 1 was associated with reduced ceramide levels and a strong enrichment of triacylglycerols. Subtype 2 demonstrated increased abundance of ceramides, sphingomyelin and other complex sphingolipids, whereas subtype 3 showed decreased levels of sphingolipid metabolites in plasma. Pathway enrichment analysis revealed that sphingolipid-related pathways differ most among subtypes. Weighted correlation network analysis (WGCNA) implied PDAC subtypes differed in their metabolic programs. Interestingly, a reduced expression among related pathway genes in tumor tissue was associated with the lowest survival rate. However, our metabolic PDAC subtypes did not show any correlation to the described molecular PDAC subtypes. Our findings pave the way for further studies investigating sphingolipids metabolisms in PDAC.
Keyphrases
- network analysis
- ejection fraction
- newly diagnosed
- single cell
- genome wide
- prognostic factors
- poor prognosis
- squamous cell carcinoma
- magnetic resonance
- gene expression
- magnetic resonance imaging
- microbial community
- dna methylation
- transcription factor
- high resolution
- computed tomography
- ms ms
- patient reported outcomes
- single molecule
- patient reported
- drug induced
- squamous cell