Sphingolipid Remodeling in Colorectal Cancer Reveals a Continuum-like Metabolic Organization

Colorectal cancer (CRC) exhibits substantial metabolic heterogeneity, but the organization of sphingolipid remodeling remains incompletely understood. In this exploratory single-center study, we integrated patient-matched tissue lipidomics, systemic oxidative stress profiling, and independent transcriptomic analyses. Tumor tissue, adjacent non-neoplastic mucosa, and preoperative serum were collected from 40 patients with CRC, with serum obtained from 23 hospitalized non-cancer controls. Sphingolipids were quantified by UHPLC–MS/MS, while total antioxidant capacity, total oxidant status, and oxidative stress index characterized systemic redox status. Paired lipidomics revealed coordinated remodeling with increased S1P-associated measures, selective ceramide depletion, and elevated S1P-to-ceramide ratios. Multivariate analyses did not identify stable discrete lipidomic subgroups and revealed variation consistent with a continuum-like organization within the measured sphingolipid feature space. In separate principal component analyses, ratio-derived variables showed a more concentrated low-dimensional covariance structure than absolute lipid concentrations. Circulating sphingolipids showed limited correspondence with tumor-local remodeling, whereas oxidative stress markers showed strong apparent discrimination between CRC and hospitalized non-cancer controls, although this finding may be affected by residual confounding. TCGA–GTEx analyses provided complementary pathway-level transcriptomic context, while anatomically resolved analysis of 374 TCGA tumors identified 3376 genes significantly associated with colorectal anatomical position, including six sphingolipid-related genes. Overall, these exploratory findings support a conceptual CRC Metabolic Continuum while requiring validation in larger, independent cohorts.

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Publication Details

Journal
Antioxidants
Published
2026-09-08
DOI
https://doi.org/10.3390/antiox15091136
Primary Topic
Sphingolipid Metabolism and Signaling
Type
article
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article

Sphingolipid Remodeling in Colorectal Cancer Reveals a Continuum-like Metabolic Organization

Urszula Chlabicz, Adam R. Markowski, Piotr Zabielski, Aleksander Łukaszewicz et al.
Antioxidants
Sphingolipid Metabolism and Signaling
article

Sphingolipid Remodeling in Colorectal Cancer Reveals a Continuum-like Metabolic Organization

Urszula Chlabicz, Adam R. Markowski, Piotr Zabielski, Aleksander Łukaszewicz, Karolina Stępniak, Patrycja Sadowska, Hady Razak Hady, Paulina Głuszyńska, Agnieszka Błachnio-Zabielska
article en

Abstract

Colorectal cancer (CRC) exhibits substantial metabolic heterogeneity, but the organization of sphingolipid remodeling remains incompletely understood. In this exploratory single-center study, we integrated patient-matched tissue lipidomics, systemic oxidative stress profiling, and independent transcriptomic analyses. Tumor tissue, adjacent non-neoplastic mucosa, and preoperative serum were collected from 40 patients with CRC, with serum obtained from 23 hospitalized non-cancer controls. Sphingolipids were quantified by UHPLC–MS/MS, while total antioxidant capacity, total oxidant status, and oxidative stress index characterized systemic redox status. Paired lipidomics revealed coordinated remodeling with increased S1P-associated measures, selective ceramide depletion, and elevated S1P-to-ceramide ratios. Multivariate analyses did not identify stable discrete lipidomic subgroups and revealed variation consistent with a continuum-like organization within the measured sphingolipid feature space. In separate principal component analyses, ratio-derived variables showed a more concentrated low-dimensional covariance structure than absolute lipid concentrations. Circulating sphingolipids showed limited correspondence with tumor-local remodeling, whereas oxidative stress markers showed strong apparent discrimination between CRC and hospitalized non-cancer controls, although this finding may be affected by residual confounding. TCGA–GTEx analyses provided complementary pathway-level transcriptomic context, while anatomically resolved analysis of 374 TCGA tumors identified 3376 genes significantly associated with colorectal anatomical position, including six sphingolipid-related genes. Overall, these exploratory findings support a conceptual CRC Metabolic Continuum while requiring validation in larger, independent cohorts.

AntioxidantsVol. 15(9)
Medical University of Białystok (PL)
Peace, Justice and strong institutions
Openalex Percentile: Top 17%
Sphingolipid Metabolism and Signaling
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