High-Mannose N -Glycans as Malignant Progression Markers in Early-Stage Colorectal Cancer.
Fanny BoyavalHans DaleboutRené Van ZeijlWenjun WangArantza Fariña SarasquetaGuinevere S M Lageveen-KammeijerJurjen J BoonstraLiam A McDonnellDana L E VergoossenHans MorreauBram HeijsPublished in: Cancers (2022)
The increase incidence of early colorectal cancer (T1 CRC) last years is mainly due to the introduction of population-based screening for CRC. T1 CRC staging based on histological criteria remains challenging and there is high variability among pathologists in the scoring of these criteria. It is crucial to unravel the biology behind the progression of adenoma into T1 CRC. Glycomic studies have reported extensively on alterations of the N -glycomic pattern in CRC; therefore, investigating these alterations may reveal new insights into the development of T1 CRC. We used matrix-assisted laser desorption ionization (MALDI) mass spectrometry imaging (MSI) to spatially profile the N -glycan species in a cohort of pT1 CRC using archival formalin-fixed and paraffin-embedded (FFPE) material. To generate structural information on the observed N -glycans, CE-ESI-MS/MS was used in conjunction with MALDI-MSI. Relative intensities and glycosylation traits were calculated based on a panel of 58 N -glycans. Our analysis showed pronounced differences between normal epithelium, dysplastic, and carcinoma regions. High-mannose-type N -glycans were higher in the dysplastic region than in carcinoma, which correlates to increased proliferation of the cells. We observed changes in the cancer invasive front, including higher expression of α2,3-linked sialic acids which followed the glycosylation pattern of the carcinoma region.
Keyphrases
- mass spectrometry
- cell surface
- ms ms
- early stage
- high resolution
- liquid chromatography
- poor prognosis
- induced apoptosis
- lymph node
- gene expression
- genome wide
- healthcare
- single cell
- liquid chromatography tandem mass spectrometry
- cell cycle arrest
- neoadjuvant chemotherapy
- dna methylation
- sentinel lymph node
- endoplasmic reticulum stress
- binding protein
- energy transfer
- quantum dots
- photodynamic therapy
- childhood cancer