Item request has been placed!
×
Item request cannot be made.
×

Processing Request
On-tissue amidation of sialic acid with aniline for sensitive imaging of sialylated N-glycans from FFPE tissue sections via MALDI mass spectrometry.
Item request has been placed!
×
Item request cannot be made.
×

Processing Request
- Author(s): Zhang, Hua1 (AUTHOR); Shi, Xudong2 (AUTHOR); Liu, Yuan1 (AUTHOR); Wang, Bin1 (AUTHOR); Xu, Meng3 (AUTHOR); Welham, Nathan V.2 (AUTHOR); Li, Lingjun1,3 (AUTHOR)
- Source:
Analytical & Bioanalytical Chemistry. Jul2022, Vol. 414 Issue 18, p5263-5274. 12p.
- Subject Terms:
- Additional Information
- Abstract:
Spatial visualization of glycans within clinical tissue samples is critical for discovery of disease-relevant glycan dysregulations. Herein, we develop an on-tissue derivatization strategy for sensitive spatial visualization of N-glycans from formalin-fixed paraffin-embedded (FFPE) tissue sections, based on amidation of sialic acid residues with aniline. The sialylated N-glycans were stabilized and given enhanced signal intensity owing to selective capping of a phenyl group to the sialic acid residue after aniline labeling. Proof-of-concept experiments, including determinations of sialylglycopeptide and N-glycans enzymatically released from glycoproteins, were performed. Further, mass spectrometry (MS) imaging of N-glycans on human laryngeal cancer FFPE tissue sections was conducted via matrix-assisted laser desorption/ionization mass spectrometry imaging (MALDI-MSI), based on our strategy for on-tissue amidation of sialylated N-glycans. We obtained higher sialylated N-glycan coverages for both the glycoproteins and cancer tissue samples, demonstrating that the detection sensitivity for sialylated N-glycans is notably improved by amidation derivatization. We also characterized N-glycan heterogeneity across the human laryngeal cancer tissue section, showing N-glycan dysregulation in the tumor region. [ABSTRACT FROM AUTHOR]
No Comments.