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Updated: Nov 24, 2025

Glycomics-Guided Glycoproteomics Facilitates Comprehensive Profiling of the Glycoproteome in Complex Tumor Microenvironments
Published on: February 7, 2025
Targeting Glycans and Heavily Glycosylated Proteins for Tumor Imaging
Ruben D Houvast1, Mireille Vankemmelbeke2, Lindy G Durrant2,3
1Department of Surgery, Leiden University Medical Center, 2333 ZA Leiden, The Netherlands.
Abstract:
Real-time tumor imaging techniques are increasingly used in oncological surgery, but still need to be supplemented with novel targeted tracers, providing specific tumor tissue detection based on intra-tumoral processes or protein expression. To maximize tumor/non-tumor contrast, targets should be highly and homogenously expressed on tumor tissue only, preferably from the earliest developmental stage onward. Unfortunately, most evaluated tumor-associated proteins appear not to meet all of these criteria. Thus, the quest for ideal targets continues. Aberrant glycosylation of proteins and lipids is a fundamental hallmark of almost all cancer types and contributes to tumor progression. Additionally, overexpression of glycoproteins that carry aberrant glycans, such as mucins and proteoglycans, is observed. Selected tumor-associated glyco-antigens are abundantly expressed and could, thus, be ideal candidates for targeted tumor imaging. Nevertheless, glycan-based tumor imaging is still in its infancy. In this review, we highlight the potential of glycans, and heavily glycosylated proteoglycans and mucins as targets for multimodal tumor imaging by discussing the preclinical and clinical accomplishments within this field. Additionally, we describe the major advantages and limitations of targeting glycans compared to cancer-associated proteins. Lastly, by providing a brief overview of the most attractive tumor-associated glycans and glycosylated proteins in association with their respective tumor types, we set out the way for implementing glycan-based imaging in a clinical practice.
Insights
Aberrant glycosylation in cancer offers novel targets for tumor imaging. Glycans, mucins, and proteoglycans show promise for multimodal imaging, advancing oncological diagnostics.
Area of Science:
- Oncology
- Biochemistry
- Medical Imaging
Background:
- Real-time tumor imaging requires novel targeted tracers for specific detection.
- Current tumor-associated protein targets often lack ideal expression profiles.
- Aberrant glycosylation is a hallmark of cancer, contributing to tumor progression.
Purpose of the Study:
- To review the potential of glycans, mucins, and proteoglycans as targets for multimodal tumor imaging.
- To discuss preclinical and clinical advancements in glycan-based tumor imaging.
- To compare the advantages and limitations of targeting glycans versus cancer-associated proteins.
Main Methods:
- Literature review of preclinical and clinical studies on glycan-based tumor imaging.
- Analysis of aberrant glycosylation patterns in various cancer types.
- Evaluation of specific tumor-associated glycans and glycosylated proteins.
Main Results:
- Aberrantly glycosylated proteins, including mucins and proteoglycans, are overexpressed in many cancers.
- Selected tumor-associated glyco-antigens demonstrate abundant expression, making them suitable imaging targets.
- Glycan-based tumor imaging is an emerging field with significant potential.
Conclusions:
- Glycans, mucins, and proteoglycans represent promising targets for multimodal tumor imaging.
- Targeting glycans offers potential advantages over targeting cancer-associated proteins.
- Further research and clinical implementation of glycan-based imaging are warranted.

