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Updated: May 15, 2026

Identifying PD-1/PD-L1 Inhibitors with Surface Plasmon Resonance Technology
Published on: May 2, 2025
Identification of cell surface proteins as potential immunotherapy targets in 12 pediatric cancers
Rimas J Orentas1, James J Yang, Xinyu Wen
1Immunology Section, Pediatric Oncology Branch, Center for Cancer Research, National Cancer Institute, National Institutes of Health Bethesda, MD, USA.
Abstract:
Technological advances now allow us to rapidly produce CARs and other antibody-derived therapeutics targeting cell surface receptors. To maximize the potential of these new technologies, relevant extracellular targets must be identified. The Pediatric Oncology Branch of the NCI curates a freely accessible database of gene expression data for both pediatric cancers and normal tissues, through which we have defined discrete sets of over-expressed transcripts in 12 pediatric cancer subtypes as compared to normal tissues. We coupled gene expression profiles to current annotation databases (i.e., Affymetrix, Gene Ontology, Entrez Gene), in order to categorize transcripts by their sub-cellular location. In this manner we generated a list of potential immune targets expressed on the cell surface, ranked by their difference from normal tissue. Global differences from normal between each of the pediatric tumor types studied varied, indicating that some malignancies expressed transcript sets that were more highly diverged from normal tissues than others. The validity of our approach is seen by our findings for pre-B cell ALL, where targets currently in clinical trials were top-ranked hits (CD19, CD22). For some cancers, reagents already in development could potentially be applied to a new disease class, as exemplified by CD30 expression on sarcomas. Moreover, several potential new targets shared among several pediatric solid tumors are herein identified, such as MCAM (MUC18), metadherin (MTDH), and glypican-2 (GPC2). These targets have been identified at the mRNA level and are yet to be validated at the protein level. The safety of targeting these antigens has yet to be demonstrated and therefore the identified transcripts should be considered preliminary candidates for new CAR and therapeutic antibody targets. Prospective candidate targets will be evaluated by proteomic analysis including Westerns and immunohistochemistry of normal and tumor tissues.
Insights
Researchers identified new cell surface targets for pediatric cancer therapies by analyzing gene expression. This approach successfully ranked known targets and discovered novel candidates like MCAM, MTDH, and GPC2 for future CAR and antibody development.
Area of Science:
- Oncology
- Immunotherapy
- Bioinformatics
Background:
- Advances in CAR and antibody therapeutics necessitate identification of novel cell surface targets.
- Pediatric cancers require specific therapeutic strategies, including targeted immunotherapies.
Purpose of the Study:
- To identify and rank extracellular cell surface targets over-expressed in pediatric cancers compared to normal tissues.
- To generate a list of preliminary candidate targets for chimeric antigen receptor (CAR) and antibody-based therapies in pediatric malignancies.
Main Methods:
- Curated and analyzed gene expression data from pediatric cancers and normal tissues.
- Utilized annotation databases to determine sub-cellular localization of over-expressed transcripts.
- Ranked potential cell surface targets based on differential expression between tumor and normal tissues.
Main Results:
- Identified discrete sets of over-expressed transcripts in 12 pediatric cancer subtypes.
- Validated approach by ranking known targets (CD19, CD22) for pre-B cell ALL.
- Discovered potential new targets (MCAM, MTDH, GPC2) shared across pediatric solid tumors, and CD30 for sarcomas.
Conclusions:
- The study provides a validated method for identifying novel cell surface targets in pediatric cancers.
- Preliminary candidate targets at the mRNA level warrant further validation at the protein level for therapeutic development.
- Identified targets like MCAM, MTDH, and GPC2 represent promising avenues for future CAR and antibody-based immunotherapies in pediatric oncology.
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