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Updated: May 28, 2025

Identifying PD-1/PD-L1 Inhibitors with Surface Plasmon Resonance Technology
Published on: May 2, 2025
ImmunoTar-integrative prioritization of cell surface targets for cancer immunotherapy
Rawan Shraim1,2, Brian Mooney3,4, Karina L Conkrite1
1Division of Oncology and Center for Childhood Cancer Research, Children's Hospital of Philadelphia, Philadelphia, PA 19104, United States.
Motivation:
Cancer remains a leading cause of mortality globally. Recent improvements in survival have been facilitated by the development of targeted and less toxic immunotherapies, such as chimeric antigen receptor (CAR)-T cells and antibody-drug conjugates (ADCs). These therapies, effective in treating both pediatric and adult patients with solid and hematological malignancies, rely on the identification of cancer-specific surface protein targets. While technologies like RNA sequencing and proteomics exist to survey these targets, identifying optimal targets for immunotherapies remains a challenge in the field.
Results:
To address this challenge, we developed ImmunoTar, a novel computational tool designed to systematically prioritize candidate immunotherapeutic targets. ImmunoTar integrates user-provided RNA-sequencing or proteomics data with quantitative features from multiple public databases, selected based on predefined criteria, to generate a score representing the gene's suitability as an immunotherapeutic target. We validated ImmunoTar using three distinct cancer datasets, demonstrating its effectiveness in identifying both known and novel targets across various cancer phenotypes. By compiling diverse data into a unified platform, ImmunoTar enables comprehensive evaluation of surface proteins, streamlining target identification and empowering researchers to efficiently allocate resources, thereby accelerating the development of effective cancer immunotherapies.
Availability And Implementation:
Code and data to run and test ImmunoTar are available at https://github.com/sacanlab/immunotar.
Insights
ImmunoTar is a new computational tool that helps find the best cancer targets for immunotherapies like CAR-T cells and ADCs. It analyzes data to score potential targets, speeding up the development of new cancer treatments.
Area of Science:
- Oncology
- Bioinformatics
- Immunotherapy
Background:
- Cancer is a major global health challenge.
- Immunotherapies like CAR-T cells and ADCs have improved cancer treatment outcomes.
- Identifying specific cancer targets is crucial for these therapies but remains challenging.
Purpose of the Study:
- To develop a computational tool for systematically prioritizing immunotherapeutic targets.
- To address the challenge of identifying optimal cancer-specific surface protein targets.
Main Methods:
- Developed ImmunoTar, a novel computational tool.
- Integrated user-provided RNA-sequencing or proteomics data with public database features.
- Generated a scoring system for gene suitability as an immunotherapeutic target.
Main Results:
- Validated ImmunoTar on three distinct cancer datasets.
- Demonstrated effectiveness in identifying known and novel immunotherapeutic targets.
- Showcased the tool's ability to analyze diverse cancer phenotypes.
Conclusions:
- ImmunoTar streamlines the identification of surface proteins for cancer immunotherapies.
- The tool enables comprehensive evaluation and efficient resource allocation for researchers.
- Accelerates the development of effective immunotherapies by simplifying target discovery.
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