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Omics Data Discovery Agents: Agent-Supported Retrieval, Reanalysis, and Synthesis of Published Omics Data
Alexandre Hutton1, Jesse G Meyer1
1Department of Computational Biomedicine, Cedars-Sinai Medical Center, Los Angeles, CA, USA.
Arxiv
|August 1, 2026
Summary
This study introduces an AI framework to retrieve and reanalyze omics data from published literature, making complex biological data more accessible for computational research and discovery.
Area of Science:
- Bioinformatics
- Computational Biology
- Data Science
Background:
- Vast amounts of omics data are published but remain computationally inaccessible.
- Essential information for data reuse is often dispersed across publications and supplementary materials.
Purpose of the Study:
- To develop an agentic framework for automated retrieval, reanalysis, and synthesis of published omics data.
- To enhance the computational reuse of biomedical omics datasets.
Main Methods:
- Utilized large language model (LLM) agents with tools for data fetching, metadata extraction, and pipeline execution.
- Employed model context protocol (MCP) servers to expose containerized analysis tools.
- Performed end-to-end reanalyses of proteomics and bulk RNA-seq data.
Main Results:
- Successfully cataloged dataset references across thousands of articles.
- Achieved high correlation (0.85-0.997) and concordant differentially expressed features (Spearman 0.88-0.91) in five reanalyses.
- Demonstrated the feasibility of automated omics data reanalysis with minimal residual differences.
Conclusions:
- The agentic framework significantly improves the accessibility and reusability of published omics data.
- Automated reanalysis pipelines can reproduce key findings, facilitating large-scale data synthesis.
- This approach paves the way for more integrated and efficient biomedical data research.
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