Ontology-based modeling, integration, and analysis of heterogeneous clinical, pathological, and molecular kidney data for precision medicine

Author:

He Yongqun OliverORCID,Barisoni LauraORCID,Rosenberg Avi ZORCID,Robinson Peter N.ORCID,Diehl Alexander D.ORCID,Chen Yichao,Phuong Jimmy P.ORCID,Hansen JensORCID,Herr Bruce W.ORCID,Börner KatyORCID,Schaub JenniferORCID,Bonevich Nikki,Arnous Ghida,Boddapati Saketh,Zheng JieORCID,Alakwaa FadhlORCID,Sarder PinakiORCID,Duncan William D.ORCID,Liang ChenORCID,Valerius M. ToddORCID,Jain SanjayORCID,Iyengar RaviORCID,Himmelfarb JonathanORCID,Kretzler MatthiasORCID,

Abstract

AbstractMany data resources generate, process, store, or provide kidney related molecular, pathological, and clinical data. Reference ontologies offer an opportunity to support knowledge and data integration. The Kidney Precision Medicine Project (KPMP) team contributed to the representation and addition of 329 kidney phenotype terms to the Human Phenotype Ontology (HPO), and identified many subcategories of acute kidney injury (AKI) or chronic kidney disease (CKD). The Kidney Tissue Atlas Ontology (KTAO) imports and integrates kidney-related terms from existing ontologies (e.g., HPO, CL, and Uberon) and represents 259 kidney-related biomarkers. We have also developed a precision medicine metadata ontology (PMMO) to integrate 50 variables from KPMP and CZ CellxGene data resources and applied PMMO for integrative kidney data analysis. The gene expression profiles of kidney gene biomarkers were specifically analyzed under healthy control or AKI/CKD disease states. This work demonstrates how ontology-based approaches support multi-domain data and knowledge integration in precision medicine.

Publisher

Cold Spring Harbor Laboratory

Reference14 articles.

1. Rationale and design of the Kidney Precision Medicine Project

2. Advances and prospects for the Human BioMolecular Atlas Program (HuBMAP);Nat Cell Biol,2023

3. The Human Cell Atlas: from vision to reality

4. Biology CS-C , Abdulla S , Aevermann B , Assis P , Badajoz S , Bell SM , et al. CZ CELLxGENE Discover: A single-cell data platform for scalable exploration, analysis and modeling of aggregated data. bioRxiv. 2023:2023.10. 30.563174.

5. The Cell Ontology 2016: enhanced content, modularization, and ontology interoperability

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