IntelliGenes: a novel machine learning pipeline for biomarker discovery and predictive analysis using multi-genomic profiles

Abstract Summary In this article, we present IntelliGenes, a novel machine learning (ML) pipeline for the multi-genomics exploration to discover biomarkers significant in disease prediction with high accuracy. IntelliGenes is based on a novel approach, which consists of nexus of conventional statist...

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Veröffentlicht in:Bioinformatics (Oxford, England) Jg. 39; H. 12
Hauptverfasser: DeGroat, William, Mendhe, Dinesh, Bhusari, Atharva, Abdelhalim, Habiba, Zeeshan, Saman, Ahmed, Zeeshan
Format: Journal Article
Sprache:Englisch
Veröffentlicht: England Oxford University Press 01.12.2023
Oxford Publishing Limited (England)
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ISSN:1367-4811, 1367-4803, 1367-4811
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Zusammenfassung:Abstract Summary In this article, we present IntelliGenes, a novel machine learning (ML) pipeline for the multi-genomics exploration to discover biomarkers significant in disease prediction with high accuracy. IntelliGenes is based on a novel approach, which consists of nexus of conventional statistical techniques and cutting-edge ML algorithms using multi-genomic, clinical, and demographic data. IntelliGenes introduces a new metric, i.e. Intelligent Gene (I-Gene) score to measure the importance of individual biomarkers for prediction of complex traits. I-Gene scores can be utilized to generate I-Gene profiles of individuals to comprehend the intricacies of ML used in disease prediction. IntelliGenes is user-friendly, portable, and a cross-platform application, compatible with Microsoft Windows, macOS, and UNIX operating systems. IntelliGenes not only holds the potential for personalized early detection of common and rare diseases in individuals, but also opens avenues for broader research using novel ML methodologies, ultimately leading to personalized interventions and novel treatment targets. Availability and implementation The source code of IntelliGenes is available on GitHub (https://github.com/drzeeshanahmed/intelligenes) and Code Ocean (https://codeocean.com/capsule/8638596/tree/v1).
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ISSN:1367-4811
1367-4803
1367-4811
DOI:10.1093/bioinformatics/btad755