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Integrated modeling of labile and glycated hemoglobin with glucose for enhanced diabetes detection and short-term monitoring

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URI: http://hdl.handle.net/10498/35572

DOI: 10.1016/J.ISCI.2024.109369

ISSN: 2589-0042

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OA_2024_0904.pdf (4.677Mb)
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Romero Rosales, José Antonio; Aragonés, David G.; Escribano Serrano, José; González Borrachero, Marisa; Michán Doña, AlfredoAuthority UCA; Macías López, Francisco J.; Santos Mata, María Ángeles; Naranjo Jiménez, Inmaculada; Casamitjana Zamora, María Jesús; Serrano, Hélia; Belmonte Beitia, Juan; Rosa Durán, MaríaAuthority UCA; Calvo, Gabriel F.
Date
2024
Department
Matemáticas
Source
iScience - 2024, Vol. 27 n. 4 pp. 1-19
Abstract
Metabolic biomarkers, particularly glycated hemoglobin and fasting plasma glucose, are pivotal in the diagnosis and control of diabetes mellitus. Despite their importance, they exhibit limitations in assessing short-term glucose variations. In this study, we propose labile hemoglobin as an additional biomarker, providing insightful perspectives into these fluctuations. By utilizing datasets from 40,652 retrospective general participants and conducting glucose tolerance tests on 60 prospective pediatric subjects, we explored the relationship between plasma glucose and labile hemoglobin. A mathematical model was developed to encapsulate short-term glucose kinetics in the pediatric group. Applying dimensionality reduction techniques, we successfully identified participant subclusters, facilitating the differentiation between diabetic and non-diabetic individuals. Intriguingly, by integrating labile hemoglobin measurements with plasma glucose values, we were able to predict the likelihood of diabetes in pediatric subjects, underscoring the potential of labile hemoglobin as a significant glycemic biomarker for diabetes research.
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Attribution-NonCommercial-NoDerivatives 4.0 Internacional
This work is under a Creative Commons License Attribution-NonCommercial-NoDerivatives 4.0 Internacional

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