arrow
Return

Biologically informed deep learning for explainable epigenetic clocks

delete2024-01-15
delete8
delete
OA
AI
A
Aurél Prósz
O
Orsolya Pipek
J
Judit Börcsök
G
Gergely Palla
Z
Zoltán Szállási
S
Sándor Spisák *
I
István Csabai
DOI:10.1038/s41598-023-50495-5delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Ageing is often characterised by progressive accumulation of damage, and it is one of the most important risk factors for chronic disease development. Epigenetic mechanisms including DNA methylation could functionally contribute to organismal aging, however the key functions and biological processes may govern ageing are still not understood. Although age predictors called epigenetic clocks can accurately estimate the biological age of an individual based on cellular DNA methylation, their models have limited ability to explain the prediction algorithm behind and underlying key biological processes controlling ageing. Here we present XAI-AGE, a biologically informed, explainable deep neural network model for accurate biological age prediction across multiple tissue types. We show that XAI-AGE outperforms the first-generation age predictors and achieves similar results to deep learning-based models, while opening up the possibility to infer biologically meaningful insights of the activity of pathways and other abstract biological processes directly from the model.
Keywords:
DNA METHYLATION
CELLS
CANCER
DAMAGE
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Scientific Reports cover
Scientific Reports
IF:
3.9
Papers:
27.4W
Citations:
83.5W

Organization

U
University of Copenhagen
Scholars:
7.6W
Papers: 6.6W
Citations: 86
H
HUN-REN Research Centre for Natural Sciences
Scholars:
2.1K
Papers: 1.5K
Citations: 7
S
Semmelweis University
Scholars:
1.3W
Papers: 8.2K
Citations: 1.1W
E
Eotvos Lorand University
Scholars:
7.5K
Papers: 6.3K
Citations: 84
researcher View more organizations