CA-CAE: A deep learning-based multi-omics model for pan-cancer subtype classification and prognosis prediction

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Abstract

In cancer research, identifying cancer subtypes and evaluating prognosis are crucial for personalized diagnosis and treatment of cancer. With the advancement of high-throughput sequencing technologies, multi-omics data has become essential for cancer classification and prognostic analysis. By integrating deep learning techniques, it is possible to more accurately identify cancer subtypes, providing a robust basis for personalized treatment of cancer patients. In this study, we propose a convolutional autoencoder prognostic model incorporating a channel attention mechanism (CA-CAE). The model utilizes multi-omics data to predict survival-associated cancer subtypes and identify prognostic genes. We applied CA-CAE to multiple cancer types, successfully identifying subtypes in 15 distinct cancer types and revealing significant survival differences among these subtypes. Moreover, compared to traditional statistical methods and other deep learning approaches, CA-CAE demonstrated superior performance in predicting survival outcomes.

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Zhang, S., Lu, Y., Li, P., Wu, J., Wang, G., & Yang, W. (2026). CA-CAE: A deep learning-based multi-omics model for pan-cancer subtype classification and prognosis prediction. PLOS Computational Biology, 22(2). https://doi.org/10.1371/journal.pcbi.1014015

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