BertTCR: a Bert-based deep learning framework for predicting cancer-related immune status based on T cell receptor repertoire.
1/5 보강
The T cell receptor (TCR) repertoire is pivotal to the human immune system, and understanding its nuances can significantly enhance our ability to forecast cancer-related immune responses.
APA
Zhang M, Cheng Q, et al. (2024). BertTCR: a Bert-based deep learning framework for predicting cancer-related immune status based on T cell receptor repertoire.. Briefings in bioinformatics, 25(5). https://doi.org/10.1093/bib/bbae420
MLA
Zhang M, et al.. "BertTCR: a Bert-based deep learning framework for predicting cancer-related immune status based on T cell receptor repertoire.." Briefings in bioinformatics, vol. 25, no. 5, 2024.
PMID
39177262 ↗
Abstract 한글 요약
The T cell receptor (TCR) repertoire is pivotal to the human immune system, and understanding its nuances can significantly enhance our ability to forecast cancer-related immune responses. However, existing methods often overlook the intra- and inter-sequence interactions of T cell receptors (TCRs), limiting the development of sequence-based cancer-related immune status predictions. To address this challenge, we propose BertTCR, an innovative deep learning framework designed to predict cancer-related immune status using TCRs. BertTCR combines a pre-trained protein large language model with deep learning architectures, enabling it to extract deeper contextual information from TCRs. Compared to three state-of-the-art sequence-based methods, BertTCR improves the AUC on an external validation set for thyroid cancer detection by 21 percentage points. Additionally, this model was trained on over 2000 publicly available TCR libraries covering 17 types of cancer and healthy samples, and it has been validated on multiple public external datasets for its ability to distinguish cancer patients from healthy individuals. Furthermore, BertTCR can accurately classify various cancer types and healthy individuals. Overall, BertTCR is the advancing method for cancer-related immune status forecasting based on TCRs, offering promising potential for a wide range of immune status prediction tasks.
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