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Prediction of immune infiltration and prognosis for patients with urothelial bladder cancer based on the DNA damage repair-related genes signature

OBJECTIVES: To analyze the correlations between the expression and effect of DNA damage repair genes and the immune status and clinical outcomes of urothelial bladder cancer (BLCA) patients. In addition, we evaluate the efficacy and value of utilizing the DNA damage repair genes signature as a progn...

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Autores principales: Li, Tianhang, Jiang, Ning, Bai, Yuhao, Liu, Tianyao, Zhao, Zihan, Xu, Xinyan, Zhang, Yulin, Wei, Fayun, Sun, Rui, Liu, Siyang, Li, Jiazheng, Guo, Hongqian, Yang, Rong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9976330/
https://www.ncbi.nlm.nih.gov/pubmed/36873527
http://dx.doi.org/10.1016/j.heliyon.2023.e13661
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author Li, Tianhang
Jiang, Ning
Bai, Yuhao
Liu, Tianyao
Zhao, Zihan
Xu, Xinyan
Zhang, Yulin
Wei, Fayun
Sun, Rui
Liu, Siyang
Li, Jiazheng
Guo, Hongqian
Yang, Rong
author_facet Li, Tianhang
Jiang, Ning
Bai, Yuhao
Liu, Tianyao
Zhao, Zihan
Xu, Xinyan
Zhang, Yulin
Wei, Fayun
Sun, Rui
Liu, Siyang
Li, Jiazheng
Guo, Hongqian
Yang, Rong
author_sort Li, Tianhang
collection PubMed
description OBJECTIVES: To analyze the correlations between the expression and effect of DNA damage repair genes and the immune status and clinical outcomes of urothelial bladder cancer (BLCA) patients. In addition, we evaluate the efficacy and value of utilizing the DNA damage repair genes signature as a prognosis model for BLCA. METHODS: Two subtype groups (C1 and C2) were produced based on the varied expression of DNA damage repair genes. Significantly differentiated genes and predicted enriched gene pathways were obtained between the two subtypes. Seven key genes were obtained from the DNA damage repair-related genes and a 7-gene signature prognosis model was established based on the key genes. The efficacy and accuracy of this model in prognosis prediction was evaluated and verified in two independent databases. Also, the difference in biological functions, drug sensitivity, immune infiltration and affinity between the high-risk group and low-risk group was analyzed. RESULTS: The DNA damage repair gene signature could significantly differentiate the BLCA into two molecular subgroups with varied genetic expression and enriched gene pathways. Seven key genes were screened out from the 232 candidate genes for prognosis prediction and a 7-gene signature prognosis model was established based on them. Two independent patient cohorts (TCGA cohort and GEO cohort) were utilized to validate the efficacy of the prognosis model, which demonstrated an effective capability to differentiate and predict the overall survival of BLCA patients. Also, the high-risk group and low-risk group derived from the 7-gene model exhibited significantly differences in drug sensitivity, immune infiltration status and biological pathways enrichment. CONCLUSIONS: Our established 7-gene signature model based on the DNA damage repair genes could serve as a novel prognosis predictive tool for BLCA. The differentiation of BLCA patients based on the 7-gene signature model may be of great value for the appropriate selection of specific chemotherapy agents and immune-checkpoint blockade therapy administration.
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spelling pubmed-99763302023-03-02 Prediction of immune infiltration and prognosis for patients with urothelial bladder cancer based on the DNA damage repair-related genes signature Li, Tianhang Jiang, Ning Bai, Yuhao Liu, Tianyao Zhao, Zihan Xu, Xinyan Zhang, Yulin Wei, Fayun Sun, Rui Liu, Siyang Li, Jiazheng Guo, Hongqian Yang, Rong Heliyon Research Article OBJECTIVES: To analyze the correlations between the expression and effect of DNA damage repair genes and the immune status and clinical outcomes of urothelial bladder cancer (BLCA) patients. In addition, we evaluate the efficacy and value of utilizing the DNA damage repair genes signature as a prognosis model for BLCA. METHODS: Two subtype groups (C1 and C2) were produced based on the varied expression of DNA damage repair genes. Significantly differentiated genes and predicted enriched gene pathways were obtained between the two subtypes. Seven key genes were obtained from the DNA damage repair-related genes and a 7-gene signature prognosis model was established based on the key genes. The efficacy and accuracy of this model in prognosis prediction was evaluated and verified in two independent databases. Also, the difference in biological functions, drug sensitivity, immune infiltration and affinity between the high-risk group and low-risk group was analyzed. RESULTS: The DNA damage repair gene signature could significantly differentiate the BLCA into two molecular subgroups with varied genetic expression and enriched gene pathways. Seven key genes were screened out from the 232 candidate genes for prognosis prediction and a 7-gene signature prognosis model was established based on them. Two independent patient cohorts (TCGA cohort and GEO cohort) were utilized to validate the efficacy of the prognosis model, which demonstrated an effective capability to differentiate and predict the overall survival of BLCA patients. Also, the high-risk group and low-risk group derived from the 7-gene model exhibited significantly differences in drug sensitivity, immune infiltration status and biological pathways enrichment. CONCLUSIONS: Our established 7-gene signature model based on the DNA damage repair genes could serve as a novel prognosis predictive tool for BLCA. The differentiation of BLCA patients based on the 7-gene signature model may be of great value for the appropriate selection of specific chemotherapy agents and immune-checkpoint blockade therapy administration. Elsevier 2023-02-13 /pmc/articles/PMC9976330/ /pubmed/36873527 http://dx.doi.org/10.1016/j.heliyon.2023.e13661 Text en © 2023 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Li, Tianhang
Jiang, Ning
Bai, Yuhao
Liu, Tianyao
Zhao, Zihan
Xu, Xinyan
Zhang, Yulin
Wei, Fayun
Sun, Rui
Liu, Siyang
Li, Jiazheng
Guo, Hongqian
Yang, Rong
Prediction of immune infiltration and prognosis for patients with urothelial bladder cancer based on the DNA damage repair-related genes signature
title Prediction of immune infiltration and prognosis for patients with urothelial bladder cancer based on the DNA damage repair-related genes signature
title_full Prediction of immune infiltration and prognosis for patients with urothelial bladder cancer based on the DNA damage repair-related genes signature
title_fullStr Prediction of immune infiltration and prognosis for patients with urothelial bladder cancer based on the DNA damage repair-related genes signature
title_full_unstemmed Prediction of immune infiltration and prognosis for patients with urothelial bladder cancer based on the DNA damage repair-related genes signature
title_short Prediction of immune infiltration and prognosis for patients with urothelial bladder cancer based on the DNA damage repair-related genes signature
title_sort prediction of immune infiltration and prognosis for patients with urothelial bladder cancer based on the dna damage repair-related genes signature
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9976330/
https://www.ncbi.nlm.nih.gov/pubmed/36873527
http://dx.doi.org/10.1016/j.heliyon.2023.e13661
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