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A Urine-Based Liquid Biopsy Method for Detection of Upper Tract Urinary Carcinoma

BACKGROUND: Conventional clinical detection methods such as CT, urine cytology, and ureteroscopy display low sensitivity and/or are invasive in the diagnosis of upper tract urinary carcinoma (UTUC), a factor precluding their use. Previous studies on urine biopsy have not shown satisfactory sensitivi...

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Autores principales: Xu, Yansheng, Ma, Xin, Ai, Xing, Gao, Jiangping, Liang, Yiming, Zhang, Qin, Ma, Tonghui, Mao, Kaisheng, Zheng, Qiaosong, Wang, Sizhen, Jiao, Yuchen, Zhang, Xu, Li, Hongzhao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7901537/
https://www.ncbi.nlm.nih.gov/pubmed/33634022
http://dx.doi.org/10.3389/fonc.2020.597486
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author Xu, Yansheng
Ma, Xin
Ai, Xing
Gao, Jiangping
Liang, Yiming
Zhang, Qin
Ma, Tonghui
Mao, Kaisheng
Zheng, Qiaosong
Wang, Sizhen
Jiao, Yuchen
Zhang, Xu
Li, Hongzhao
author_facet Xu, Yansheng
Ma, Xin
Ai, Xing
Gao, Jiangping
Liang, Yiming
Zhang, Qin
Ma, Tonghui
Mao, Kaisheng
Zheng, Qiaosong
Wang, Sizhen
Jiao, Yuchen
Zhang, Xu
Li, Hongzhao
author_sort Xu, Yansheng
collection PubMed
description BACKGROUND: Conventional clinical detection methods such as CT, urine cytology, and ureteroscopy display low sensitivity and/or are invasive in the diagnosis of upper tract urinary carcinoma (UTUC), a factor precluding their use. Previous studies on urine biopsy have not shown satisfactory sensitivity and specificity in the application of both gene mutation or gene methylation panels. Therefore, these unfavorable factors call for an urgent need for a sensitive and non-invasive method for the diagnosis of UTUC. METHODS: In this study, a total of 161 hematuria patients were enrolled with (n = 69) or without (n = 92) UTUC. High-throughput sequencing of 17 genes and methylation analysis for ONECUT2 CpG sites were combined as a liquid biopsy test panel. Further, a logistic regression prediction model that contained several significant features was used to evaluate the risk of UTUC in these patients. RESULTS: In total, 86 UTUC− and 64 UTUC+ case samples were enrolled for the analysis. A logistic regression analysis of significant features including age, the mutation status of TERT promoter, and ONECUT2 methylation level resulted in an optimal model with a sensitivity of 94.0%, a specificity of 93.1%, the positive predictive value of 92.2% and a negative predictive value of 94.7%. Notably, the area under the curve (AUC) was 0.957 in the training dataset while internal validation produced an AUC of 0.962. It is worth noting that during follow-up, a patient diagnosed with ureteral inflammation at the time of diagnosis exhibiting both positive mutation and methylation test results was diagnosed with ureteral carcinoma 17 months after his enrollment. CONCLUSION: This work utilized the epigenetic biomarker ONECUT2 for the first time in the detection of UTUC and discovered its superior performance. To improve its sensitivity, we combined the biomarker with high-throughput sequencing of 17 genes test. It was found that the selected logistic regression model diagnosed with ureteral cancer can evaluate upper tract urinary carcinoma risk of patients with hematuria and outperform other existing panels in providing clinical recommendations for the diagnosis of UTUC. Moreover, its high negative predictive value is conducive to rule to exclude patients without UTUC.
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spelling pubmed-79015372021-02-24 A Urine-Based Liquid Biopsy Method for Detection of Upper Tract Urinary Carcinoma Xu, Yansheng Ma, Xin Ai, Xing Gao, Jiangping Liang, Yiming Zhang, Qin Ma, Tonghui Mao, Kaisheng Zheng, Qiaosong Wang, Sizhen Jiao, Yuchen Zhang, Xu Li, Hongzhao Front Oncol Oncology BACKGROUND: Conventional clinical detection methods such as CT, urine cytology, and ureteroscopy display low sensitivity and/or are invasive in the diagnosis of upper tract urinary carcinoma (UTUC), a factor precluding their use. Previous studies on urine biopsy have not shown satisfactory sensitivity and specificity in the application of both gene mutation or gene methylation panels. Therefore, these unfavorable factors call for an urgent need for a sensitive and non-invasive method for the diagnosis of UTUC. METHODS: In this study, a total of 161 hematuria patients were enrolled with (n = 69) or without (n = 92) UTUC. High-throughput sequencing of 17 genes and methylation analysis for ONECUT2 CpG sites were combined as a liquid biopsy test panel. Further, a logistic regression prediction model that contained several significant features was used to evaluate the risk of UTUC in these patients. RESULTS: In total, 86 UTUC− and 64 UTUC+ case samples were enrolled for the analysis. A logistic regression analysis of significant features including age, the mutation status of TERT promoter, and ONECUT2 methylation level resulted in an optimal model with a sensitivity of 94.0%, a specificity of 93.1%, the positive predictive value of 92.2% and a negative predictive value of 94.7%. Notably, the area under the curve (AUC) was 0.957 in the training dataset while internal validation produced an AUC of 0.962. It is worth noting that during follow-up, a patient diagnosed with ureteral inflammation at the time of diagnosis exhibiting both positive mutation and methylation test results was diagnosed with ureteral carcinoma 17 months after his enrollment. CONCLUSION: This work utilized the epigenetic biomarker ONECUT2 for the first time in the detection of UTUC and discovered its superior performance. To improve its sensitivity, we combined the biomarker with high-throughput sequencing of 17 genes test. It was found that the selected logistic regression model diagnosed with ureteral cancer can evaluate upper tract urinary carcinoma risk of patients with hematuria and outperform other existing panels in providing clinical recommendations for the diagnosis of UTUC. Moreover, its high negative predictive value is conducive to rule to exclude patients without UTUC. Frontiers Media S.A. 2021-02-09 /pmc/articles/PMC7901537/ /pubmed/33634022 http://dx.doi.org/10.3389/fonc.2020.597486 Text en Copyright © 2021 Xu, Ma, Ai, Gao, Liang, Zhang, Ma, Mao, Zheng, Wang, Jiao, Zhang and Li http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Oncology
Xu, Yansheng
Ma, Xin
Ai, Xing
Gao, Jiangping
Liang, Yiming
Zhang, Qin
Ma, Tonghui
Mao, Kaisheng
Zheng, Qiaosong
Wang, Sizhen
Jiao, Yuchen
Zhang, Xu
Li, Hongzhao
A Urine-Based Liquid Biopsy Method for Detection of Upper Tract Urinary Carcinoma
title A Urine-Based Liquid Biopsy Method for Detection of Upper Tract Urinary Carcinoma
title_full A Urine-Based Liquid Biopsy Method for Detection of Upper Tract Urinary Carcinoma
title_fullStr A Urine-Based Liquid Biopsy Method for Detection of Upper Tract Urinary Carcinoma
title_full_unstemmed A Urine-Based Liquid Biopsy Method for Detection of Upper Tract Urinary Carcinoma
title_short A Urine-Based Liquid Biopsy Method for Detection of Upper Tract Urinary Carcinoma
title_sort urine-based liquid biopsy method for detection of upper tract urinary carcinoma
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7901537/
https://www.ncbi.nlm.nih.gov/pubmed/33634022
http://dx.doi.org/10.3389/fonc.2020.597486
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