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Urine Molecular Biomarkers for Detection and Follow-Up of Small Renal Masses

Active surveillance (AS) is the best strategy for small renal masses (SRMs) management; however, reliable methods for early detection and disease aggressiveness prediction are urgently needed. The aim of the present study was to validate DNA methylation biomarkers for non-invasive SRM detection and...

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Autores principales: Žalimas, Algirdas, Kubiliūtė, Raimonda, Žukauskaitė, Kristina, Sabaliauskaitė, Rasa, Trakymas, Mantas, Letautienė, Simona, Kaubrienė, Edita Mišeikytė, Ušinskienė, Jurgita, Ulys, Albertas, Jarmalaitė, Sonata
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9785854/
https://www.ncbi.nlm.nih.gov/pubmed/36555747
http://dx.doi.org/10.3390/ijms232416110
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author Žalimas, Algirdas
Kubiliūtė, Raimonda
Žukauskaitė, Kristina
Sabaliauskaitė, Rasa
Trakymas, Mantas
Letautienė, Simona
Kaubrienė, Edita Mišeikytė
Ušinskienė, Jurgita
Ulys, Albertas
Jarmalaitė, Sonata
author_facet Žalimas, Algirdas
Kubiliūtė, Raimonda
Žukauskaitė, Kristina
Sabaliauskaitė, Rasa
Trakymas, Mantas
Letautienė, Simona
Kaubrienė, Edita Mišeikytė
Ušinskienė, Jurgita
Ulys, Albertas
Jarmalaitė, Sonata
author_sort Žalimas, Algirdas
collection PubMed
description Active surveillance (AS) is the best strategy for small renal masses (SRMs) management; however, reliable methods for early detection and disease aggressiveness prediction are urgently needed. The aim of the present study was to validate DNA methylation biomarkers for non-invasive SRM detection and prognosis. The levels of methylated genes TFAP2B, TAC1, PCDH8, ZNF677, FLRT2, and FBN2 were evaluated in 165 serial urine samples prospectively collected from 39 patients diagnosed with SRM, specifically renal cell carcinoma (RCC), before and during the AS via quantitative methylation-specific polymerase chain reaction. Voided urine samples from 92 asymptomatic volunteers were used as the control. Significantly higher methylated TFAP2B, TAC1, PCDH8, ZNF677, and FLRT2 levels and/or frequencies were detected in SRM patients’ urine samples as compared to the control. The highest diagnostic power (AUC = 0.74) was observed for the four biomarkers panel with 92% sensitivity and 52% specificity. Methylated PCDH8 level positively correlated with SRM size at diagnosis, while TFAP2B had the opposite effect and was related to SRM progression. To sum up, SRMs contribute significantly to the amount of methylated DNA detectable in urine, which might be used for very early RCC detection. Moreover, PCDH8 and TFAP2B methylation have the potential to be prognostic biomarkers for SRMs.
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spelling pubmed-97858542022-12-24 Urine Molecular Biomarkers for Detection and Follow-Up of Small Renal Masses Žalimas, Algirdas Kubiliūtė, Raimonda Žukauskaitė, Kristina Sabaliauskaitė, Rasa Trakymas, Mantas Letautienė, Simona Kaubrienė, Edita Mišeikytė Ušinskienė, Jurgita Ulys, Albertas Jarmalaitė, Sonata Int J Mol Sci Article Active surveillance (AS) is the best strategy for small renal masses (SRMs) management; however, reliable methods for early detection and disease aggressiveness prediction are urgently needed. The aim of the present study was to validate DNA methylation biomarkers for non-invasive SRM detection and prognosis. The levels of methylated genes TFAP2B, TAC1, PCDH8, ZNF677, FLRT2, and FBN2 were evaluated in 165 serial urine samples prospectively collected from 39 patients diagnosed with SRM, specifically renal cell carcinoma (RCC), before and during the AS via quantitative methylation-specific polymerase chain reaction. Voided urine samples from 92 asymptomatic volunteers were used as the control. Significantly higher methylated TFAP2B, TAC1, PCDH8, ZNF677, and FLRT2 levels and/or frequencies were detected in SRM patients’ urine samples as compared to the control. The highest diagnostic power (AUC = 0.74) was observed for the four biomarkers panel with 92% sensitivity and 52% specificity. Methylated PCDH8 level positively correlated with SRM size at diagnosis, while TFAP2B had the opposite effect and was related to SRM progression. To sum up, SRMs contribute significantly to the amount of methylated DNA detectable in urine, which might be used for very early RCC detection. Moreover, PCDH8 and TFAP2B methylation have the potential to be prognostic biomarkers for SRMs. MDPI 2022-12-17 /pmc/articles/PMC9785854/ /pubmed/36555747 http://dx.doi.org/10.3390/ijms232416110 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Žalimas, Algirdas
Kubiliūtė, Raimonda
Žukauskaitė, Kristina
Sabaliauskaitė, Rasa
Trakymas, Mantas
Letautienė, Simona
Kaubrienė, Edita Mišeikytė
Ušinskienė, Jurgita
Ulys, Albertas
Jarmalaitė, Sonata
Urine Molecular Biomarkers for Detection and Follow-Up of Small Renal Masses
title Urine Molecular Biomarkers for Detection and Follow-Up of Small Renal Masses
title_full Urine Molecular Biomarkers for Detection and Follow-Up of Small Renal Masses
title_fullStr Urine Molecular Biomarkers for Detection and Follow-Up of Small Renal Masses
title_full_unstemmed Urine Molecular Biomarkers for Detection and Follow-Up of Small Renal Masses
title_short Urine Molecular Biomarkers for Detection and Follow-Up of Small Renal Masses
title_sort urine molecular biomarkers for detection and follow-up of small renal masses
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9785854/
https://www.ncbi.nlm.nih.gov/pubmed/36555747
http://dx.doi.org/10.3390/ijms232416110
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