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Detection of BRAF V600E in Fine-Needle Aspiration Samples of Thyroid Nodules by Droplet Digital PCR

BACKGROUND: BRAF exon 15 p.V600E (BRAF V600E) mutation has been established as an important molecular marker for papillary thyroid carcinoma diagnosis by ultrasound-guided fine-needle aspiration biopsy (FNAB). Sanger sequencing is the gold standard for detecting BRAF V600E mutations but fails to ide...

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Autores principales: Lu, Sang-Yu, Chen, Ying-Chao, Feng, Jia-Lin, Zhou, Qin-Yi, Chen, Jing, Zhu, Chen-Fang, Guo, Miao-Miao, Zhang, Man-Man, Zhang, Qian-Yue, Lu, Meng, Yang, Liu, Wu, Jing, Zhao, Shuang-Xia, Song, Huai-Dong, Ye, Xiao-Ping
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8983273/
https://www.ncbi.nlm.nih.gov/pubmed/35392249
http://dx.doi.org/10.1155/2022/6243696
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author Lu, Sang-Yu
Chen, Ying-Chao
Feng, Jia-Lin
Zhou, Qin-Yi
Chen, Jing
Zhu, Chen-Fang
Guo, Miao-Miao
Zhang, Man-Man
Zhang, Qian-Yue
Lu, Meng
Yang, Liu
Wu, Jing
Zhao, Shuang-Xia
Song, Huai-Dong
Ye, Xiao-Ping
author_facet Lu, Sang-Yu
Chen, Ying-Chao
Feng, Jia-Lin
Zhou, Qin-Yi
Chen, Jing
Zhu, Chen-Fang
Guo, Miao-Miao
Zhang, Man-Man
Zhang, Qian-Yue
Lu, Meng
Yang, Liu
Wu, Jing
Zhao, Shuang-Xia
Song, Huai-Dong
Ye, Xiao-Ping
author_sort Lu, Sang-Yu
collection PubMed
description BACKGROUND: BRAF exon 15 p.V600E (BRAF V600E) mutation has been established as an important molecular marker for papillary thyroid carcinoma diagnosis by ultrasound-guided fine-needle aspiration biopsy (FNAB). Sanger sequencing is the gold standard for detecting BRAF V600E mutations but fails to identify low-frequency mutations. However, droplet digital PCR (ddPCR) is a popular new method for detecting low-frequency mutations. Here, we compare the efficiency of droplet digital PCR (ddPCR) and Sanger sequencing for detection of the BRAF V600E mutation in thyroid fine-needle aspiration (FNA) samples. METHODS: Thyroid fine-needle aspiration samples from 278 patients with 310 thyroid nodules were collected. Sanger sequencing and ddPCR were conducted to detect the BRAF V600E mutation. RESULTS: The BRAF V600E mutation was found in 94 nodules (30.32%) by ddPCR and 40 nodules (12.90%) by Sanger sequencing in 310 FNA samples. A total of 119 nodules were confirmed PTC by postsurgical pathology. Among which the BRAF mutation was found in 80 (67.23%) nodules by ddPCR and 31 (26.05%) by Sanger sequencing. All nodules carrying the mutation detected by Sanger sequencing (SS+) were verified by ddPCR (ddPCR+). Also, all nodules with no mutation detected by ddPCR were interpreted as wild-type by Sanger sequencing (SS−). In addition. Almost all SS+/ddPCR + nodules (95.00%; 38/40) and SS−/ddPCR + nodules (100.00%; 54/54) displayed a BRAF mutation rate of >5% and <15%, respectively, indicating easy misdetection by Sanger sequencing when the mutation rate is between 5 and 15%. CONCLUSION: ddPCR has higher sensitivity than Sanger sequencing and we propose ddPCR as a supplement to Sanger sequencing in molecular testing of BRAF using FNAB samples.
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spelling pubmed-89832732022-04-06 Detection of BRAF V600E in Fine-Needle Aspiration Samples of Thyroid Nodules by Droplet Digital PCR Lu, Sang-Yu Chen, Ying-Chao Feng, Jia-Lin Zhou, Qin-Yi Chen, Jing Zhu, Chen-Fang Guo, Miao-Miao Zhang, Man-Man Zhang, Qian-Yue Lu, Meng Yang, Liu Wu, Jing Zhao, Shuang-Xia Song, Huai-Dong Ye, Xiao-Ping Int J Endocrinol Research Article BACKGROUND: BRAF exon 15 p.V600E (BRAF V600E) mutation has been established as an important molecular marker for papillary thyroid carcinoma diagnosis by ultrasound-guided fine-needle aspiration biopsy (FNAB). Sanger sequencing is the gold standard for detecting BRAF V600E mutations but fails to identify low-frequency mutations. However, droplet digital PCR (ddPCR) is a popular new method for detecting low-frequency mutations. Here, we compare the efficiency of droplet digital PCR (ddPCR) and Sanger sequencing for detection of the BRAF V600E mutation in thyroid fine-needle aspiration (FNA) samples. METHODS: Thyroid fine-needle aspiration samples from 278 patients with 310 thyroid nodules were collected. Sanger sequencing and ddPCR were conducted to detect the BRAF V600E mutation. RESULTS: The BRAF V600E mutation was found in 94 nodules (30.32%) by ddPCR and 40 nodules (12.90%) by Sanger sequencing in 310 FNA samples. A total of 119 nodules were confirmed PTC by postsurgical pathology. Among which the BRAF mutation was found in 80 (67.23%) nodules by ddPCR and 31 (26.05%) by Sanger sequencing. All nodules carrying the mutation detected by Sanger sequencing (SS+) were verified by ddPCR (ddPCR+). Also, all nodules with no mutation detected by ddPCR were interpreted as wild-type by Sanger sequencing (SS−). In addition. Almost all SS+/ddPCR + nodules (95.00%; 38/40) and SS−/ddPCR + nodules (100.00%; 54/54) displayed a BRAF mutation rate of >5% and <15%, respectively, indicating easy misdetection by Sanger sequencing when the mutation rate is between 5 and 15%. CONCLUSION: ddPCR has higher sensitivity than Sanger sequencing and we propose ddPCR as a supplement to Sanger sequencing in molecular testing of BRAF using FNAB samples. Hindawi 2022-03-29 /pmc/articles/PMC8983273/ /pubmed/35392249 http://dx.doi.org/10.1155/2022/6243696 Text en Copyright © 2022 Sang-Yu Lu et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Lu, Sang-Yu
Chen, Ying-Chao
Feng, Jia-Lin
Zhou, Qin-Yi
Chen, Jing
Zhu, Chen-Fang
Guo, Miao-Miao
Zhang, Man-Man
Zhang, Qian-Yue
Lu, Meng
Yang, Liu
Wu, Jing
Zhao, Shuang-Xia
Song, Huai-Dong
Ye, Xiao-Ping
Detection of BRAF V600E in Fine-Needle Aspiration Samples of Thyroid Nodules by Droplet Digital PCR
title Detection of BRAF V600E in Fine-Needle Aspiration Samples of Thyroid Nodules by Droplet Digital PCR
title_full Detection of BRAF V600E in Fine-Needle Aspiration Samples of Thyroid Nodules by Droplet Digital PCR
title_fullStr Detection of BRAF V600E in Fine-Needle Aspiration Samples of Thyroid Nodules by Droplet Digital PCR
title_full_unstemmed Detection of BRAF V600E in Fine-Needle Aspiration Samples of Thyroid Nodules by Droplet Digital PCR
title_short Detection of BRAF V600E in Fine-Needle Aspiration Samples of Thyroid Nodules by Droplet Digital PCR
title_sort detection of braf v600e in fine-needle aspiration samples of thyroid nodules by droplet digital pcr
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8983273/
https://www.ncbi.nlm.nih.gov/pubmed/35392249
http://dx.doi.org/10.1155/2022/6243696
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