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Comprehensive characterization of plasma cell-free Echinococcus spp. DNA in echinococcosis patients using ultra-high-throughput sequencing

BACKGROUND: Echinococcosis is a life-threatening parasitic disease caused by Echinococcus spp. tapeworms with over one million people affected globally at any time. The Echinococcus spp. tapeworms in the human body release DNA to the circulatory system, which can be a biomarker for echinococcosis. C...

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Autores principales: Ji, Jingkai, Li, Bin, Li, Jingzhong, Danzeng, Wangmu, Li, Jiandong, Zhao, Yanping, Qiangba, Gezhen, Zhang, Qingda, Renzhen, Nibu, Basang, Zhuoga, Jia, Changlin, Gongsang, Quzhen, Ma, Jinmin, Wang, Yicong, Chen, Fang, Zhou, Hongcheng, Huasang, Yin, Jiefang, Xie, Jiandan, Pei, Na, Cai, Huimin, Jiang, Huayan, Yang, Huanming, Wang, Jian, Asan, Han, Xiumin, Li, Junhua, Chen, Weijun, Yang, Dong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7209354/
https://www.ncbi.nlm.nih.gov/pubmed/32282820
http://dx.doi.org/10.1371/journal.pntd.0008148
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author Ji, Jingkai
Li, Bin
Li, Jingzhong
Danzeng, Wangmu
Li, Jiandong
Zhao, Yanping
Qiangba, Gezhen
Zhang, Qingda
Renzhen, Nibu
Basang, Zhuoga
Jia, Changlin
Gongsang, Quzhen
Ma, Jinmin
Wang, Yicong
Chen, Fang
Zhou, Hongcheng
Huasang,
Yin, Jiefang
Xie, Jiandan
Pei, Na
Cai, Huimin
Jiang, Huayan
Yang, Huanming
Wang, Jian
Asan,
Han, Xiumin
Li, Junhua
Chen, Weijun
Yang, Dong
author_facet Ji, Jingkai
Li, Bin
Li, Jingzhong
Danzeng, Wangmu
Li, Jiandong
Zhao, Yanping
Qiangba, Gezhen
Zhang, Qingda
Renzhen, Nibu
Basang, Zhuoga
Jia, Changlin
Gongsang, Quzhen
Ma, Jinmin
Wang, Yicong
Chen, Fang
Zhou, Hongcheng
Huasang,
Yin, Jiefang
Xie, Jiandan
Pei, Na
Cai, Huimin
Jiang, Huayan
Yang, Huanming
Wang, Jian
Asan,
Han, Xiumin
Li, Junhua
Chen, Weijun
Yang, Dong
author_sort Ji, Jingkai
collection PubMed
description BACKGROUND: Echinococcosis is a life-threatening parasitic disease caused by Echinococcus spp. tapeworms with over one million people affected globally at any time. The Echinococcus spp. tapeworms in the human body release DNA to the circulatory system, which can be a biomarker for echinococcosis. Cell-free DNA (cfDNA) is widely used in medical research and has been applied in various clinical settings. As for echinococcosis, several PCR-based tests had been trialed to detect cell-free Echinococcus spp. DNA in plasma or serum, but the sensitivity was about 20% to 25%. Low sensitivity of PCR-based methods might be related to our limited understanding of the features of cell-free Echinococcus spp. DNA in plasma, including its concentration, fragment pattern and release source. In this study, we applied ultra-high-throughput sequencing to comprehensively investigate the characteristics of cell-free Echinococcus spp. DNA in plasma of echinococcosis patients. METHODOLOGY/PRINCIPAL FINDINGS: We collected plasma samples from 23 echinococcosis patients. Total plasma cfDNA was extracted and sequenced with a high-throughput sequencing platform. An average of 282 million read pairs were obtained for each plasma sample. Sequencing data were analyzed with bioinformatics workflow combined with Echinococcus spp. sequence database. After identification of cell-free Echinococcus spp. reads, we found that the cell-free Echinococcus spp. reads accounted for 1.8e-5 to 4.0e-9 of the total clean reads. Comparing fragment length distribution of cfDNA between Echinococcus spp. and humans showed that cell-free Echinococcus spp. DNA of cystic echinococcosis (CE) had a broad length range, while that of alveolar echinococcosis (AE) had an obvious peak at about 135 bp. We found that most of the cell-free Echinococcus spp. DNA reads were from the nuclear genome with an even distribution, which might indicate a random release pattern of cell-free Echinococcus spp. DNA. CONCLUSIONS/SIGNIFICANCE: With ultra-high-throughput sequencing technology, we analyzed the concentration, fragment length, release source, and other characteristics of cell-free Echinococcus spp. DNA in the plasma of echinococcosis patients. A better understanding of the characteristics of cell-free Echinococcus spp. DNA in plasma may facilitate their future application as a biomarker for diagnosis.
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spelling pubmed-72093542020-05-12 Comprehensive characterization of plasma cell-free Echinococcus spp. DNA in echinococcosis patients using ultra-high-throughput sequencing Ji, Jingkai Li, Bin Li, Jingzhong Danzeng, Wangmu Li, Jiandong Zhao, Yanping Qiangba, Gezhen Zhang, Qingda Renzhen, Nibu Basang, Zhuoga Jia, Changlin Gongsang, Quzhen Ma, Jinmin Wang, Yicong Chen, Fang Zhou, Hongcheng Huasang, Yin, Jiefang Xie, Jiandan Pei, Na Cai, Huimin Jiang, Huayan Yang, Huanming Wang, Jian Asan, Han, Xiumin Li, Junhua Chen, Weijun Yang, Dong PLoS Negl Trop Dis Research Article BACKGROUND: Echinococcosis is a life-threatening parasitic disease caused by Echinococcus spp. tapeworms with over one million people affected globally at any time. The Echinococcus spp. tapeworms in the human body release DNA to the circulatory system, which can be a biomarker for echinococcosis. Cell-free DNA (cfDNA) is widely used in medical research and has been applied in various clinical settings. As for echinococcosis, several PCR-based tests had been trialed to detect cell-free Echinococcus spp. DNA in plasma or serum, but the sensitivity was about 20% to 25%. Low sensitivity of PCR-based methods might be related to our limited understanding of the features of cell-free Echinococcus spp. DNA in plasma, including its concentration, fragment pattern and release source. In this study, we applied ultra-high-throughput sequencing to comprehensively investigate the characteristics of cell-free Echinococcus spp. DNA in plasma of echinococcosis patients. METHODOLOGY/PRINCIPAL FINDINGS: We collected plasma samples from 23 echinococcosis patients. Total plasma cfDNA was extracted and sequenced with a high-throughput sequencing platform. An average of 282 million read pairs were obtained for each plasma sample. Sequencing data were analyzed with bioinformatics workflow combined with Echinococcus spp. sequence database. After identification of cell-free Echinococcus spp. reads, we found that the cell-free Echinococcus spp. reads accounted for 1.8e-5 to 4.0e-9 of the total clean reads. Comparing fragment length distribution of cfDNA between Echinococcus spp. and humans showed that cell-free Echinococcus spp. DNA of cystic echinococcosis (CE) had a broad length range, while that of alveolar echinococcosis (AE) had an obvious peak at about 135 bp. We found that most of the cell-free Echinococcus spp. DNA reads were from the nuclear genome with an even distribution, which might indicate a random release pattern of cell-free Echinococcus spp. DNA. CONCLUSIONS/SIGNIFICANCE: With ultra-high-throughput sequencing technology, we analyzed the concentration, fragment length, release source, and other characteristics of cell-free Echinococcus spp. DNA in the plasma of echinococcosis patients. A better understanding of the characteristics of cell-free Echinococcus spp. DNA in plasma may facilitate their future application as a biomarker for diagnosis. Public Library of Science 2020-04-13 /pmc/articles/PMC7209354/ /pubmed/32282820 http://dx.doi.org/10.1371/journal.pntd.0008148 Text en © 2020 Ji et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Ji, Jingkai
Li, Bin
Li, Jingzhong
Danzeng, Wangmu
Li, Jiandong
Zhao, Yanping
Qiangba, Gezhen
Zhang, Qingda
Renzhen, Nibu
Basang, Zhuoga
Jia, Changlin
Gongsang, Quzhen
Ma, Jinmin
Wang, Yicong
Chen, Fang
Zhou, Hongcheng
Huasang,
Yin, Jiefang
Xie, Jiandan
Pei, Na
Cai, Huimin
Jiang, Huayan
Yang, Huanming
Wang, Jian
Asan,
Han, Xiumin
Li, Junhua
Chen, Weijun
Yang, Dong
Comprehensive characterization of plasma cell-free Echinococcus spp. DNA in echinococcosis patients using ultra-high-throughput sequencing
title Comprehensive characterization of plasma cell-free Echinococcus spp. DNA in echinococcosis patients using ultra-high-throughput sequencing
title_full Comprehensive characterization of plasma cell-free Echinococcus spp. DNA in echinococcosis patients using ultra-high-throughput sequencing
title_fullStr Comprehensive characterization of plasma cell-free Echinococcus spp. DNA in echinococcosis patients using ultra-high-throughput sequencing
title_full_unstemmed Comprehensive characterization of plasma cell-free Echinococcus spp. DNA in echinococcosis patients using ultra-high-throughput sequencing
title_short Comprehensive characterization of plasma cell-free Echinococcus spp. DNA in echinococcosis patients using ultra-high-throughput sequencing
title_sort comprehensive characterization of plasma cell-free echinococcus spp. dna in echinococcosis patients using ultra-high-throughput sequencing
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7209354/
https://www.ncbi.nlm.nih.gov/pubmed/32282820
http://dx.doi.org/10.1371/journal.pntd.0008148
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