Cargando…

Development and clinical validation of a microfluidic-based platform for CTC enrichment and downstream molecular analysis

BACKGROUND: Although many CTC isolation and detection methods can provide information on cancer cell counts, downstream gene and protein analysis remain incomplete. Therefore, it is crucial to develop a technology that can provide comprehensive information on both the number and profile of CTC. METH...

Descripción completa

Detalles Bibliográficos
Autores principales: Cai, Songhua, Deng, Youjun, Wang, Zhe, Zhu, Junyu, Huang, Chujian, Du, Longde, Wang, Chunguang, Yu, Xiangyang, Liu, Wenyi, Yang, Chenglin, Wang, Lixu, Ma, Kai, Huang, Rui, Zhou, Xiaoyu, Zou, Heng, Zhang, Wenchong, Huang, Yan, Li, Zhi, Qin, Tiaoping, Xu, Tao, Guo, Xiaotong, Yu, Zhentao
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10578963/
https://www.ncbi.nlm.nih.gov/pubmed/37849806
http://dx.doi.org/10.3389/fonc.2023.1238332
_version_ 1785121626066518016
author Cai, Songhua
Deng, Youjun
Wang, Zhe
Zhu, Junyu
Huang, Chujian
Du, Longde
Wang, Chunguang
Yu, Xiangyang
Liu, Wenyi
Yang, Chenglin
Wang, Zhe
Wang, Lixu
Ma, Kai
Huang, Rui
Zhou, Xiaoyu
Zou, Heng
Zhang, Wenchong
Huang, Yan
Li, Zhi
Qin, Tiaoping
Xu, Tao
Guo, Xiaotong
Yu, Zhentao
author_facet Cai, Songhua
Deng, Youjun
Wang, Zhe
Zhu, Junyu
Huang, Chujian
Du, Longde
Wang, Chunguang
Yu, Xiangyang
Liu, Wenyi
Yang, Chenglin
Wang, Zhe
Wang, Lixu
Ma, Kai
Huang, Rui
Zhou, Xiaoyu
Zou, Heng
Zhang, Wenchong
Huang, Yan
Li, Zhi
Qin, Tiaoping
Xu, Tao
Guo, Xiaotong
Yu, Zhentao
author_sort Cai, Songhua
collection PubMed
description BACKGROUND: Although many CTC isolation and detection methods can provide information on cancer cell counts, downstream gene and protein analysis remain incomplete. Therefore, it is crucial to develop a technology that can provide comprehensive information on both the number and profile of CTC. METHODS: In this study, we developed a novel microfluidics-based CTC separation and enrichment platform that provided detailed information about CTC. RESULTS: This platform exhibits exceptional functionality, achieving high rates of CTC recovery (87.1%) and purification (∼4 log depletion of WBCs), as well as accurate detection (95.10%), providing intact and viable CTCs for downstream analysis. This platform enables successful separation and enrichment of CTCs from a 4 mL whole-blood sample within 15 minutes. Additionally, CTC subtypes, selected protein expression levels on the CTC surface, and target mutations in selected genes can be directly analyzed for clinical utility using immunofluorescence and real-time polymerase chain reaction, and the detected PD-L1 expression in CTCs is consistent with immunohistochemical assay results. CONCLUSION: The microfluidic-based CTC enrichment platform and downstream molecular analysis together provide a possible alternative to tissue biopsy for precision cancer management, especially for patients whose tissue biopsies are unavailable.
format Online
Article
Text
id pubmed-10578963
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher Frontiers Media S.A.
record_format MEDLINE/PubMed
spelling pubmed-105789632023-10-17 Development and clinical validation of a microfluidic-based platform for CTC enrichment and downstream molecular analysis Cai, Songhua Deng, Youjun Wang, Zhe Zhu, Junyu Huang, Chujian Du, Longde Wang, Chunguang Yu, Xiangyang Liu, Wenyi Yang, Chenglin Wang, Zhe Wang, Lixu Ma, Kai Huang, Rui Zhou, Xiaoyu Zou, Heng Zhang, Wenchong Huang, Yan Li, Zhi Qin, Tiaoping Xu, Tao Guo, Xiaotong Yu, Zhentao Front Oncol Oncology BACKGROUND: Although many CTC isolation and detection methods can provide information on cancer cell counts, downstream gene and protein analysis remain incomplete. Therefore, it is crucial to develop a technology that can provide comprehensive information on both the number and profile of CTC. METHODS: In this study, we developed a novel microfluidics-based CTC separation and enrichment platform that provided detailed information about CTC. RESULTS: This platform exhibits exceptional functionality, achieving high rates of CTC recovery (87.1%) and purification (∼4 log depletion of WBCs), as well as accurate detection (95.10%), providing intact and viable CTCs for downstream analysis. This platform enables successful separation and enrichment of CTCs from a 4 mL whole-blood sample within 15 minutes. Additionally, CTC subtypes, selected protein expression levels on the CTC surface, and target mutations in selected genes can be directly analyzed for clinical utility using immunofluorescence and real-time polymerase chain reaction, and the detected PD-L1 expression in CTCs is consistent with immunohistochemical assay results. CONCLUSION: The microfluidic-based CTC enrichment platform and downstream molecular analysis together provide a possible alternative to tissue biopsy for precision cancer management, especially for patients whose tissue biopsies are unavailable. Frontiers Media S.A. 2023-10-02 /pmc/articles/PMC10578963/ /pubmed/37849806 http://dx.doi.org/10.3389/fonc.2023.1238332 Text en Copyright © 2023 Cai, Deng, Wang, Zhu, Huang, Du, Wang, Yu, Liu, Yang, Wang, Wang, Ma, Huang, Zhou, Zou, Zhang, Huang, Li, Qin, Xu, Guo and Yu https://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
Cai, Songhua
Deng, Youjun
Wang, Zhe
Zhu, Junyu
Huang, Chujian
Du, Longde
Wang, Chunguang
Yu, Xiangyang
Liu, Wenyi
Yang, Chenglin
Wang, Zhe
Wang, Lixu
Ma, Kai
Huang, Rui
Zhou, Xiaoyu
Zou, Heng
Zhang, Wenchong
Huang, Yan
Li, Zhi
Qin, Tiaoping
Xu, Tao
Guo, Xiaotong
Yu, Zhentao
Development and clinical validation of a microfluidic-based platform for CTC enrichment and downstream molecular analysis
title Development and clinical validation of a microfluidic-based platform for CTC enrichment and downstream molecular analysis
title_full Development and clinical validation of a microfluidic-based platform for CTC enrichment and downstream molecular analysis
title_fullStr Development and clinical validation of a microfluidic-based platform for CTC enrichment and downstream molecular analysis
title_full_unstemmed Development and clinical validation of a microfluidic-based platform for CTC enrichment and downstream molecular analysis
title_short Development and clinical validation of a microfluidic-based platform for CTC enrichment and downstream molecular analysis
title_sort development and clinical validation of a microfluidic-based platform for ctc enrichment and downstream molecular analysis
topic Oncology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10578963/
https://www.ncbi.nlm.nih.gov/pubmed/37849806
http://dx.doi.org/10.3389/fonc.2023.1238332
work_keys_str_mv AT caisonghua developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT dengyoujun developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT wangzhe developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT zhujunyu developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT huangchujian developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT dulongde developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT wangchunguang developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT yuxiangyang developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT liuwenyi developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT yangchenglin developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT wangzhe developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT wanglixu developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT makai developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT huangrui developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT zhouxiaoyu developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT zouheng developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT zhangwenchong developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT huangyan developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT lizhi developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT qintiaoping developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT xutao developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT guoxiaotong developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis
AT yuzhentao developmentandclinicalvalidationofamicrofluidicbasedplatformforctcenrichmentanddownstreammolecularanalysis