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  4. Multiomic characterization and drug testing establish circulating tumor cells as an ex vivo tool for personalized medicine
 
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Multiomic characterization and drug testing establish circulating tumor cells as an ex vivo tool for personalized medicine

Journal
iScience
Journal Volume
25
Journal Issue
10
Pages
105081
Date Issued
2022-10-21
Author(s)
Chen, Jia-Yang
Chou, Hsu-Huan
Lim, Syer Choon
Huang, Yen-Jang
Lai, Kuan-Chen
Guo, Chin-Lin
Tung, Chien-Yi
Su, Chung-Tsai
Wang, Jocelyn
Liu, Edward
Han, Hsiao-Fen
Yeh, Po-Ying
Hu, Chun-Mei
Dunn, Alexander R
Frank, Curtis W
YI-CHUN WU  
Yang, Muh-Hwa
Chang, Ying-Chih
DOI
10.1016/j.isci.2022.105081
URI
https://scholars.lib.ntu.edu.tw/handle/123456789/626680
URL
https://api.elsevier.com/content/abstract/scopus_id/85139048092
Abstract
Matching the treatment to an individual patient's tumor state can increase therapeutic efficacy and reduce tumor recurrence. Circulating tumor cells (CTCs) derived from solid tumors are promising subjects for theragnostic analysis. To analyze how CTCs represent tumor states, we established cell lines from CTCs, primary and metastatic tumors from a mouse model and provided phenotypic and multiomic analyses of these cells. CTCs and metastatic cells, but not primary tumor cells, shared stochastic mutations and similar hypomethylation levels at transcription start sites. CTCs and metastatic tumor cells shared a hybrid epithelial/mesenchymal transcriptome state with reduced adhesive and enhanced mobilization characteristics. We tested anti-cancer drugs on tumor cells from a metastatic breast cancer patient. CTC responses mirrored the impact of drugs on metastatic rather than primary tumors. Our multiomic and clinical anti-cancer drug response results reveal that CTCs resemble metastatic tumors and establish CTCs as an ex vivo tool for personalized medicine.
Subjects
Cancer; Omics; Precision medicine; Transcriptomics
SDGs

[SDGs]SDG3

Publisher
CELL PRESS
Type
journal article

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