Hypoxia stimulates CTC-platelet cluster formation to promote breast cancer metastasis

Circulating tumor cell clusters/micro-emboli (CTM) possess greater metastatic capacity and survival advantage compared to individual circulating tumor cell (CTC). However, the formation of CTM subtypes and their role in tumor metastasis remain unclear. In this study, we used a microfluidic Cluster-C...

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Veröffentlicht in:iScience 2024-05, Vol.27 (5), p.109547-109547, Article 109547
Hauptverfasser: Zhou, Weijia, Zhu, Chengjun, Shen, Peiliang, Wang, Jacqueline F., Zhu, Gaoshuang, Jia, Yuanyuan, Wu, Yueyao, Wang, Siliang, Sun, Jia, Yang, Fang, Song, Yanni, Han, Xin, Guan, Xiaoxiang
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container_issue 5
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container_title iScience
container_volume 27
creator Zhou, Weijia
Zhu, Chengjun
Shen, Peiliang
Wang, Jacqueline F.
Zhu, Gaoshuang
Jia, Yuanyuan
Wu, Yueyao
Wang, Siliang
Sun, Jia
Yang, Fang
Song, Yanni
Han, Xin
Guan, Xiaoxiang
description Circulating tumor cell clusters/micro-emboli (CTM) possess greater metastatic capacity and survival advantage compared to individual circulating tumor cell (CTC). However, the formation of CTM subtypes and their role in tumor metastasis remain unclear. In this study, we used a microfluidic Cluster-Chip with easy operation and high efficiency to isolate CTM from peripheral blood, which confirmed their correlation with clinicopathological features and identified the critical role of CTC-platelet clusters in breast cancer metastasis. The correlation between platelets and CTM function was further confirmed in a mouse model and RNA sequencing of CTM identified high-expressed genes related to hypoxia stimulation and platelet activation which possibly suggested the correlation of hypoxia and CTC-platelet cluster formation. In conclusion, we successfully developed the Cluster-Chip platform to realize the clinical capture of CTMs and analyze the biological properties of CTC-platelet clusters, which could benefit the design of potential treatment regimens to prevent CTM-mediated metastasis and tumor malignant progression. [Display omitted] •The Cluster-Chip exhibited easy operation and high efficiency in isolating CTMs from clinical samples•Platelet inhibition led to reduced CTM formation and facilitation of tumor metastasis•Hypoxia stimulation and platelet activation may correlate to CTC-platelet cluster formation Biotechnology; Cell biology; Cancer
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subjects Biotechnology
Cancer
Cell biology
title Hypoxia stimulates CTC-platelet cluster formation to promote breast cancer metastasis
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