4.8 Article

Hypoxia Triggers the Intravasation of Clustered Circulating Tumor Cells

期刊

CELL REPORTS
卷 32, 期 10, 页码 -

出版社

CELL PRESS
DOI: 10.1016/j.celrep.2020.108105

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资金

  1. European Research Council [678834, 840636]
  2. European Union [801159-B2B]
  3. Swiss National Science Foundation [179490, 182357, PP0P3_163938, PP00P3_190077, IZLIZ3_182962]
  4. Swiss Cancer League [KFS-3811-02-2016, KLS-4222-08-2017, KLS-4834-08-2019]
  5. Basel Cancer League [KLbB-4173-03-2017, KLbB-4763-02-2019]
  6. two Cantons of Basel through the ETH Zurich [PMB-01-16]
  7. University of Basel, Switzerland
  8. Swiss National Science Foundation (SNF) [IZLIZ3_182962, PP00P3_190077] Funding Source: Swiss National Science Foundation (SNF)
  9. European Research Council (ERC) [840636] Funding Source: European Research Council (ERC)

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Circulating tumor cells (CTCs) are shed from solid cancers in the form of single or clustered cells, and the latter display an extraordinary ability to initiate metastasis. Yet, the biological phenomena that trigger the shedding of CTC clusters from a primary cancerous lesion are poorly understood. Here, when dynamically labeling breast cancer cells along cancer progression, we observe that the majority of CTC clusters are undergoing hypoxia, while single CTCs are largely normoxic. Strikingly, we find that vascular endothelial growth factor (VEGF) targeting leads to primary tumor shrinkage, but it increases intra-tumor hypoxia, resulting in a higher CTC cluster shedding rate and metastasis formation. Conversely, pro-angiogenic treatment increases primary tumor size, yet it dramatically suppresses the formation of CTC clusters and metastasis. Thus, intra-tumor hypoxia leads to the formation of clustered CTCs with high metastatic ability, and a pro-angiogenic therapy suppresses metastasis formation through prevention of CTC cluster generation.

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