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Updated: Aug 14, 2026

Isolation and Propagation of Circulating Tumor Cells from a Mouse Cancer Model
Published on: October 9, 2015
Models to study CTCs and CTC culture methods
Cristóbal Fernández-Santiago1, Rafael López-López2, Roberto Piñeiro3
1Roche-Chus Joint Unit, Translational Medical Oncology Group (Oncomet), Health Research Institute of Santiago de Compostela, Santiago de Compostela, A Coruña, Spain.
Abstract:
The vast majority of cancer-related deaths are due to the presence of disseminated disease. Understanding the metastatic process is key to achieving a reduction in cancer mortality. Particularly, there is a need to understand the molecular mechanisms that drive cancer metastasis, which will allow the identification of curative treatments for metastatic cancers. Liquid biopsies have arisen as a minimally invasive approach to gain insights into the biology of metastasis. Circulating tumour cells (CTCs), shed to the circulation from the primary tumour or metastatic lesions, are a key component of liquid biopsy. As metastatic precursors, CTCs hold the potential to unravel the mechanisms involved in metastasis formation as well as new therapeutic strategies for treating metastatic disease. However, the complex biology of CTCs together with their low frequency in circulation are factors hampering an in-depth mechanistic investigation of the metastatic process. To overcome these problems, CTC-derived models, including CTC-derived xenograft (CDX) and CTC-derived ex vivo cultures, in combination with more traditional in vivo models of metastasis, have emerged as powerful tools to investigate the biological features of CTCs facilitating cancer metastasis and uncover new therapeutic opportunities. In this chapter, we provide an up to date view of the diverse models used in different cancers to study the biology of CTCs, and of the methods developed for CTC culture and expansion, in vivo and ex vivo. We also report some of the main challenges and limitations that these models are facing.
Insights
Understanding cancer metastasis is crucial for reducing deaths. New models of circulating tumor cells (CTCs) offer powerful tools to study metastasis and develop treatments, despite challenges.
Area of Science:
- Oncology
- Cancer Biology
- Translational Medicine
Background:
- Cancer mortality is largely driven by metastatic spread.
- Understanding metastasis mechanisms is vital for developing effective cancer treatments.
- Liquid biopsies, particularly circulating tumor cells (CTCs), offer insights into metastatic biology.
Purpose of the Study:
- To review current models for studying circulating tumor cell (CTC) biology.
- To explore methods for CTC culture and expansion.
- To identify challenges and limitations in current CTC research models.
Main Methods:
- Review of diverse CTC-derived models, including xenografts (CDX) and ex vivo cultures.
- Discussion of in vivo and ex vivo methods for CTC culture and expansion.
- Analysis of traditional in vivo metastasis models.
Main Results:
- CTC-derived models are powerful tools for investigating metastasis.
- These models facilitate the study of CTC biology and therapeutic strategies.
- Various models exist for different cancer types.
Conclusions:
- CTC-derived models are essential for understanding metastasis.
- Further development is needed to overcome challenges in CTC research.
- These models hold promise for uncovering new therapeutic opportunities.
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