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Updated: Apr 28, 2026

Circulating Tumor Cell Lines: an Innovative Tool for Fundamental and Translational Research
Published on: December 25, 2021
Circulating Tumor Cells: What Is in It for the Patient? A Vision towards the Future
Anja van de Stolpe1, Jaap M J den Toonder2
1Fellow, Precision and Decentralized Diagnostics, Philips Research, Eindhoven 5656 AE, The Netherlands. Anja.van.de.stolpe@philips.com.
Abstract:
Knowledge on cellular signal transduction pathways as drivers of cancer growth and metastasis has fuelled development of "targeted therapy" which "targets" aberrant oncogenic signal transduction pathways. These drugs require nearly invariably companion diagnostic tests to identify the tumor-driving pathway and the cause of the abnormal pathway activity in a tumor sample, both for therapy response prediction as well as for monitoring of therapy response and emerging secondary drug resistance. Obtaining sufficient tumor material for this analysis in the metastatic setting is a challenge, and circulating tumor cells (CTCs) may provide an attractive alternative to biopsy on the premise that they can be captured from blood and the companion diagnostic test results are correctly interpreted. We discuss novel companion diagnostic directions, including the challenges, to identify the tumor driving pathway in CTCs, which in combination with a digital pathology platform and algorithms to quantitatively interpret complex CTC diagnostic results may enable optimized therapy response prediction and monitoring. In contrast to CTC-based companion diagnostics, CTC enumeration is envisioned to be largely replaced by cell free tumor DNA measurements in blood for therapy response and recurrence monitoring. The recent emergence of novel in vitro human model systems in the form of cancer-on-a-chip may enable elucidation of some of the so far elusive characteristics of CTCs, and is expected to contribute to more efficient CTC capture and CTC-based diagnostics.
Insights
Targeted cancer therapies rely on companion diagnostics to guide treatment. Circulating tumor cells (CTCs) offer a promising alternative to biopsies for identifying tumor pathways and monitoring treatment response.
Area of Science:
- Oncology
- Molecular Biology
- Biotechnology
Background:
- Targeted cancer therapies exploit knowledge of oncogenic signal transduction pathways.
- Companion diagnostics are crucial for identifying targetable pathways and predicting/monitoring therapy response.
- Obtaining sufficient tumor tissue for diagnostics in metastatic cancer is challenging.
Purpose of the Study:
- To explore novel directions for companion diagnostics using circulating tumor cells (CTCs).
- To address challenges in identifying tumor-driving pathways within CTCs.
- To discuss the potential of CTCs for therapy response prediction and monitoring.
Main Methods:
- Discussing novel companion diagnostic strategies for CTCs.
- Integrating digital pathology platforms and algorithms for CTC analysis.
- Considering cancer-on-a-chip models for CTC research.
Main Results:
- CTCs present a viable alternative to tumor biopsies for companion diagnostics.
- Digital pathology and algorithms can quantitatively interpret complex CTC data.
- Cell-free tumor DNA (ctDNA) may supersede CTC enumeration for monitoring.
Conclusions:
- Optimized therapy response prediction and monitoring can be achieved through CTC-based companion diagnostics.
- Cancer-on-a-chip models may enhance CTC capture and diagnostic efficiency.
- Future diagnostics may leverage CTCs for pathway identification and ctDNA for monitoring.
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