Clinical trial · Observational
Characterization & Comparison of Drugable Mutations in Primary and Metastatic Tumors, CTCs and cfDNA in MBCpatients
Characterization and Comparison of Drugable Mutations in Primary Tumors, Metastatic Tissue, Circulating Tumor Cells and Cell-Free Circulating DNA in Metastatic Breast Cancer Patients
- Source
- ClinicalTrials.gov
- Retrieved
- Sep 8, 2026
- Layer
- normalized (units and labels harmonized; values unchanged)
- Run
- ING-CLINICALTRIALS-20260908-000001
Summary
Brief summary (as posted)
Characterization of the driver mutations in an individual metastatic breast cancer patient is critical for many reasons. Effective targeted therapies require identifying genomic alterations in the tumoral tissue. The scarce efficacy of many currently available targeted drugs may be due to the outbreak of resistant clones with different genotype that already present at the initiation of therapy. It is well known the intra-tumor heterogeneity with genetic and non-genetic factors considered as the origin of the tumor cell-clon composition. The acquisition of multiple mutations (driver and passenger), altogether with the stage of differentiation, according to the cancer stem cell hypothesis, confers to the tumor cells clinically important properties, such as resistance to therapies and seeding abilities. Moreover, there is a current challenge in establishing whether the metastatic cells arise from the most aggressive and dominant clone in the primary tumor or the metastasic tissue diverges with substantial genetic changes very early in the evolution of the disease. Primary and metastatic tumor may have a close clonal relationship or evolve in parallel and acquire different genomic alterations. In the real life, it is plausible that both models coexist with different predominance according to the tumoral tissue and etiology. The study hypothesizes that breast cancer metastases and primary tumors could harbor different genomic profiles related to genomic regions of interest in a clinically relevant proportion of metastatic breast cancer patients. Moreover, the genomic aberrations found in the metastatic breast cancer tissue could also be detected in CTCs and circulating free DNA. If true, CTCs and circulating free DNA would be convenient, non-invasive, easily accessible sources of genomic material for the analysis of mutations and other genomic aberrations.
Conditions
Conditions (1)
Free-text conditions as registered, with the CancerIndex entity they were reconciled to and the match type.
| Condition (as posted) | Mapped entity | Match | Confidence |
|---|---|---|---|
| Metastatic Breast Cancer | Malignant Breast Neoplasm | CURATED_BROADER | 0.78 |
Interventions
Interventions (0)
Data not yet available
Design
Arms and outcomes
Arms (0)
[]Primary outcomes (1)
- measure
- Cohen's kappa coefficient to measure the inter-rater agreement for mutations and other genomic findings (categorical items) between the metastatic tissue and the primary tumor tissue in Metastatic Breast Cancer patients.
- timeFrame
- 26 months
Secondary outcomes (2)
- measure
- Number of somatic genomic findings (found in the primary and metastatic tumor) in circulating tumoral cells (CTC) and circulating free DNA(cfDNA) obtained from peripheral blood (liquid biopsy).
- timeFrame
- 26 months
- measure
- Description of the mutations in analyzed genes in the primary tumor and in CTC/cfDNA for each patient.
- timeFrame
- 26 months
- description
- Note: circulating tumor cells couldn't be sequenced
Eligibility
Eligibility (as posted)
- Sex
- Female
- Minimum age
- 18 Years
Show eligibility criteria text
Inclusion Criteria: * Metastatic breast cancer confirmed by radiologic findings * ≥ 18 years old * Able to give signed consent * Availability to get the paraffin block of her primary tumor. * First metastatic relapse or tumor regrowth while on treatment for metastatic disease (progressive disease while on treatment) * Biopsy of the metastatic site clinically indicated Exclusion Criteria: * Inability to get a core sample from a metastatic site * Bone disease only (the decalcification process usually prevents an appropriate genomic study). * Unable to drawn peripheral blood * Unable to give the informed consent * Coagulation disorders * ECOG status 3-4
References
Publications (1)
- DERIVEDGonzalez-Rivera M, Picornell AC, Alvarez EL, Martin M. A Cross-Sectional Comparison of Druggable Mutations in Primary Tumors, Metastatic Tissue, Circulating Tumor Cells, and Cell-Free Circulating DNA in Patients with Metastatic Breast Cancer: The MIRROR Study Protocol. JMIR Res Protoc. 2016 Aug 16;5(3):e167. doi: 10.2196/resprot.6024. PMID 27531554