Skip to content

Clinico-pathological and Genomic Features of HER2-low Early Breast Cancer

Clinico-pathological and Genomic Features of HER2-low Early Breast Cancer (eBC). Results of Retrospective Analysis of Seven Adjuvant Trials by the Hellenic Cooperative Oncology Group (HeCOG)

Status
Completed
Phases
Unknown
Study type
Observational
Source
ClinicalTrials.gov
Registry ID
NCT07561346
Enrollment
3648
Registered
2026-05-01
Start date
1996-12-10
Completion date
2026-07-07
Last updated
2026-07-24

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

HER2-zero, HER2-low and HER2-positive Tumors Distribution Across HR Expression Categories

Keywords

HER2 low breast cancer

Brief summary

Although breast cancer remains one of the most common and fatal cancer types among women worldwide, earlier diagnosis and improved therapeutic approaches have led to decreased mortality over last years. Indeed, the use of HER2-targeted drugs has improved clinical outcomes for patients with HER2 positive breast cancer, while, on the other hand, until recently, little progress has been made for HER2-negative (IHC score 0 and 1+) patients. However, it seems that among these HER2-negative breast cancers, substantial heterogeneity exists regarding the expression of hormone receptors (HR) and HER2. Biomarkers are critical for translating the biological heterogeneity of breast cancer into prognostically and therapeutically useful information. In recent years gene expression profiling and genomic analysis have shown utility in specific clinical scenarios, but immunohistochemistry (IHC) remains the cornerstone of biomarker testing in both early and advanced/metastatic disease. In breast cancer, achieving efficacy with endocrine therapy or with HER2-blockade requires identifying patients whose tumors show significant survival dependency on the therapeutic target. This is achieved by using appropriate biomarkers cut-offs ensuring a favorable benefit-to-toxicity ratio for specific patients. This paradigm has recently been challenged by a new class of HER2 drugs that use target expression not as a direct molecular lever but as a vehicle to deliver potent agents to cancer cells, breaking the straightforward link between the molecular target and the corresponding therapy. These drugs exhibit impressive activity at marker expression levels much lower than those required to effectively block HER2 signaling, shifting the diagnostic focus to the lower end of the staining spectrum, specifically distinguishing between HER2-zero and HER2-low expression. Given the lack of a definitive molecular hallmark for cancers characterized by low HER2 expression, ongoing efforts aim to understand the biology of this heterogeneous group of tumors. This understanding is crucial to triage treatment, investigate resistance mechanisms, and inform potential combination strategies. To enrich the available data, we perform a retrospective analysis of HER2-low patients in a large cohort of early breast cancer patients from Greece enrolled in 7 randomized and observational clinical studies. Given the importance of the hormone receptors and the known differential distribution of ER/PgR status between HER2-zero, HER2-low and HER2-positive breast tumors, after analyzing the entire population cohort, ER/PgR status will be treated as a confounding variable in the analysis and the HER2 categories will be compared separately within ER/PR-positive and ER/PR-negative disease. The study aims to investigate how HER2-zero, HER2-low and HER2-positive tumors are distributed across ER expression categories. Additionally, we will evaluate whether PgR positivity varies across ER expression categories, and if PgR identify heterogeneity within ER-low tumors. As TP53 mutation is strongly linked to basal-like, high-grade, hormone receptor-negative and HER2-positive biology, we will examine if TP53 mutation frequency differs across ER categories and classic subtypes and if PIK3CA mutation frequency differs across ER categories and PgR-defined groups, as PIK3CA mutations are generally enriched in luminal breast cancer. TIL biology is also strongly subtype-dependent. TNBC and HER2-positive disease are generally more immune-enriched than luminal disease, so we will examine if stromal TIL levels are associated with ER category, HER2 category and classic subtype in our study. Summarizing, our aim is to evaluate if HER2-low status retains independent associations with clinicopathologic, immune or genomic features after adjustment for ER category and classic subtype, whether ER/HER2 matrix groups are associated with disease outcome, and associations remain after adjustment for standard prognostic factors and treatment.

Detailed description

From 1996 until 2020, 5,320 eligible patients with operable breast cancer were treated, within the context of 3 randomized and 4 observational clinical studies with dds-CT including taxanes and anthracyclines. Adjuvant hormonal and radiation treatment were administered, as indicated. IHC and FiSH data from patients enrolled in the above randomized phase III trials conducted by the Hellenic Cooperative Oncology Group (HeCOG) will be retrospectively reviewed. All patients have signed a study-specific written informed consent before randomization, consenting for the trial and permitting the use of their biological material for future research purposes. All studies were conducted in accordance with the Declaration of Helsinki. Tumor material is examined mainly on tissue microarrays (TMA). Although, there is a HER2 assessment from local pathology laboratories, all tumors are re-evaluated centrally for ER, PgR and HER2 in the laboratory of Molecular Oncology according to ASCO/CAP guidelines. Tumors are subtyped with immunohistochemistry (IHC4) for ER, PgR, HER2 and Ki67. FISH is performed for the assessment of HER2 gene status. IHC for EGFR and CK5 is used for the classification of basal-like tumors; the expression of CD8 on TILs is also evaluated. Moreover, we investigate the mutational profile of Greek women with breast cancer, via the application of DNA Next Generation Sequencing (NGS) technologies, relative also to patient outcome. Patient demographic, clinicopathological and treatment data are available in all cases.

Interventions

None listed

Sponsors

Hellenic Cooperative Oncology Group
Lead SponsorOTHER

Study design

Observational model
COHORT
Time perspective
RETROSPECTIVE

Eligibility

Sex/Gender
FEMALE
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Age 18 and above * Histologically confirmed BC * All treated with adjuvant dose-dense sequential chemotherapy (dds-CT) * Tumor tissue specimen (FFPE) availability

Exclusion criteria

* not adequate, and unsuitable tissue for IHC, FISH, NGS analysis

Design outcomes

Primary

MeasureTime frameDescription
Overall Survival (OS)Time from study entry to death from any cause, assessed up to 120 months]To investigate the long-term prognostic significance of HER2 positive, HER2 low and HER2 zero in terms of OS
Disease-Free Survival (DFS)Time from study entry to first recurrence (local, regional, distant) or death from any cause, whichever comes first, assessed up to 120 months]To investigate the long-term prognostic significance of HER2 positive, HER2 low and HER2 zero in term of DFS

Countries

Greece

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Jul 25, 2026