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Tamoxifen improves distant recurrence-free interval for postmenopausal women with specific tumor microenvironment scoresTumor environment markers may predict how well tamoxifen works

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Key Takeaway
Note that specific tumor microenvironment scores may predict tamoxifen benefit in postmenopausal ER+HER2- breast cancer.

This secondary analysis of a randomized trial evaluated 513 postmenopausal women with estrogen receptor-positive (ER+), HER2-negative (HER2-) breast cancer. The study utilized transcriptomic deconvolution to analyze the tumor microenvironment (TME) and its association with tamoxifen efficacy.

Patients receiving tamoxifen showed improved distant recurrence-free interval (DRFI) compared to untreated patients specifically in those with low immune scores (p < 0.001). Additionally, tamoxifen was associated with favorable DRFI in patients with intermediate endothelial abundance (aHR = 0.21; 95% CI 0.09-0.51) and in patients with low or intermediate fibroblast abundance (aHR = 0.50 for low; aHR = 0.36 for intermediate).

Safety data, including adverse events and tolerability, were not reported. The study is limited by its design as a secondary analysis of an existing trial using transcriptomic deconvolution. While these findings suggest that TME composition may predict tamoxifen benefit in postmenopausal ER+HER2- breast cancer, the results represent associations rather than direct causation.

How this fits prior evidence

How this fits prior evidence: This finding addresses a gap in understanding how the tumor microenvironment influences endocrine therapy response in postmenopausal ER+HER2- breast cancer. While previous coverage confirmed that dose-dense adjuvant chemotherapy reduces invasive disease hazard by 38% in HER2-zero breast cancer, and Trop-2 directed ADCs improve progression free survival in high Trop-2 expression patients, this study specifically explores the role of immune and stromal components as potential predictors for tamoxifen efficacy.

For women with certain types of breast cancer, finding the right treatment is vital. This study looked at how the environment inside a tumor—specifically the amount of immune cells and other supporting cells like fibroblasts—might change how well the drug tamoxifen works.

Researchers analyzed data from 513 postmenopausal women with specific types of breast cancer. They found that patients with lower levels of certain immune markers actually saw better results when taking tamoxifen compared to those who received no treatment. Additionally, patients with specific amounts of other cells, like those that form blood vessels or connective tissue, also showed improved outcomes on the drug.

It is important to note that this was a secondary analysis of an existing trial. While these findings suggest that the tumor's environment could help doctors predict who will benefit most from tamoxifen, the study shows an association rather than a direct cause. These results are based on specialized genetic mapping of the tumor tissue.

What this means for you:
Specific immune and cell markers in the tumor may help predict how well tamoxifen works for some patients.

Common questions

Who does this finding help?

This research focuses on postmenopausal women with estrogen receptor-positive, HER2-negative breast cancer. It looks at how the specific environment of their tumors might predict how well they respond to tamoxifen treatment.

What role do immune cells play in this study?

The study found that patients with lower levels of certain immune cell markers had a better distant recurrence-free interval when taking tamoxifen compared to those who received no endocrine therapy. This suggests the immune environment is linked to treatment success.

How does this differ from current treatments?

The study does not change how tamoxifen works, but it identifies specific markers—like low immune abundance or specific fibroblast levels—that may help predict which patients will see the most benefit from the drug.

Study Details

Study typeRct
Sample sizen = 513
EvidenceLevel 2
PublishedAug 2026
View Original Abstract ↓
BACKGROUND: The tumour microenvironment (TME) influences breast cancer progression and treatment response. We investigated whether TME composition predicts tamoxifen benefit in postmenopausal women with oestrogen receptor-positive, HER2-negative (ER+HER2-) breast cancer. METHODS: This study included 513 patients from the Stockholm Tamoxifen (STO-3) trial, which randomised postmenopausal, lymph node-negative women to tamoxifen or no endocrine therapy. Bulk tumour transcriptomes were deconvoluted with the ConsensusTME algorithm to estimate the relative abundance of 18 immune and stromal cell types. A summary score of combined immune cells was created on a per patient basis and evaluated alongside fibroblast and endothelial stromal compartments. Patients were categorised into immune and stromal tertiles on the basis of these scores. Associations between TME composition and tumour characteristics were evaluated using Spearman correlations and Fisher's exact test. Tamoxifen benefit was analysed by univariable Kaplan-Meier (log-rank) and multivariable Cox proportional hazards adjusting for age, tumour size, grade, progesterone receptor, Ki-67, and radiotherapy. Differential expression was assessed with limma and pathway enrichment with fgsea using Hallmark gene sets from MSigDB. RESULTS: Low immune abundance was significantly associated with higher ER expression (Kruskal-Wallis test p < 0.001). Among tamoxifen-treated patients, those with low immune scores showed improved distant recurrence-free interval (DRFI) relative to untreated patients (log-rank p < 0.001). Similarly, intermediate endothelial (p < 0.001) and low/intermediate fibroblast abundances (p = 0.042, p = 0.009) were associated with favourable DRFI. In multivariable models, low immune (adjusted HR = 0.17, 95% CI 0.08-0.40), intermediate endothelial (aHR = 0.21, 95% CI 0.09-0.51), and low/intermediate fibroblast tertiles (aHR = 0.50, 95% CI 0.27-0.93; aHR = 0.36, 95% CI 0.17-0.77) retained significance. Transcriptomic analysis revealed enrichment of oestrogen-response, MYC-target, and oxidative-phosphorylation pathways in low-immune and low-fibroblast tumours, while interferon-γ response and allograft rejection pathways were downregulated. CONCLUSIONS: TME composition modulates tamoxifen benefit in postmenopausal ER+HER2- breast cancer. Low immune, intermediate endothelial, and low/intermediate fibroblast abundances are associated with improved benefit from tamoxifen, suggesting that both immune and stromal compartments influence endocrine treatment efficacy.
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