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Updated: Sep 29, 2025

Optimization of a Multiplex RNA-based Expression Assay Using Breast Cancer Archival Material
Published on: August 1, 2018
High Mutation Burden in ER-Positive/HER2-Negative/Luminal Breast Cancers
1Algoma District Cancer Program, Sault Area Hospital, Sault Ste. Marie, ON P6B 0A8, Canada.
Background:
Tumor mutation burden (TMB) is arising as a useful marker of checkpoint inhibitors' effectiveness in cancer patients in general and has been proposed as predictive in breast cancers. Despite the initial success of checkpoint inhibitors in triple-negative breast cancer, ER-positive breast cancers are less amenable to immunotherapy treatments due to the lower immunogenicity of this subset, associated with lower TMB and less pronounced inflammatory cell infiltration. However, a minority of ER-positive breast cancers do have a higher TMB and could be targets of immune checkpoint inhibitors.
Methods:
This investigation uses publicly available genomic data to examine ER-positive/HER2-negative or luminal breast cancers with high mutation numbers and compare them with cancers of the same subtype and low mutation numbers. Clinical characteristics and molecular correlates according to mutation numbers are described.
Results:
ER-positive/HER2-negative and luminal breast cancers with high mutation numbers have a higher prevalence of PIK3CA mutations and in some of the series examined mutations in TP53 and CDH1. A significant proportion of cancers with high mutation numbers carry mutations in microsatellite instability genes and genes involved in DNA damage response. Despite these differences, the prognosis of ER-positive/HER2-negative and luminal breast cancers with high mutation numbers is not significantly different compared to counterparts with lower mutation counts.
Conclusions:
These data may inform the potential suitability of these cancers for immunotherapy and could guide the development of rational combination therapies based on immune checkpoint inhibitors with other targeted drugs.
Insights
High tumor mutation burden (TMB) in ER-positive breast cancers may indicate suitability for immunotherapy. Further research can guide combination therapies for these specific breast cancer subtypes.
Area of Science:
- Genomics
- Oncology
- Immunotherapy
Background:
- Tumor mutation burden (TMB) is a predictive marker for checkpoint inhibitor effectiveness.
- ER-positive breast cancers generally have lower TMB and immunogenicity, limiting immunotherapy response.
- A subset of ER-positive breast cancers exhibits high TMB, suggesting potential immunotherapy targets.
Purpose of the Study:
- To investigate ER-positive/HER2-negative or luminal breast cancers with high mutation numbers.
- To compare clinical and molecular characteristics of high TMB versus low TMB breast cancers within this subtype.
Main Methods:
- Analysis of publicly available genomic data.
- Comparison of ER-positive/HER2-negative or luminal breast cancers based on mutation counts.
Main Results:
- High TMB ER-positive breast cancers show increased prevalence of *PIK3CA*, *TP53*, and *CDH1* mutations.
- A notable proportion of high TMB cancers have mutations in microsatellite instability and DNA damage response genes.
- Prognosis remains similar between high and low TMB ER-positive breast cancers.
Conclusions:
- Findings may inform immunotherapy suitability for a subset of ER-positive breast cancers.
- Data could guide development of combination therapies involving immune checkpoint inhibitors and targeted drugs.
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