Related Experiment Video
Updated: Jun 28, 2025

Modeling Brain Metastasis Via Tail-Vein Injection of Inflammatory Breast Cancer Cells
Published on: February 4, 2021
B7-H3 Expression in Breast Cancer and Brain Metastasis
Vaibhavi Joshi1, Kate Beecher1, Malcolm Lim1
1UQ Centre for Clinical Research, Faculty of Medicine, The University of Queensland, Brisbane 4029, Australia.
Abstract:
Brain metastasis is a significant challenge for some breast cancer patients, marked by its aggressive nature, limited treatment options, and poor clinical outcomes. Immunotherapies have emerged as a promising avenue for brain metastasis treatment. B7-H3 (CD276) is an immune checkpoint molecule involved in T cell suppression, which is associated with poor survival in cancer patients. Given the increasing number of clinical trials using B7-H3 targeting CAR T cell therapies, we examined B7-H3 expression across breast cancer subtypes and in breast cancer brain metastases to assess its potential as an interventional target. B7-H3 expression was investigated using immunohistochemistry on tissue microarrays of three clinical cohorts: (i) unselected primary breast cancers (n = 347); (ii) brain metastatic breast cancers (n = 61) and breast cancer brain metastases (n = 80, including a subset of 53 patient-matched breast and brain metastasis cases); and (iii) mixed brain metastases from a range of primary tumours (n = 137). In primary breast cancers, B7-H3 expression significantly correlated with higher tumour grades and aggressive breast cancer subtypes, as well as poorer 5-year survival outcomes. Subcellular localisation of B7-H3 impacted breast cancer-specific survival, with cytoplasmic staining also correlating with a poorer outcome. Its expression was frequently detected in brain metastases from breast cancers, with up to 90% expressing B7-H3. However, not all brain metastases showed high levels of expression, with those from colorectal and renal tumours showing a low frequency of B7-H3 expression (0/14 and 2/16, respectively). The prevalence of B7-H3 expression in breast cancers and breast cancer brain metastases indicates potential opportunities for B7-H3 targeted therapies in breast cancer management.
Insights
B7-H3 expression is common in breast cancers and brain metastases, suggesting it is a promising target for immunotherapies. This immune checkpoint molecule correlates with aggressive disease and poor survival, highlighting its therapeutic potential.
Area of Science:
- Oncology
- Immunology
- Cancer Biology
Background:
- Brain metastasis presents a significant clinical challenge in breast cancer management.
- Immunotherapies offer a promising treatment strategy for brain metastases.
- B7-H3 (CD276) is an immune checkpoint molecule linked to poor patient survival.
Purpose of the Study:
- To investigate B7-H3 expression in primary breast cancers and brain metastases.
- To assess B7-H3 as a potential therapeutic target for breast cancer brain metastasis.
Main Methods:
- Immunohistochemistry was used to analyze B7-H3 expression.
- Tissue microarrays from three clinical cohorts were examined: primary breast cancers, breast cancer brain metastases, and mixed brain metastases.
- Expression levels and subcellular localization of B7-H3 were correlated with clinical outcomes.
Main Results:
- B7-H3 expression was significantly associated with higher tumor grades, aggressive breast cancer subtypes, and poorer 5-year survival.
- Cytoplasmic B7-H3 staining correlated with worse breast cancer-specific survival.
- B7-H3 was frequently detected in breast cancer brain metastases (up to 90%), but less so in metastases from colorectal and renal tumors.
Conclusions:
- The high prevalence of B7-H3 in breast cancers and their brain metastases supports its potential as an interventional target.
- B7-H3-targeted therapies, such as CAR T cell therapies, may offer new treatment opportunities for patients with breast cancer brain metastasis.

