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Predictive Immune Modeling of Solid Tumors
Published on: February 25, 2020
Associations of HER2 Mutation With Immune-Related Features and Immunotherapy Outcomes in Solid Tumors
Deqiang Wang1, Xiaofeng Chen2, Yian Du3
1Department of Medical Oncology, Affiliated Hospital of Jiangsu University, Zhenjiang, China.
Background:
HER2 is one of the most extensively studied oncogenes in solid tumors. However, the association between tumor microenvironment (TME) and HER2 mutation remains elusive, and there are no specific therapies for HER2-mutated tumors. Immune checkpoint inhibitors (ICIs) have been approved for some tumor subgroups that lack targeted therapies, while their effects are still unclear in HER2-mutated tumors. We examined whether HER2 mutation impacts treatment outcomes of ICIs in solid tumors via its association with anticancer immunity.
Methods:
Multi-omics data of solid tumors from The Cancer Genome Atlas (TCGA), the Asian Cancer Research Group and the Affiliated Hospital of Jiangsu University were used to analyze the association between HER2 mutations and tumor features. Data of patients with multiple microsatellite-stable solid tumors, who were treated by ICIs including antibodies against programmed cell death-1 (PD-1), programmed cell death ligand-1 (PD-L1), or cytotoxic T lymphocyte-associated protein 4 (CTLA-4) in eight studies, were collected to investigate the effects of HER2 mutations on immunotherapy outcomes.
Results:
The mutation rate of HER2 varied in solid tumors of TCGA, with an overall incidence of 3.13%, ranged from 0.39% to 12.2%. Concurrent HER2 mutations and amplifications were rare (0.26%). HER2 mutation was not associated with HER2 protein expression but was positively associated with microsatellite instability, tumor mutation and neoantigen burdens, infiltrating antitumor immune cells, and signal activities of antitumor immunity. Of 321 ICI-treated patients, 18 carried HER2 mutations (5.6%) and showed improved objective response rates compared with those with HER2 wild-type (44.4% vs. 25.7%, p=0.081), especially in the anti-PD-1/anti-PD-L1 subgroup (62.5% vs. 28.4%, p=0.04). Heterogeneity was observed among tumor types. Patients with HER2 mutations also had superior overall survival than those with HER2 wild-type (HR=0.47, 95%CI: 0.23-0.97, p=0.04), especially in the presence of co-mutations in ABCA1 (HR = 0.23, 95% CI: 0.07-0.73, p=0.013), CELSR1 (HR = 0.24, 95% CI: 0.08-0.77, p=0.016), LRP2 (HR = 0.24, 95% CI: 0.07-0.74, p=0.014), or PKHD1L1 (HR = 0.2, 95% CI: 0.05-0.8, p=0.023).
Conclusions:
HER2 mutations may improve the TME to favor immunotherapy. A prospective basket trial is needed to further investigate the impacts of HER2 mutations on immunotherapy outcomes in solid tumors.
Insights
HER2 mutations enhance anticancer immunity and improve outcomes for patients treated with immune checkpoint inhibitors (ICIs) in solid tumors. Further trials are needed to confirm these findings.
Area of Science:
- Oncology
- Immunology
- Genomics
Background:
- HER2 is a key oncogene in solid tumors, but its mutation's impact on the tumor microenvironment (TME) and immunotherapy response is unclear.
- Existing therapies for HER2-mutated tumors are limited, and the efficacy of immune checkpoint inhibitors (ICIs) remains uncertain in this subgroup.
- This study investigates the association between HER2 mutations and anticancer immunity to predict ICI treatment outcomes.
Purpose of the Study:
- To analyze the association between HER2 mutations and tumor features using multi-omics data.
- To evaluate the impact of HER2 mutations on the efficacy of immune checkpoint inhibitors (ICIs) in solid tumors.
- To explore the relationship between HER2 mutations and the tumor immune microenvironment.
Main Methods:
- Utilized multi-omics data from TCGA and other cohorts to analyze HER2 mutation prevalence and tumor characteristics.
- Collected data from eight studies on patients with microsatellite-stable solid tumors treated with ICIs (anti-PD-1, anti-PD-L1, anti-CTLA-4).
- Assessed the association between HER2 mutations and objective response rates, overall survival, and tumor immune profiles.
Main Results:
- HER2 mutations (3.13% overall) were positively linked to microsatellite instability, higher tumor mutation burden, and increased antitumor immune cell infiltration.
- Patients with HER2 mutations showed improved objective response rates (44.4% vs. 25.7%) and overall survival (HR=0.47) with ICI therapy, particularly with anti-PD-1/anti-PD-L1 agents.
- Specific co-mutations (ABCA1, CELSR1, LRP2, PKHD1L1) further enhanced survival benefits in HER2-mutated patients.
Conclusions:
- HER2 mutations may enhance the tumor microenvironment, making solid tumors more responsive to immunotherapy.
- HER2 mutations represent a potential predictive biomarker for improved ICI treatment outcomes.
- Prospective basket trials are warranted to validate the impact of HER2 mutations on immunotherapy efficacy.
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