4.8 Article

Exploitation of tumor antigens and construction of immune subtype classifier for mRNA vaccine development in bladder cancer

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FRONTIERS IN IMMUNOLOGY
卷 13, 期 -, 页码 -

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FRONTIERS MEDIA SA
DOI: 10.3389/fimmu.2022.1014638

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mRNA vaccine; tumor antigen; bladder cancer; immune subtypes; tumor immune infiltration

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This study identified potential tumor antigens for mRNA vaccines in bladder cancer (BLCA) and defined three immune subtypes in BLCA. It also applied the immcluster package to predict suitable BLCA patients for antitumor therapy.
BackgroundBladder cancer (BLCA) is one of the most prevalent urinary system malignancies, with high mortality and recurrence. The present study aimed to identify potential tumor antigens for mRNA vaccines in BLCA and patient subtypes suitable for different immunotherapy. MethodsGene expression profiles, mutation data, methylation data, and corresponding clinical information were obtained from the Cancer Genome Atlas (TCGA), Gene Expression Omnibus (GEO), and ArrayExpress databases. Immunohistochemical staining of microarrays was performed to assess protein expression levels of IGF2BP2 and MMP9. Differential gene analysis, survival analysis, correlation analysis, consensus clustering analysis, and immune cell infiltration analysis were conducted using R software. Finally, the R package immcluster was used based on Combat and eXtreme Gradient Boosting algorithms to predict immune clusters of BLCA samples. ResultsTwo mutated, amplified, and over-expressed tumor antigens, IGF2BP2 and MMP9, were found to be associated with clinical outcomes and the abundance of antigen-presenting cells (APCs). Subsequently, three immune subtypes (BIS1, BIS2, and BIS3) were defined in the BLCA cohort. BIS3 subtype exhibited an active immune phenotype, while BIS1 and BIS2 subtypes have a suppressive immune phenotype. Patients in BIS1 and BIS2 had a poor prognosis compared to BIS3. BIS3 had a higher score in checkpoints or immunomodulators (CP) and immunophenoscore (IPS), while BIS1 and BIS2 scored higher in major histocompatibility complex-related molecules (MHC molecules). Meanwhile, BIS2 and BIS3 had a significantly higher tumor mutational burden (TMB) compared to patients with BIS1. Finally, the immcluster package was applied to the dataset, which has been shown to accurately predict the immune subtypes of BLCA samples in many cohorts. ConclusionsIGF2BP2 and MMP9 were potential antigens for developing mRNA vaccines against BLCA. The results in the present study suggested that immunotherapy targeting these two antigens would be suitable for patients falling under the BIS2 subtype. R package immcluster could assist in screening suitable BLCA patients for antitumor therapy.

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