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Birkenkamp-Demtroder, K.

Publications and source records attributed to Birkenkamp-Demtroder, K..

2 recordsLinked to original sources

Comprehensive characterization of the T cell receptor repertoire in bladder cancer

T cells are one of the primary effector cells in the endogenous defense against cancer, yet the clinical impact of their quantity, diversity, and dynamics remains underexplored. Here we investigated the clinical relevance of the T cell receptor (TCR) repertoire in patients with bladder cancer. In advanced-stage bladder cancer, low pre-treatment peripheral TCR diversity was associated with worse overall survival (p=0.024), particularly when it coincided with a low fraction of circulating T cells (p=0.00049). The low-diversity TCR repertoires were dominated by expanded clones that persisted throughout treatment and disproportionately targeted latent viral infections. Longitudinal analysis revealed a reduction in TCR diversity after treatment indicating an adverse effect on the immune system. In early-stage bladder cancer, we showed that immunotherapy had a stimulatory effect on TCR diversity in patients with good outcomes. Single-cell sequencing identified most expanded clones as cytotoxic T cells, while non-expanded clones were predominantly naive T cells. Overall, our findings suggest that TCR diversity is a promising new biomarker that may offer new avenues for tailored oncological treatment to enhance clinical outcomes for bladder cancer patients.

cancer biology↗

Field cancerization impacts tumor development, T-cell exhaustion and clinical outcomes in bladder cancer

Bladder field cancerization may be associated with disease outcome in patients with bladder cancer. To investigate this, we analyzed biopsies from bladder urothelium and urine samples by genomics and proteomics analyses. Samples were procured from multiple timepoints from 134 patients with early stage bladder cancer and detailed long term follow-up. We measured the field cancerization in normal-appearing bladder biopsies and found that high levels were associated with high tumor mutational burden, high neoantigen load, and high tumor-associated CD8 T-cell exhaustion. Non-synonymous mutations in known bladder cancer driver genes such as KDM6A and TP53 were identified as early disease drivers in normal urothelium. High field cancerization was associated with worse outcome but not with response to BCG. The level of urinary tumor DNA (utDNA) reflected the bladder tumor burden and originated from both tumors and field cancerization. High utDNA levels after BCG were associated with worse clinical outcomes for the patients. Our results indicate that the level of field cancerization may affect clinical outcome, tumor development and immune responses. utDNA measurements have significant prognostic value and reflect the disease status of the bladder.

cancer biology↗