Immune-Activated B Cells Are Dominant in Prostate Cancer.
Aws SaudiViqar BandayAmir Ali ZirakhzadehMartin SelingerJon ForsbergMartin HolmbomJohan HenrikssonMauritz WaldénFarhood AlamdariFiras AljaberyOla WinqvistAmir SherifPublished in: Cancers (2023)
B cells are multifaceted immune cells responding robustly during immune surveillance against tumor antigens by presentation to T cells and switched immunoglobulin production. However, B cells are unstudied in prostate cancer (PCa). We used flow cytometry to analyze B-cell subpopulations in peripheral blood and lymph nodes from intermediate-high risk PCa patients. B-cell subpopulations were related to clinicopathological factors. B-cell-receptor single-cell sequencing and VDJ analysis identified clonal B-cell expansion in blood and lymph nodes. Pathological staging was pT2 in 16%, pT3a in 48%, and pT3b in 36%. Lymph node metastases occurred in 5/25 patients (20%). Compared to healthy donors, the peripheral blood CD19 + B-cell compartment was significantly decreased in PCa patients and dominated by naïve B cells. The nodal B-cell compartment had significantly increased fractions of CD19 + B cells and switched memory B cells. Plasmablasts were observed in tumor-draining sentinel lymph nodes (SNs). VDJ analysis revealed clonal expansion in lymph nodes. Thus, activated B cells are increased in SNs from PCa patients. The increased fraction of switched memory cells and plasmablasts together with the presence of clonally expanded B cells indicate tumor-specific T-cell-dependent responses from B cells, supporting an important role for B cells in the protection against tumors.
Keyphrases
- lymph node
- prostate cancer
- end stage renal disease
- chronic kidney disease
- ejection fraction
- single cell
- peripheral blood
- peritoneal dialysis
- prognostic factors
- neoadjuvant chemotherapy
- squamous cell carcinoma
- sentinel lymph node
- oxidative stress
- radiation therapy
- radical prostatectomy
- patient reported outcomes
- cell death
- dendritic cells
- immune response
- high throughput