Latency-associated peptide identifies therapeutically resistant muscle-invasive bladder cancer with poor prognosis

Background Latency-associated peptide (LAP) was identified as crucial immune regulator in tumor microenvironment (TME) in recent researches. In this study, we aimed to estimate the predictive value of LAP expression for clinical survival and therapeutic response in muscle-invasive bladder cancer (MI...

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Veröffentlicht in:Cancer Immunology, Immunotherapy Immunotherapy, 2022-02, Vol.71 (2), p.301-310
Hauptverfasser: Ye, Ruiting, Zeng, Han, Liu, Zhaopei, Jin, Kaifeng, Liu, Chunnan, Yan, Sen, Yu, Yanze, You, Runze, Zhang, Hongyi, Chang, Yuan, Wang, Yiwei, Liu, Li, Zhu, Yu, Xu, Jiejie, Xu, Le, Wang, Zewei
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Sprache:eng
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Zusammenfassung:Background Latency-associated peptide (LAP) was identified as crucial immune regulator in tumor microenvironment (TME) in recent researches. In this study, we aimed to estimate the predictive value of LAP expression for clinical survival and therapeutic response in muscle-invasive bladder cancer (MIBC). Methods Our study encompassed 140 MIBC patients from Zhongshan Hospital (ZSHS cohort), 401 patients from The Cancer Genome Atlas (TCGA cohort) and 195 patients received PDL1 blockade from IMvigor210 trial. Survival analyses were conducted through Kaplan–Meier curve and Cox regression model. LAP expression and its association with immune contexture were evaluated in ZSHS and TCGA cohort. Results We found that high intratumoral LAP + cells infiltration anticipated inferior survival and adjuvant chemotherapy (ACT) response, and was closely related to an immunoevasive contexture with increased M2 macrophages, neutrophils and conspicuously a cluster of highly exhausted CD8 + T cells. The combinational analysis of LAP + cells and CD8 + T cells infiltration stratified patients into distinct risk groups with implications for therapeutic sensitivity to PDL1 blockade and refinement of molecular classification in MIBC. Conclusions LAP expression was correlated with patients’ inferior prognosis, ACT-tolerance and an immunoevasive TME with exhausted CD8 + T cell infiltration, suggesting that LAP could serve as a promising therapeutic target in MIBC. Simultaneously, our novel TME classification based on LAP + cells and CD8 + T cells infiltration and its potential in appraising PDL1 blockade application for MIBC patients deserved further validation.
ISSN:0340-7004
1432-0851
DOI:10.1007/s00262-021-02987-4