Tumour budding, poorly differentiated clusters, and T-cell response in colorectal cancer
EBIOMEDICINE
Authors: Fujiyoshi, Kenji; Vayrynen, Juha P.; Borowsky, Jennifer; Papke, David J., Jr.; Arima, Kota; Haruki, Koichiro; Kishikawa, Junko; Akimoto, Naohiko; Ugai, Tomotaka; Lau, Mai Chan; Gu, Simeng; Shi, Shanshan; Zhao, Melissa; Da Silva, Annacarolina Fabiana Lucia; Twombly, Tyler S.; Nan, Hongmei; Meyerhardt, Jeffrey A.; Song, Mingyang; Zhang, Xuehong; Wu, Kana; Chan, Andrew T.; Fuchs, Charles S.; Lennerz, Jochen K.; Giannakis, Marios; Nowak, Jonathan A.; Ogino, Shuji
Abstract
Background: Tumour budding and poorly differentiated clusters (PDC) represent forms of tumour invasion. We hypothesised that T-cell densities (reflecting adaptive anti-tumour immunity) might be inversely associated with tumour budding and PDC in colorectal carcinoma. Methods: Utilising 915 colon and rectal carcinomas in two U.S.-wide prospective cohort studies, and multiplex immunofluorescence combined with machine learning algorithms, we assessed CD3, CD4, CDS, CD45RO (PTPRC), and FOXP3 co-expression patterns in lymphocytes. Tumour budding and PDC at invasive fronts were quantified by digital pathology and image analysis using the International tumour Budding Consensus Conference criteria. Using covariate data of 4,420 incident colorectal cancer cases, inverse probability weighting (IPW) was integrated with multivariable logistic regression analysis that assessed the association of T-cell subset densities with tumour budding and PDC while adjusting for selection bias due to tissue availability and potential confounders, including microsatellite instability status. Findings: Tumour budding counts were inversely associated with density of CD3(+)CD8(+) [lowest vs. highest: multivariable odds ratio (OR), 0.50; 95% confidence interval (CI), 0.35-0.70; P-trend < 0.001] and CD3(+)CD8(+)CD45R0(+) cells (lowest vs. highest: multivariable OR, 0.44; 95% CI, 0.31-0.63; P-trend < 0.001) in tumour epithelial region. Tumour budding levels were associated with higher colorectal cancer-specific mortality (multivariable hazard ratio, 2.13; 95% CI, 1.57-2.89; P-trend < 0.001) in Cox regression analysis. There were no significant associations of PDC with T-cell subsets. Interpretation: Tumour epithelial na ve and memory cytotoxic T cell densities are inversely associated with tumour budding at invasive fronts, suggesting that cytotoxic anti-tumour immunity suppresses tumour microinvasion.
Breast ductal Carcinoma in situ associated with microinvasion induces immunological response and predicts ipsilateral invasive recurrence
VIRCHOWS ARCHIV
Authors: Chen, Xiao-Yang; Thike, Aye Aye; Koh, Valerie Cui Yun; Nasir, Nur Diyana M. D.; Bay, Boon Huat; Tan, Puay Hoon
Abstract
Although microinvasion (Mi) is often thought to be an interim stage between ductal carcinoma in situ (DCIS) and established invasive ductal carcinoma, survival outcomes and biological behaviour of DCIS-Mi are still poorly understood. This study investigated the potential influence of Mi on disease-free survival (DFS) and assessed its correlations with clinicopathological parameters, prognosis, molecular, and immune markers. CD4, CD8, forkhead box P3 (FOXP3), CD68, CD163, programmed cell death protein 1 (PD-1), and its ligand (PD-L1) expression in pure DCIS and DCIS-Mi, from a cohort of 198 patients, were determined by immunohistochemistry. DFS, clinicopathological parameters, immune markers, and biomarker expression were correlated with presence of Mi. Twelve out of 198 DCIS cases were associated with Mi. DCIS-Mi was significantly linked with ipsilateral invasive recurrence (p = 0.032). Kaplan-Meier analysis revealed that DCIS-Mi had worse DFS for ipsilateral invasive recurrence (p = 0.011) and this was affirmed by multivariate Cox regression analysis (95% CI 1.181-9.010, HR = 3.262, p = 0.023). DCIS-Mi was associated with higher densities of immune infiltrates positive for CD4 (p = 0.037), FOXP3 (p = 0.037), CD163 (p = 0.01), and PD-L1 (p = 0.015). This study demonstrated that DCIS-Mi was correlated with high densities of immune infiltrates and predicted ipsilateral invasive recurrence.