| Literature DB >> 26979828 |
Sylvain Ladoire1,2,3, David Enot4, Laura Senovilla5,6,7,8, François Ghiringhelli1,2, Vichnou Poirier-Colame3, Kariman Chaba5,6,7, Michaela Semeraro3,8,9, Marie Chaix1,2, Frédérique Penault-Llorca10,11, Laurent Arnould12, Marie Laure Poillot13, Patrick Arveux13, Suzette Delaloge14,15, Fabrice Andre14,15, Laurence Zitvogel3,8,9, Guido Kroemer4,5,6,7,16,17.
Abstract
Several cell-intrinsic alterations have poor prognostic features in human breast cancer, as exemplified by the absence of MAP1LC3B/LC3B (microtubule-associated protein 1 light chain 3 β)-positive puncta in the cytoplasm (which indicates reduced autophagic flux) or the loss of nuclear HMGB1 expression by malignant cells. It is well established that breast cancer is under strong immunosurveillance, as reflected by the fact that scarce infiltration of the malignant lesion by CD8(+) cytotoxic T lymphocytes or comparatively dense infiltration by immunosuppressive cell types (such as FOXP3(+) regulatory T cells or CD68(+) tumor-associated macrophages), resulting in low CD8(+):FOXP3(+) or CD8(+):CD68(+) ratios, has a negative prognostic impact. Here, we reveal the surprising finding that cell-intrinsic features may influence the composition of the immune infiltrate in human breast cancer. Thus, the absence of LC3B puncta is correlated with intratumoral (but not peritumoral) infiltration by fewer CD8(+) cells and more FOXP3(+) or CD68(+) cells, resulting in a major drop in the CD8(+):FOXP3(+) or CD8(+):CD68(+) ratios. Moreover, absence of HMGB1 expression in nuclei correlated with a general drop in all immune effectors, in particular FOXP3(+) and CD68(+) cells, both within the tumor and close to it. Combined analysis of LC3B puncta and HMGB1 expression allowed for improved stratification of patients with respect to the characteristics of their immune infiltrate as well as overall and metastasis-free survival. It can be speculated that blocked autophagy in, or HMGB1 loss from, cancer cells may favor tumor progression due to their negative impact on anticancer immunosurveillance.Entities:
Keywords: CD8; HMGB1; LC3; Treg cells; autophagy; breast cancer; histology; lymphocytes; macrophages; pathology; prognostic
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Year: 2016 PMID: 26979828 PMCID: PMC4854557 DOI: 10.1080/15548627.2016.1154244
Source DB: PubMed Journal: Autophagy ISSN: 1554-8627 Impact factor: 16.016