4.8 Article

Spatial Organization and Molecular Correlation of Tumor-Infiltrating Lymphocytes Using Deep Learning on Pathology Images

期刊

CELL REPORTS
卷 23, 期 1, 页码 181-+

出版社

CELL PRESS
DOI: 10.1016/j.celrep.2018.03.086

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资金

  1. Cancer Research Institute
  2. National Cancer Institute (NCI) [U54 HG003273, U54 HG003067, U54 HG003079, U24 CA143799, U24 CA143835, U24 CA143840, U24 CA143843, U24 CA143845, U24 CA143848, U24 CA143858, U24 CA143866, U24 CA143867, U24 CA143882, U24 CA143883, U24 CA144025, P30 CA016672, U24CA180924, U24CA210950, U24CA215109]
  3. NCI [HHSN261201400007C]
  4. Leidos Biomedical [14X138]
  5. CCSG Bioinformatics Shared Resource [P30 CA01667]
  6. ITCR U24 Supplement [1U24CA199461-01]
  7. Agilent technologies
  8. CPRIT [RP150578]
  9. American Cancer Society [RSG-16-005-01]
  10. National Science Foundation XSEDEScience Gateways program [ACI-1548562, TG-ASC130023]
  11. National Science Foundation [1531492]

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Beyond sample curation and basic pathologic characterization, the digitized H&E-stained images of TCGA samples remain underutilized. To highlight this resource, we present mappings of tumor-infiltrating lymphocytes (TILs) based on H&E images from 13 TCGA tumor types. These TIL maps are derived through computational staining using a convolutional neural network trained to classify patches of images. Affinity propagation revealed local spatial structure in TIL patterns and correlation with overall survival. TIL map structural patterns were grouped using standard histopathological parameters. These patterns are enriched in particular T cell subpopulations derived from molecular measures. TIL densities and spatial structure were differentially enriched among tumor types, immune subtypes, and tumor molecular subtypes, implying that spatial infiltrate state could reflect particular tumor cell aberration states. Obtaining spatial lymphocytic patterns linked to the rich genomic characterization of TCGA samples demonstrates one use for the TCGA image archives with insights into the tumor-immune microenvironment.

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