Routine FFPE sections support clinically compatible single-nucleus transcriptomics across six human cancer types

Journal: bioRxiv
Published Date:

Abstract

Tumor cellular composition, including malignant cell states, immune populations, and stromal populations, is increasingly recognized as a determinant of therapeutic response and resistance to anti-cancer agents, yet comprehensive cellular profiling remains largely confined to research settings. Here, we present a clinically compatible sample-to-report workflow for tumor composition profiling from routine formalin-fixed paraffin-embedded (FFPE) clinical specimens. By combining low-input single-nucleus RNA sequencing with foundation model-based automated cell annotation, this workflow enables prospective sample-by-sample analysis without dedicated research material or cohort-based processing. Across 116 clinical specimens representing six cancer types, we generated reproducible measurements of cellular composition and cell-type-specific gene expression, demonstrated high technical reproducibility, and showed concordance with pathological assessment of immune infiltration. The workflow was similarly applicable to archival FFPE material and ultra-low-input biopsy specimens. Together, these findings establish a practical framework for routine single-cell profiling from standard pathology specimens and open the perspective of prospective evaluation of cellular composition as a clinical biomarker in precision oncology.

Authors

  • Wouters
  • J.; Bertorello
  • J.; Gaillard
  • M.; Simon
  • B.; Gastineau
  • S.; Roehrig
  • A.; Dupont-Roc
  • M.; Amblard
  • E.; Pupo
  • A.; Yu
  • H.; Blay
  • J.-Y.; Guerin
  • C.; Nebot Bral
  • L.; Vincent Salomon
  • A.; Verlingue
  • L.; Xylina
  • E.; Cabel
  • L.; Ross
  • J.; Miller
  • V.; Letouze
  • E.; Vallot
  • C.

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