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Identification and characterization of cell niches in tissue from spatial omics data at single-cell resolution

Author

Listed:
  • Jingyang Qian

    (Zhejiang University
    Zhejiang University)

  • Xin Shao

    (Zhejiang University
    Zhejiang University
    Zhejiang University)

  • Hudong Bao

    (Zhejiang University)

  • Yin Fang

    (Zhejiang University)

  • Wenbo Guo

    (Zhejiang University
    Zhejiang University
    Zhejiang University)

  • Chengyu Li

    (Zhejiang University
    Zhejiang University)

  • Anyao Li

    (Zhejiang University
    Zhejiang University)

  • Hua Hua

    (SiChuan Institute for Translational Chinese Medicine)

  • Xiaohui Fan

    (Zhejiang University
    Zhejiang University
    Zhejiang University
    Women’s Hospital, Zhejiang University School of Medicine)

Abstract

Deciphering the features, structure, and functions of the cell niche in tissues remains a major challenge. Here, we present scNiche, a computational framework to identify and characterize cell niches from spatial omics data at single-cell resolution. We benchmark scNiche with both simulated and biological datasets, and demonstrate that scNiche can effectively and robustly identify cell niches while outperforming other existing methods. In spatial proteomics data from human triple-negative breast cancer, scNiche reveals the influence of the microenvironment on cellular phenotypes, and further dissects patient-specific niches with distinct cellular compositions or phenotypic characteristics. By analyzing mouse liver spatial transcriptomics data across normal and early-onset liver failure donors, scNiche uncovers disease-specific liver injury niches, and further delineates the niche remodeling from normal liver to liver failure. Overall, scNiche enables decoding the cellular microenvironment in tissues from single-cell spatial omics data.

Suggested Citation

  • Jingyang Qian & Xin Shao & Hudong Bao & Yin Fang & Wenbo Guo & Chengyu Li & Anyao Li & Hua Hua & Xiaohui Fan, 2025. "Identification and characterization of cell niches in tissue from spatial omics data at single-cell resolution," Nature Communications, Nature, vol. 16(1), pages 1-21, December.
  • Handle: RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-025-57029-9
    DOI: 10.1038/s41467-025-57029-9
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