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SCISSOR™: a single-cell inferred site-specific omics resource for tumor microenvironment association study.

Xiang CuiJianling BaiXuanxuan YuFeifei XiaoGuoshuai Cai
Published in: NAR cancer (2021)
Tumor tissues are heterogeneous with different cell types in tumor microenvironment, which play an important role in tumorigenesis and tumor progression. Several computational algorithms and tools have been developed to infer the cell composition from bulk transcriptome profiles. However, they ignore the tissue specificity and thus a new resource for tissue-specific cell transcriptomic reference is needed for inferring cell composition in tumor microenvironment and exploring their association with clinical outcomes and tumor omics. In this study, we developed SCISSOR™ (https://thecailab.com/scissor/), an online open resource to fulfill that demand by integrating five orthogonal omics data of >6031 large-scale bulk samples, patient clinical outcomes and 451 917 high-granularity tissue-specific single-cell transcriptomic profiles of 16 cancer types. SCISSOR™ provides five major analysis modules that enable flexible modeling with adjustable parameters and dynamic visualization approaches. SCISSOR™ is valuable as a new resource for promoting tumor heterogeneity and tumor-tumor microenvironment cell interaction research, by delineating cells in the tissue-specific tumor microenvironment and characterizing their associations with tumor omics and clinical outcomes.
Keyphrases
  • single cell
  • rna seq
  • high throughput
  • cell therapy
  • gene expression
  • stem cells
  • squamous cell carcinoma
  • induced apoptosis
  • minimally invasive
  • oxidative stress
  • dna methylation
  • cell cycle arrest
  • lymph node metastasis