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Integrative spatial and genomic analysis of tumor heterogeneity with Tumoroscope. | LitMetric

AI Article Synopsis

  • Tumoroscope is a new probabilistic model that accurately identifies cancer clones and their locations in tumors using pathological images, whole exome sequencing, and spatial transcriptomics data, achieving near single-cell resolution.
  • Unlike previous methods, Tumoroscope effectively resolves the proportions of different cancer clones within spatial transcriptomics spots.
  • The model has been applied to prostate and breast cancer datasets, revealing spatial patterns of clone distribution and allowing the analysis of clone-specific gene expression.

Article Abstract

Spatial and genomic heterogeneity of tumors are crucial factors influencing cancer progression, treatment, and survival. However, a technology for direct mapping the clones in the tumor tissue based on somatic point mutations is lacking. Here, we propose Tumoroscope, the first probabilistic model that accurately infers cancer clones and their localization in close to single-cell resolution by integrating pathological images, whole exome sequencing, and spatial transcriptomics data. In contrast to previous methods, Tumoroscope explicitly addresses the problem of deconvoluting the proportions of clones in spatial transcriptomics spots. Applied to a reference prostate cancer dataset and a newly generated breast cancer dataset, Tumoroscope reveals spatial patterns of clone colocalization and mutual exclusion in sub-areas of the tumor tissue. We further infer clone-specific gene expression levels and the most highly expressed genes for each clone. In summary, Tumoroscope enables an integrated study of the spatial, genomic, and phenotypic organization of tumors.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11522407PMC
http://dx.doi.org/10.1038/s41467-024-53374-3DOI Listing

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