Multi-scale spatial mapping of cell populations across anatomical sites in healthy human skin and basal cell carcinoma
Ganier, C.; Mazin, P.; Herrera-Oropeza, G.; Du-Harpur, X.; Blakeley, M.; Gabriel, J.; Predeus, A.; Cakir, B.; Prete, M.; Harun, N.; Darrigrand, J.-F.; Haiser, A.; Wyles, S.; Shaw, T. J.; Teichmann, S. A.; Haniffa, M.; Watt, F. M.; Lynch, M. D.
Show abstract
Our understanding of how human skin cells differ according to anatomical site and tumour formation is limited. To address this we have created a multi-scale spatial atlas of healthy skin and basal cell carcinoma (BCC), incorporating in vivo optical coherence tomography, single cell RNA sequencing, spatial global transcriptional profiling and in situ sequencing. Computational spatial deconvolution and projection revealed the localisation of distinct cell populations to specific tissue contexts. Although cell populations were conserved between healthy anatomical sites and in BCC, mesenchymal cell populations including fibroblasts and pericytes retained signatures of developmental origin. Spatial profiling and in silico lineage tracing support a hair follicle origin for BCC and demonstrate that cancer-associated fibroblasts are an expansion of a POSTN+ subpopulation associated with hair follicles in healthy skin. RGS5+ pericytes are also expanded in BCC suggesting a role in vascular remodelling. We propose that the identity of mesenchymal cell populations is regulated by signals emanating from adjacent structures and that these signals are repurposed to promote the expansion of skin cancer stroma. The resource we have created is publicly available in an interactive format for the research community. Significance statementSingle cells RNA sequencing has revolutionised cell biology, enabling high resolution analysis of cell types and states within human tissues. Here, we report a comprehensive spatial atlas of adult human skin across different anatomical sites and basal cell carcinoma (BCC) - the most common form of skin cancer - encompassing in vivo optical coherence tomography, single cell RNA sequencing, global spatial transcriptomic profiling and in situ sequencing. In combination these modalities have allowed us to assemble a comprehensive nuclear-resolution atlas of cellular identity in health and disease.
Matching journals
The top 6 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Cancer associated fibroblast subtypes modulate the tumor-immune microenvironment and are associated with skin cancer malignancy 95%
- SOX2 empowers a rapid tumorigenic programme from the tumour resistant population in the skin 95%
- Early life regulatory T cells modulate PPAR-gamma dependent skin pigmentation 95%
Similar papers in this journal
Similar papers in this journal
- Xenogeneic Skin Transplantation Promotes Angiogenesis and Tissue Regeneration Through Vitamin D-Activated Trem2+ Macrophages 95%
- Developmental dynamics of the neural crest-mesenchymal axis in creating the thymic microenvironment 94%
- Convergent deployment of ancestral programs during the evolution of mammalian flight membranes 93%
Similar papers in this journal
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.