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Torres-Cano, A.

Publications and source records attributed to Torres-Cano, A..

2 recordsLinked to original sources

Spatially organized cellular communities shape functional tissue architecture in the pancreas

Organ function depends on the precise spatial organization of cells across multiple scales, from individual cells to cellular communities that form specialized local niches and, ultimately, complex higher-order structures. While the identities of individual cell are increasingly well-defined, our understanding of how these diverse cell types are spatially distributed and communicate remains incomplete. In this study, we combine single-cell and spatial transcriptomic analyses to map pancreatic cell populations across space and time, from embryonic development to adult homeostasis in mice. Using these comprehensive maps, we systematically resolve spatial heterogeneity among pancreatic cell types and uncover basic tissue niches, which emerge as epithelial-mesenchymal units. We further characterize these niches functionally in both mouse and human models. We demonstrate that the mesenchymal lineage initially diversifies into various subtypes with specialized supportive roles during embryonic development. However, this complexity gradually diminishes over time, ultimately converging into a limited number of fibroblast sub-types in adult tissue. Our findings shed light on how different progenitor lineages co-develop and organize into structured communities that establish a mature, functional pancreas. This foundational framework could inform strategies for in vitro organogenesis and tissue-engineering in the context of pancreatic diseases.

developmental biology↗

ΔNP63 defines an exocrine-committed multipotent progenitor subset in the murine pancreas

Cellular plasticity underpins heterogeneity in embryogenic progenitor cells and cancer cells. The transcription factor deltaNp63 ({Delta}Np63) has been implicated in regulating cellular plasticity in several epithelial tissues. Despite a recently established role in steering plasticity of pancreatic cancer, {Delta}Np63 remains unstudied in pancreatic development. Using murine single-cell sequencing data and RNA and protein in situ stainings, we assessed the spatio-temporal expression of Trp63 and {Delta}NP63 in the embryonic pancreas. {Delta}NP63 demonstrates a transient and spatially restricted expression in the multipotent pancreatic progenitor (MPP) compartment delineating pro-exocrine progenitor cells. Lineage tracing of TP63+ cells marks a subset of MPPs and descendant exocrine acinar and centro-acinar/terminal duct cells. Lack of {Delta}NP63 in knock-out mice leads to hypotrophic exocrine acini with reduced levels of differentiation markers. In summary, {Delta}Np63 confers heterogeneity within the MPP compartment, supporting exocrine cell development. These new insights in developmental plasticity have potential implications for pancreatic regeneration and cancer.

developmental biology↗