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November 1, 2025Cell10 citationsOpen Access

Bridging single cells to organs: Mesoscale modules as fundamental units of tissue function

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YCYun ChenRGRonald N. GermainGHGinger Hunter

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Abstract

Recent studies at molecular and genomic scales have enriched our understanding of life's most fundamental building block: the cell. However, bridging the gap between single-cell phenotypes and the emergent functions of tissues and organs remains a formidable challenge. Here, we suggest that the conceptual span from cells to tissues and organs is so large as to warrant intermediate stepping stones. Drawing inspiration from "network motifs"-discrete units of cell-level function that emerge from the interactions of a handful of genes or enzymes-we argue that similarly identifiable units of tissue-level function, which we term "mesoscale modules," emerge from coordinated "interactions" among relatively small numbers of cells and their extracellular milieu. We outline several such modules and propose that a concerted effort to study them will deepen our foundational understanding of tissue and organ functions. By developing these mesoscale insights, we anticipate a more tractable and mechanistic approach to complex human conditions rooted in tissue- and organ-scale dysregulation, including developmental defects, cancer, cardiovascular disease, immune-related disorders, infectious disease, and aging.

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Cite This Study

Chen et al. (2025) studied this question.

synapsesocial.com/papers/69ff73ac581c6e761e776f7ehttps://doi.org/10.1016/j.cell.2025.10.012
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