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Single-cell organogenesis captures complex breast tissue formation in three dimensions

2025/08/06 by Gat Rauner, Nicole Traugh, Colin J. Trepicchio +3 · 1 voice
Medicine · Engineering · #Cancer Cells and Metastasis #3D Printing in Biomedical Research

paper · doi:10.1242/dev.204813

openalex publication_date 2025/08/06 · openalex created_date 2025/08/07 · openalex updated_date 2026/07/28

Abstract

Current breast organoid models, primarily based on self-assembly, face limitations in accurately mimicking the complex stages of tissue development, notably in replicating detailed tissue architectures and cellular diversity. Here, we demonstrate that a solitary human breast stem cell can, within a controlled hydrogel extracellular matrix environment, autonomously generate niche signals that drive directed organogenesis, producing organoids with mesenchymal and parenchymal components. This system surpasses traditional models by forming complex, heterogeneous ductal-lobular structures akin to those in native human breast tissue with the emergence of mesenchyme-like stroma. Using long-term, high-resolution live imaging, we quantitatively analyze the dynamic tissue development and morphogenesis, capturing cellular behaviors crucial for understanding both development and disease. The inclusion of patient-derived cells from diverse biological backgrounds, including pre- and post-menopausal donors, significantly enhances the applicability of the model. Our findings underscore that this controlled organogenesis approach represents a major leap over existing methods, offering a robust platform for probing the intricacies of human breast tissue development and its responses to environmental cues.

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