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A single-cell multi-omic atlas of the human pancreas reveals potential for cellular plasticity across development, health, and disease

Articolo
Data di Pubblicazione:
2026
Citazione:
A single-cell multi-omic atlas of the human pancreas reveals potential for cellular plasticity across development, health, and disease / Mereu, E., Balboa, D., Liebig, J., Gonzalez-Herrero, A., Casals, A.M., Mardamshina, M., Mollandin, F., Schicktanz, F., Sudy, A., Tosti, L., Van Agen, M., Vandenbempt, V., Avrahami, D., Navarro, F.B., Bernardo, E., Björklund, F., Chua, R.L., Engelse, M., García-Hurtado, J., Groen, N., et al.. - In: CELL METABOLISM. - ISSN 1550-4131. - 38:9(2026), pp. 1896-1915.e12. [10.1016/j.cmet.2026.07.023]
Abstract:
: The pancreas plays a central role in major human diseases, yet our understanding of its cellular diversity and plasticity remains incomplete. Here, we present a single-cell multiomics atlas of the human pancreas, profiling over four million cells and nuclei from 57 donors across fetal development, adult homeostasis, and type 2 diabetes (T2D). Integrating single-cell RNA sequencing (scRNA-seq)/single-nucleus RNA sequencing (snRNA-seq), snATAC-seq, VASA-seq, spatial transcriptomics (Xenium), and multiplexed proteomics (CODEX), we resolve gene expression, chromatin accessibility, and spatial organization at high resolution. We identify transcriptionally plastic centroacinar-like cells (pCACs) in adults with fetal-like features, delineate endocrine and exocrine lineage trajectories during development, and define HNF1A-defined beta cell epigenetic states. In T2D, we observe shifts in beta cell subtypes and altered regulatory programs. Glucose perturbation of healthy islets reveals cell-type-specific adaptation and stress responses. This atlas provides a foundational framework to understand pancreas biology and the role of cellular plasticity in regeneration and disease.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
HNF1A regulatory states; centroacinar-like cells; developmental trajectories; human pancreas; ionocyte-like ductal cells; pancreatic plasticity; single-cell multiomics; spatial omics; type 2 diabetes; β cell heterogeneity
Elenco autori:
Mereu, E.; Balboa, D.; Liebig, J.; Gonzalez-Herrero, A.; Casals, A. M.; Mardamshina, M.; Mollandin, F.; Schicktanz, F.; Sudy, A.; Tosti, L.; Van Agen, M.; Vandenbempt, V.; Avrahami, D.; Navarro, F. B.; Bernardo, E.; Björklund, F.; Chua, R. L.; Engelse, M.; García-Hurtado, J.; Groen, N.; Hanegraaf, M.; Iañez, P.; Jechow, K.; Konukiewitz, B.; Lawerenz, C.; Lewandowski-Hoppe, N.; Marchese, D.; Muraro, M. J.; Pellegrini, S.; Sordi, V.; Taron, U.; Ten, F. W.; Trefzer, T.; Twardziok, S.; Wirth, J.; Carlotti, F.; De Koning, E.; Ferrer, J.; Glaser, B.; Heyn, H.; Lundberg, E.; Piemonti, L.; Steiger, K.; Van Oudenaarden, A.; Weichert, W.; Conrad, C.; Eils, R.
Autori di Ateneo:
BERNARDO MARIA ESTER
PIEMONTI LORENZO
Link alla scheda completa:
https://iris.unisr.it/handle/20.500.11768/206917
Pubblicato in:
CELL METABOLISM
Journal
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