A Hormone Cell Atlas maps the human endocrine system at cellular resolution

Атлас гормональных клеток отображает эндокринную систему человека с клеточным разрешением
Krzysztof Polański, Alexander V. Predeus, Lijiang Fei, Ken To, J. Patrick Pett, Amanda J. Oliver, Isabel Huang‐Doran, Batuhan Çakır, Katherine Lawler, Yizhou Yu, Kevin M. Méndez-Acevedo, Dinesh Shah, Jaume Margalef-Rieres, Joseph S. Pohlman, Madelyn R. Moy, Robert Legg, Chuan Xu, Duy Pham, Ruth Hanßen, Tessa M. Cacciottolo, Rakesh K. Kapuge, Sarah A. Teichmann, I. Sadaf Farooqi
2026-05-28

Hormone Cell Atlascross-tissue endocrine signatureshormone and receptor geneshormone2cellsingle-cell transcriptomics
Hormones act across tissues and organs to coordinate physiological functions. Drawing inspiration from the Human Cell Atlas, we analyzed the expression of 379 hormone and receptor genes in a transcriptomic dataset comprising 14 million single cells and nuclei across 47 human tissues. Using hormone2cell, we mapped putative hormone-producing and hormone-receiving cell types, defining tissue-specific and cross-tissue endocrine signatures. We predicted nonclassical sites of hormone expression, including secretin in plasmacytoid dendritic cells, inferred convergent hormone action and endocrine feedback loops, and implicated cell populations in monogenic endocrine disorders. In a cross-tissue integration of adipocyte datasets, we uncovered dynamic endocrine programs across depots, within adipocyte subtypes and through adipogenic differentiation. Cumulatively, the Hormone Cell Atlas (hormonecellatlas.org.uk) provides a comprehensive framework for dissecting hormonal impact on health and disease.
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Analyzed expression of 379 hormone and receptor genes across 14 million single cells and nuclei from 47 human tissues.
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Cross-tissue integration of adipocyte datasets revealed dynamic endocrine programs across depots, within adipocyte subtypes, and during adipogenic differentiation.
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Developed hormone2cell to map putative hormone-producing and hormone-receiving cell types and define tissue-specific and cross-tissue endocrine signatures.
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Implicated specific cell populations in monogenic endocrine disorders based on hormone and receptor expression patterns.
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Inferred convergent hormone action and endocrine feedback loops across tissues from single-cell transcriptomes.
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Predicted nonclassical sites of hormone expression, including secretin expression in plasmacytoid dendritic cells.
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Released the Hormone Cell Atlas (hormonecellatlas.org.uk) as a resource to dissect hormonal impacts on health and disease.

Hormone Cell Atlas mapping of hormone-producing and hormone-receiving cell types across 47 human tissues using single-cell and single-nucleus transcriptomic data

Tissue-specific and cross-tissue endocrine signatures, locations of hormone expression, hormone–receptor cell interactions, convergent hormone actions and feedback loops, and dynamic endocrine programs across adipocyte depots and differentiation

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2026-05-28
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Krzysztof Polański
Alexander V. Predeus
Lijiang Fei
Ken To
J. Patrick Pett
Amanda J. Oliver
Isabel Huang‐Doran
Batuhan Çakır
Katherine Lawler
Yizhou Yu
Kevin M. Méndez-Acevedo
Dinesh Shah
Jaume Margalef-Rieres
Joseph S. Pohlman
Madelyn R. Moy
Robert Legg
Chuan Xu
Duy Pham
Ruth Hanßen
Tessa M. Cacciottolo
Rakesh K. Kapuge
Sarah A. Teichmann
I. Sadaf Farooqi
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