Resolving human α versus β cell fate allocation for the generation of stem cell-derived islets

M Melis Akgün Canan C Corinna Cozzitorto M Michael Sterr L Lama Saber E Eunike S. A. Setyono A Alessandro Dema K Kei Kozawa X Xianming Wang J Juliane Merl-Pham T Tobias Greisle I Ingo Burtscher H Heiko Lickert

Abstract

Abstract Stem cell-derived glucagon-(α) and insulin-producing (β) cells allow to engineer in vitro biomimetics of islet of Langerhans, the micro-organ controlling glycemia; however, a knowledge gap in the mechanism by which human stem cell-derived α and β cells are specified persists. Mouse studies postulated that Aristaless Related homeobox (Arx) and Paired box 4 (Pax4) transcription factors cross-inhibit each other in endocrine progenitors to promote α/β fate allocation, respectively. To test this model in human, we combine lineage labelling with single-cell multiomic analysis in our newly generated ARX CFP/CFP ; PAX4 mCherry/mCherry knock-in induced pluripotent stem cell reporter line. Lineage tracing, proteomic and gene regulatory network analysis and potency assays reveal a human specific regulation of α/β cell fate allocation. Pharmacological perturbations previously proposed to trigger α-to-β transdifferentiation or identified by our gene regulatory network lead to enhanced endocrine induction and directed α/β cell fate. Studying mechanisms of endocrinogenesis and fate segregation enables the engineering of islets in vitro, and has broader implications for cell-replacement therapy, disease modelling and drug screening.

Article Details

Volume / Issue Vol. 17, Issue 1
Published July 09, 2026
ISSN 2041-1723
Publisher Nature Portfolio

Journal Info

Nature Communications

Nature Portfolio

ISSN: 2041-1723 Open Access Life Sciences

Authors (12)

M

Melis Akgün Canan

C

Corinna Cozzitorto

M

Michael Sterr

L

Lama Saber

E

Eunike S. A. Setyono

A

Alessandro Dema

K

Kei Kozawa

X

Xianming Wang

J

Juliane Merl-Pham

T

Tobias Greisle

I

Ingo Burtscher

H

Heiko Lickert