TY - JOUR
T1 - A 3D system to model human pancreas development and its reference single-cell transcriptome atlas identify signaling pathways required for progenitor expansion
AU - Gonçalves, Carla A
AU - Larsen, Michael
AU - Jung, Sascha
AU - Stratmann, Johannes
AU - Nakamura, Akiko
AU - Leuschner, Marit
AU - Hersemann, Lena
AU - Keshara, Rashmiparvathi
AU - Perlman, Signe
AU - Lundvall, Lene
AU - Thuesen, Lea Langhoff
AU - Hare, Kristine Juul
AU - Amit, Ido
AU - Jørgensen, Anne
AU - Kim, Yung Hae
AU - Del Sol, Antonio
AU - Grapin-Botton, Anne
N1 - Publisher Copyright:
© 2021, The Author(s).
Copyright:
Copyright 2021 Elsevier B.V., All rights reserved.
PY - 2021/5/25
Y1 - 2021/5/25
N2 - Human organogenesis remains relatively unexplored for ethical and practical reasons. Here, we report the establishment of a single-cell transcriptome atlas of the human fetal pancreas between 7 and 10 post-conceptional weeks of development. To interrogate cell-cell interactions, we describe InterCom, an R-Package we developed for identifying receptor-ligand pairs and their downstream effects. We further report the establishment of a human pancreas culture system starting from fetal tissue or human pluripotent stem cells, enabling the long-term maintenance of pancreas progenitors in a minimal, defined medium in three-dimensions. Benchmarking the cells produced in 2-dimensions and those expanded in 3-dimensions to fetal tissue identifies that progenitors expanded in 3-dimensions are transcriptionally closer to the fetal pancreas. We further demonstrate the potential of this system as a screening platform and identify the importance of the EGF and FGF pathways controlling human pancreas progenitor expansion.
AB - Human organogenesis remains relatively unexplored for ethical and practical reasons. Here, we report the establishment of a single-cell transcriptome atlas of the human fetal pancreas between 7 and 10 post-conceptional weeks of development. To interrogate cell-cell interactions, we describe InterCom, an R-Package we developed for identifying receptor-ligand pairs and their downstream effects. We further report the establishment of a human pancreas culture system starting from fetal tissue or human pluripotent stem cells, enabling the long-term maintenance of pancreas progenitors in a minimal, defined medium in three-dimensions. Benchmarking the cells produced in 2-dimensions and those expanded in 3-dimensions to fetal tissue identifies that progenitors expanded in 3-dimensions are transcriptionally closer to the fetal pancreas. We further demonstrate the potential of this system as a screening platform and identify the importance of the EGF and FGF pathways controlling human pancreas progenitor expansion.
UR - http://www.scopus.com/inward/record.url?scp=85106952590&partnerID=8YFLogxK
U2 - 10.1038/s41467-021-23295-6
DO - 10.1038/s41467-021-23295-6
M3 - Journal article
C2 - 34035279
VL - 12
SP - 1
EP - 17
JO - Nature Communications
JF - Nature Communications
SN - 2041-1722
IS - 1
M1 - 3144
ER -