Macrophages heterogeneity and significance during human fetal pancreatic development
Migliorini, A.; Ge, S.; Atkins, M. H.; Sambathkumar, R.; Sing, A.; Chua, C.; Gehring, A. J.; Keller, G. M.; Notta, F.; Nostro, M. C.
Show abstract
Organogenesis is a complex process that relies on a dynamic interplay between extrinsic factors originating from the microenvironment and intrinsic factors specific to the tissue. For the endocrine cells of the islet of Langerhans, the local microenvironment consists of various cell types including pancreatic acinar and ductal cells as well as neuronal, immune, endothelial, and stromal cells. Interestingly, hematopoietic cells have been detected in human pancreas as early as 6 post-conception weeks (PCW)1,2, but whether they play a role during islet formation in humans remains largely unknown. To shed light on this question, we performed single nuclei RNA sequencing of the human fetal pancreas during the early weeks of the second trimester, specifically focusing on the molecular interaction between the hematopoietic niche and the pancreatic epithelium. Our analysis identified a wide range of hematopoietic cells as well as two distinct subsets of macrophages that are unique to the fetal pancreas and absent in neonatal or adult pancreatic tissues. Leveraging this discovery, we developed a co-culture system of hESC-derived endocrine-macrophage organoids to model their interaction in vitro. Remarkably, we found that macrophages promoted the differentiation and viability of developing endocrine cells in vitro and enhanced tissue engraftment in immunocompromised mice, supporting a role for these cells in future tissue engineering strategies for diabetes.
Matching journals
The top 7 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- CRISPR Screening Uncovers a Long-Range Enhancer for ONECUT1 in Pancreatic Differentiation and Links a Diabetes Risk Variant 96%
- An iPSC-derived small intestine-on-chip with self-organizing epithelial, mesenchymal and neural cells 95%
- Neonatal diabetes mutations disrupt a chromatin pioneering function that activates the human insulin gene 95%
Similar papers in this journal
- Synaptotagmin 13 orchestrates pancreatic endocrine cell egression and islet morphogenesis 96%
- Single-cell profiling of healthy human kidney reveals features of sex-based transcriptional programs and tissue-specific immunity 95%
- Immune perturbations in human pancreas lymphatic tissues prior to and after type 1 diabetes onset 95%
Similar papers in this journal
Similar papers in this journal
Similar papers in this journal
- Successful placentation in human pregnancy is regulated by reciprocal interactions between maternal uterine NK cells and fetal placental trophoblast 94%
- Engineering functional human gastrointestinal organoid tissues using the three primary germ layers separately derived from pluripotent stem cells 94%
- Post-Transplant Administration of G-CSF Impedes Engraftment of Gene Edited Human Hematopoietic Stem Cells by Exacerbating the p53-Mediated DNA Damage Response 93%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.