In vivo generation of bone marrow from embryonic stem cells in interspecies chimeras

Author:

Wen Bingqiang1ORCID,Wang Guolun1,Li Enhong1,Kolesnichenko Olena A1,Tu Zhaowei2,Divanovic Senad34ORCID,Kalin Tanya V45,Kalinichenko Vladimir V1456ORCID

Affiliation:

1. Center for Lung Regenerative Medicine, Perinatal Institute, Cincinnati Children’s Hospital Medical Center

2. Division of Experimental Hematology and Cancer Biology, Cincinnati Children's Hospital Medical Center

3. Division of Immunobiology, Cincinnati Children's Hospital Medical Center

4. Department of Pediatrics, College of Medicine of the University of Cincinnati

5. Division of Pulmonary Biology, Cincinnati Children’s Hospital Medical Center

6. Division of Developmental Biology, Cincinnati Children’s Hospital Medical Center

Abstract

Generation of bone marrow (BM) from embryonic stem cells (ESCs) promises to accelerate the development of future cell therapies for life-threatening disorders. However, such approach is limited by technical challenges to produce a mixture of functional BM progenitor cells able to replace all hematopoietic cell lineages. Herein, we used blastocyst complementation to simultaneously produce BM cell lineages from mouse ESCs in a rat. Based on fluorescence-activated cell sorting analysis and single-cell RNA sequencing, mouse ESCs differentiated into multiple hematopoietic and stromal cell types that were indistinguishable from normal mouse BM cells based on gene expression signatures and cell surface markers. Receptor–ligand interactions identified Cxcl12-Cxcr4, Lama2-Itga6, App-Itga6, Comp-Cd47, Col1a1-Cd44, and App-Il18rap as major signaling pathways between hematopoietic progenitors and stromal cells. Multiple hematopoietic progenitors, including hematopoietic stem cells (HSCs) in mouse–rat chimeras derived more efficiently from mouse ESCs, whereas chondrocytes predominantly derived from rat cells. In the dorsal aorta and fetal liver of mouse–rat chimeras, mouse HSCs emerged and expanded faster compared to endogenous rat cells. Sequential BM transplantation of ESC-derived cells from mouse–rat chimeras rescued lethally irradiated syngeneic mice and demonstrated long-term reconstitution potential of donor HSCs. Altogether, a fully functional BM was generated from mouse ESCs using rat embryos as ‘bioreactors’.

Funder

National Heart, Lung, and Blood Institute

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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