ESATM · Embryonic stem cell origin of the adipose tissue macrophages
Horizon 2020 — Marie Skłodowska-Curie Actions
- Duration
- 2015-10-01 → 2017-09-30
- EU contribution
- €159,461
- Participants
- 1
- Scheme
- MSCA-IF-EF-ST
Lines connect the coordinator with its partners.
Results in brief
Embryonic stem cell origin of the adipose tissue macrophages
Insulin resistance (IR) is reaching pandemic proportions and it is predicted to emerge as a leading cause of worldwide morbidity by 2030. Immune cells, including the so-called adipose tissue (AT) macrophages (ATMs), have key roles in the development of this disease. Pharmacological intervention to shape ATM differentiation and function holds considerable promise as a therapeutic approach to prevent or combat IR. However, the stem cell origin of ATMs remains unclear, which hinders the development of such prevention or treatment strategies. This project was initiated to define the embryonic origin of ATMs. We have found that a major population of ATMs develops from embryonic hematopoietic stem cells (eHSCs) and not from the bone marrow (BM) as was originally postulated. With the use of lineage tracing and BM chimerism in mouse, and the complementary study of transgenic Xenopus laevis, we confirmed that ATMs develop from eHSCs, and ATM development does not depend on BM hematopoiesis. We have found that ATMs retain self-renewal capacity, which is under hormonal control. We identified neuropeptide FF (NPFF), an appetite-reducing hormone to control homeostatic ATM self-renewal. It is likely that further hormonal regulators exist, which determine ATM self-renewal. Major deliverables of the project have been published in the high-ranked medical journal The Journal of Clinical Investigation 127(7):2842-2854, and in the Journal of Leukocyte Biology 102(3):845-855. Of note, The Journal of Clinical Investigation is a top-tier venue for critical advances in biomedical research and reaches readers across a wide range of medical disciplines, which should aid in the dissemination of our novel results. The mechanisms we have described are novel. In the light of recent findings, the steady-state ATM pool derives from embryonic progenitors, ATM self-renewal and the controlled removal of ATMs by other immune cells. Overall, these mechanisms are likely responsible for the dynamic maintenance of metabolically-healthy ATMs. In obesity, however, these mechanisms are compromised, and monocyte-derived ATMs become prevalent in the AT, which in part accounts for inflammation and IR. The deliverables of this project may open new horizons to prevent IR through self-renewal mechanism of ATMs. Publications 1. Waqas SFH, Hoang AC, Lin YT, Ampem G, Azegrouz H, Balogh L, Thuróczy J, Chen JC, Gerling IC, Nam S, Lim JS, Martinez-Ibañez J, Real JT, Paschke S, Quillet R, Ayachi S, Simonin F, Schneider EM, Brinkman JA, Lamming DW, Seroogy CM, Röszer T (2017) Neuropeptide FF increases M2 activation and self-renewal of adipose tissue macrophages. The Journal of Clinical Investigation 127(7):2842-2854, corrigendum: 127(9):3559, IF 12.575 doi: 10.1172/JCI90152. 2. Waqas SFH, Noble A, Hoang AC, Ampem G, Popp M, Strauß S, Guille M, Röszer T (2017) Adipose tissue macrophages develop from bone marrow-independent progenitors in Xenopus laevis and mouse. J Leukocyte Biology, 102(3):845-855, IF 4.165 doi: 10.1189/jlb.1A0317-082RR 3. Röszer T (2017) Transcriptional control of apoptotic cell clearance by macrophage nuclear receptors. Apoptosis 22(2):284-294., IF 3.592 doi: 10.1007/s10495-016-1310-x.
Data: CORDIS, © European Union
Project objective
Today insulin resistance (IR) is reaching pandemic proportions and it is predicted to emerge a leading worldwide morbidity by 2030. Immune cells, including the so-called adipose tissue macrophages (ATMs) have key roles in the development of this disease. Pharmacological intervention to shape ATM differentiation and function may be a straightforward approach to prevent or combat IR. However the stem cell origin of ATMs is still unclear, which blocks the development of such prevention or treatment strategies. Recent reports show that some specific sets of macrophages develop from embryonic hematopoietic stem cells (eHSCs) and not from the bone marrow as it was postulated before. Our preliminary studies raise the possibility that eHSCs are present in the mouse and the human adipose tissue and these stem cells replenish the ATMs in adulthood. The major scientific objectives of this project are to (a) address the critical question whether ATMs are derived from eHSCs, and (b) define whether the eHSC-derived ATMs can cause IR. These are novel and non-conventional ideas on the determination of IR and are challenging the current wisdom on ATM origin. The deliverables of this project may open a new path to alleviate or prevent IR through eHSCs.
Original text from CORDIS.
Participants
- UNIVERSITAET ULM · UlmCoordinatorGermany
Links
Data: CORDIS, © European Union
