Dual cholinergic signals regulate daily migration of hematopoietic stem cells and leukocytes

Author:

García-García Andrés123,Korn Claudia12,García-Fernández María12,Domingues Olivia4,Villadiego Javier56,Martín-Pérez Daniel3,Isern Joan3,Bejarano-García José A.5,Zimmer Jacques4,Pérez-Simón José A.5,Toledo-Aral Juan J.56,Michel Tatiana4,Airaksinen Matti S.7,Méndez-Ferrer Simón123ORCID

Affiliation:

1. Wellcome Trust-Medical Research Council Cambridge Stem Cell Institute and Department of Hematology, University of Cambridge, Cambridge, United Kingdom;

2. National Health Service Blood and Transplant, Cambridge Biomedical Campus, Cambridge, United Kingdom;

3. Centro Nacional de Investigaciones Cardiovasculares, Madrid, Spain;

4. Department of Infection and Immunity, Luxembourg Institute of Health, Esch-sur Alzette, Luxembourg;

5. Instituto de Biomedicina de Sevilla (IBiS), Hospital Universitario Virgen del Rocío/Consejo Superior de Investigaciones Científicas (CSIC) and

6. Departamento de Fisiología Médica y Biofísica, Universidad de Sevilla, Seville, Spain; and

7. Neuroscience Center and Department of Anatomy, Faculty of Medicine, University of Helsinki, Helsinki, Finland

Abstract

AbstractHematopoietic stem and progenitor cells (HSPCs) and leukocytes circulate between the bone marrow (BM) and peripheral blood following circadian oscillations. Autonomic sympathetic noradrenergic signals have been shown to regulate HSPC and leukocyte trafficking, but the role of the cholinergic branch has remained unexplored. We have investigated the role of the cholinergic nervous system in the regulation of day/night traffic of HSPCs and leukocytes in mice. We show here that the autonomic cholinergic nervous system (including parasympathetic and sympathetic) dually regulates daily migration of HSPCs and leukocytes. At night, central parasympathetic cholinergic signals dampen sympathetic noradrenergic tone and decrease BM egress of HSPCs and leukocytes. However, during the daytime, derepressed sympathetic noradrenergic activity causes predominant BM egress of HSPCs and leukocytes via β3–adrenergic receptor. This egress is locally supported by light-triggered sympathetic cholinergic activity, which inhibits BM vascular cell adhesion and homing. In summary, central (parasympathetic) and local (sympathetic) cholinergic signals regulate day/night oscillations of circulating HSPCs and leukocytes. This study shows how both branches of the autonomic nervous system cooperate to orchestrate daily traffic of HSPCs and leukocytes.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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