单核细胞增多
中性粒细胞
造血
神经炎症
慢性应激
干细胞
免疫学
细胞生物学
内分泌学
白细胞增多症
免疫系统
生物
骨髓
医学
祖细胞
内科学
炎症
作者
Timo Heidt,Hendrik B. Sager,Gabriel Courties,Partha Dutta,Yoshiko Iwamoto,A. G. Zaltsman,Constantin von zur Mühlen,Christoph Bode,Gregory L. Fricchione,John W. Denninger,Charles P. Lin,Claudio Vinegoni,Peter Libby,Filip K. Świrski,Ralph Weissleder,Matthias Nahrendorf
出处
期刊:Nature Medicine
[Nature Portfolio]
日期:2014-06-22
卷期号:20 (7): 754-758
被引量:680
摘要
Exposure to psychosocial stress is a risk factor for many diseases, including atherosclerosis. Although incompletely understood, interaction between the psyche and the immune system provides one potential mechanism linking stress and disease inception and progression. Known cross-talk between the brain and immune system includes the hypothalamic-pituitary-adrenal axis, which centrally drives glucocorticoid production in the adrenal cortex, and the sympathetic-adrenal-medullary axis, which controls stress-induced catecholamine release in support of the fight-or-flight reflex. It remains unknown, however, whether chronic stress changes hematopoietic stem cell activity. Here we show that stress increases proliferation of these most primitive hematopoietic progenitors, giving rise to higher levels of disease-promoting inflammatory leukocytes. We found that chronic stress induced monocytosis and neutrophilia in humans. While investigating the source of leukocytosis in mice, we discovered that stress activates upstream hematopoietic stem cells. Under conditions of chronic variable stress in mice, sympathetic nerve fibers released surplus noradrenaline, which signaled bone marrow niche cells to decrease CXCL12 levels through the β3-adrenergic receptor. Consequently, hematopoietic stem cell proliferation was elevated, leading to an increased output of neutrophils and inflammatory monocytes. When atherosclerosis-prone Apoe(-/-) mice were subjected to chronic stress, accelerated hematopoiesis promoted plaque features associated with vulnerable lesions that cause myocardial infarction and stroke in humans.
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