4.7 Article

Age decreases macrophage IL-10 expression: Implications for functional recovery and tissue repair in spinal cord injury

期刊

EXPERIMENTAL NEUROLOGY
卷 273, 期 -, 页码 83-91

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.expneurol.2015.08.001

关键词

Microglia; Contusion; Brain; Monocyte: IL-12p40; IL-12; Neuroprotection; Inflammation; Macrophage polarization; Macrophage polarity; Traumatic; Neurotrauma; Aged; Aging; Adult; Digigait; Grid walk; Locomotor; BMS

资金

  1. Cardinal Hill Endowment
  2. Craig H. Neilsen Foundation
  3. NINDS [NS051220 P30]

向作者/读者索取更多资源

Macrophages with different activation states are present after spinal cord injury (SCI). M1 macrophages purportedly promote secondary injury processes while M2 cells support axon growth. The average age at the time of SCI has increased in recent decades, however, little is known about how different physiological factors contribute to macrophage activation states after SCI. Here we investigate the effect of age on IL-10, a key indicator of M2 macrophage activation. Following mild-moderate SCI in 4 and 14 month old (MO) mice we detected significantly reduced IL-10 expression with age in the injured spinal cord. Specifically, CD86/IL-10 positive macrophages, also known as M2b or regulatory macrophages, were reduced in 14 vs. 4 MO SCI animals. This age-dependent shift in macrophage phenotype was associated with impaired functional recovery and enhanced tissue damage in 14-month-old SCI mice. In vitro, M2b macrophages release anti-inflammatory cytokines without causing neurotoxicity, suggesting that imbalances in the M2b response in 14-month-old mice may be contributing to secondary injury processes. Our data indicate that age is an important factor that regulates SCI inflammation and recovery even to mild-moderate injury. Further, alterations in macrophage activation states may contribute to recovery and we have identified the M2b phenotype as a potential target for therapeutic intervention. (C) 2015 Elsevier Inc. All rights reserved.

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