Laboratories for Neuroscience Research in Neurosurgery and F.M. Kirby Neurobiology Center, Children's Hospital, Boston, Massachussetts 02115, Department of Ophthalmology, Osaka Medical College, Osaka 569-8686, Japan, and Departments of Surgery and Ophthalmology and Program in Neuroscience, Harvard Medical School, Boston, Massachusetts 02115.
J Neurosci. 2013 Sep 11;33(37):14816-24. doi: 10.1523/JNEUROSCI.5511-12.2013.
Although neurons are normally unable to regenerate their axons after injury to the CNS, this situation can be partially reversed by activating the innate immune system. In a widely studied instance of this phenomenon, proinflammatory agents have been shown to cause retinal ganglion cells, the projection neurons of the eye, to regenerate lengthy axons through the injured optic nerve. However, the role of different molecules and cell populations in mediating this phenomenon remains unclear. We show here that neutrophils, the first responders of the innate immune system, play a central role in inflammation-induced regeneration. Numerous neutrophils enter the mouse eye within a few hours of inducing an inflammatory reaction and express high levels of the atypical growth factor oncomodulin (Ocm). Immunodepletion of neutrophils diminished Ocm levels in the eye without altering levels of CNTF, leukemia inhibitory factor, or IL-6, and suppressed the proregenerative effects of inflammation. A peptide antagonist of Ocm suppressed regeneration as effectively as neutrophil depletion. Macrophages enter the eye later in the inflammatory process but appear to be insufficient to stimulate extensive regeneration in the absence of neutrophils. These data provide the first evidence that neutrophils are a major source of Ocm and can promote axon regeneration in the CNS.
虽然中枢神经系统损伤后神经元通常无法再生其轴突,但通过激活先天免疫系统可以部分逆转这种情况。在这一现象的一个广泛研究的实例中,促炎剂已被证明可导致视网膜神经节细胞(眼睛的投射神经元)通过受损的视神经再生长的轴突。然而,不同分子和细胞群体在介导这种现象中的作用仍不清楚。我们在这里表明,中性粒细胞是先天免疫系统的最初反应者,在炎症诱导的再生中发挥核心作用。在诱导炎症反应后的几个小时内,大量中性粒细胞进入小鼠眼睛,并表达高水平的非典型生长因子 oncomodulin (Ocm)。中性粒细胞的免疫耗竭可降低眼睛中的 Ocm 水平,而不改变 CNTF、白血病抑制因子或 IL-6 的水平,并抑制炎症的促再生作用。Ocm 的肽拮抗剂可有效抑制再生,与中性粒细胞耗竭一样有效。巨噬细胞在炎症过程中较晚进入眼睛,但似乎在没有中性粒细胞的情况下不足以刺激广泛的再生。这些数据首次提供了证据表明,中性粒细胞是 Ocm 的主要来源,并可以促进中枢神经系统中的轴突再生。