Signaling through three chemokine receptors triggers the migration of transplanted neural precursor cells in a model of multiple sclerosis

被引:17
作者
Cohen, Mikhal E. [1 ]
Fainstein, Nina [1 ]
Lavon, Iris [1 ,2 ]
Ben-Hur, Tamir [1 ]
机构
[1] Hadassah Univ Med Ctr, Dept Neurol, Agnes Ginges Ctr Human Neurogenet, IL-91120 Jerusalem, Israel
[2] Hadassah Univ Med Ctr, Leslie & Michael Gaffin Ctr Neurooncol, IL-91120 Jerusalem, Israel
关键词
EXPERIMENTAL AUTOIMMUNE ENCEPHALOMYELITIS; MONOCYTE CHEMOATTRACTANT PROTEIN-1; REGULATORY T-CELLS; PROGENITOR CELLS; STEM-CELLS; IN-VITRO; NERVOUS-SYSTEM; WHITE-MATTER; CNS INJURY; C-MET;
D O I
10.1016/j.scr.2014.06.001
中图分类号
Q813 [细胞工程];
学科分类号
摘要
Multiple sclerosis (MS) is a multifocal disease, and precursor cells need to migrate into the multiple lesions in order to exert their therapeutic effects. Therefore, cell migration is a crucial element in regenerative processes in MS, dictating the route of delivery, when cell transplantation is considered. We have previously shown that inflammation triggers migration of multi-potential neural precursor cells (NPCs) into the white matter of experimental autoimmune encephalomyelitis (EAE) rodents, a widely used model of MS. Here we investigated the molecular basis of this attraction. NPCs were grown from E13 embryonic mouse brains and transplanted into the lateral cerebral ventricles of EAE mice. Transplanted NPC migration was directed by three tissue-derived chemokines. Stromal cell-derived factor-1 alpha, monocyte chemo-attractant protein-1 and hepatocyte growth factor were expressed in the EAE brain and specifically in microglia and astrocytes. Their cognate receptors, CXCR4, CCR2 or c-Met were constitutively expressed on NPCs. Selective blockage of CXCR4, CCR2 or c-Met partially inhibited NPC migration in EAE brains. Blocking all three receptors had an additive effect and resulted in profound inhibition of NPC migration, as compared to extensive migration of control NPCs. The inflammation-triggered NPC migration into white matter tracts was dependent on a motile NPC phenotype. Specifically, depriving NPCs from epidermal growth factor (EGF) prevented the induction of glial commitment and a motile phenotype (as indicated by an in vitro motility assay), hampering their response to neuroinflammation. In conclusion, signaling via three chemokine systems accounts for most of the inflammation-induced, tissue-derived attraction of transplanted NPCs into white matter tracts during EAE. (C) 2014 The Authors. Published by Elsevier B. V.
引用
收藏
页码:227 / 239
页数:13
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