TY - JOUR
T1 - Fingolimod protects against ischemic white matter damage by modulating microglia toward M2 polarization via STAT3 pathway
AU - Qin, Chuan
AU - Fan, Wen Hui
AU - Liu, Qian
AU - Shang, Ke
AU - Murugan, Madhuvika
AU - Wu, Long Jun
AU - Wang, Wei
AU - Tian, Dai Shi
N1 - Funding Information:
This work was supported by National Natural Science Foundation of China (81571132, 81171157 to Dr Tian), the Fundamental Research Funds for the Central Universities (2017KFYXJJ107 to Dr Tian and 2017KFYXJJ124 to Dr Qin), Science Foundation of Tongji Hospital (2016A005 to Dr Qin), and National Institutes of Health (R01NS088627 to Dr Wu).
Publisher Copyright:
© 2017 American Heart Association, Inc.
PY - 2017
Y1 - 2017
N2 - Background and Purpose-White matter (WM) ischemic injury, a major neuropathological feature of cerebral small vessel diseases, is an important cause of vascular cognitive impairment in later life. The pathogenesis of demyelination after WM ischemic damage are often accompanied by microglial activation. Fingolimod (FTY720) was approved for the treatment of multiple sclerosis for its immunosuppression property. In this study, we evaluated the neuroprotective potential of FTY720 in a WM ischemia model. Methods-Chronic WM ischemic injury model was induced by bilateral carotid artery stenosis. Cognitive function, WM integrity, microglial activation, and potential pathway involved in microglial polarization were assessed after bilateral carotid artery stenosis. Results-Disruption of WM integrity was characterized by demyelination in the corpus callosum and disorganization of Ranvier nodes using Luxol fast blue staining, immunofluorescence staining, and electron microscopy. In addition, radial maze test demonstrated that working memory performance was decreased at 1-month post-bilateral carotid artery stenosis-induced injury. Interestingly, FTY720 could reduce cognitive decline and ameliorate the disruption of WM integrity. Mechanistically, cerebral hypoperfusion induced microglial activation, production of associated proinflammatory cytokines, and priming of microglial polarization toward the M1 phenotype, whereas FTY720 attenuated microgliamediated neuroinflammation after WM ischemia and promoted oligodendrocytogenesis by shifting microglia toward M2 polarization. FTY720's effect on microglial M2 polarization was largely suppressed by selective signal transducer and activator of transcription 3 (STAT3) blockade in vitro, revealing that FTY720-enabled shift of microglia from M1 to M2 polarization state was possibly mediated by STAT3 signaling. Conclusions-Our study suggested that FTY720 might be a potential therapeutic drug targeting brain inflammation by skewing microglia toward M2 polarization after chronic cerebral hypoperfusion. Visual Overview-An online visual overview is available for this article.
AB - Background and Purpose-White matter (WM) ischemic injury, a major neuropathological feature of cerebral small vessel diseases, is an important cause of vascular cognitive impairment in later life. The pathogenesis of demyelination after WM ischemic damage are often accompanied by microglial activation. Fingolimod (FTY720) was approved for the treatment of multiple sclerosis for its immunosuppression property. In this study, we evaluated the neuroprotective potential of FTY720 in a WM ischemia model. Methods-Chronic WM ischemic injury model was induced by bilateral carotid artery stenosis. Cognitive function, WM integrity, microglial activation, and potential pathway involved in microglial polarization were assessed after bilateral carotid artery stenosis. Results-Disruption of WM integrity was characterized by demyelination in the corpus callosum and disorganization of Ranvier nodes using Luxol fast blue staining, immunofluorescence staining, and electron microscopy. In addition, radial maze test demonstrated that working memory performance was decreased at 1-month post-bilateral carotid artery stenosis-induced injury. Interestingly, FTY720 could reduce cognitive decline and ameliorate the disruption of WM integrity. Mechanistically, cerebral hypoperfusion induced microglial activation, production of associated proinflammatory cytokines, and priming of microglial polarization toward the M1 phenotype, whereas FTY720 attenuated microgliamediated neuroinflammation after WM ischemia and promoted oligodendrocytogenesis by shifting microglia toward M2 polarization. FTY720's effect on microglial M2 polarization was largely suppressed by selective signal transducer and activator of transcription 3 (STAT3) blockade in vitro, revealing that FTY720-enabled shift of microglia from M1 to M2 polarization state was possibly mediated by STAT3 signaling. Conclusions-Our study suggested that FTY720 might be a potential therapeutic drug targeting brain inflammation by skewing microglia toward M2 polarization after chronic cerebral hypoperfusion. Visual Overview-An online visual overview is available for this article.
KW - Cognitive dysfunction
KW - Corpus callosum
KW - Microglia
KW - Multiple sclerosis
KW - White matter
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U2 - 10.1161/STROKEAHA.117.018505
DO - 10.1161/STROKEAHA.117.018505
M3 - Article
C2 - 29114096
AN - SCOPUS:85038399053
SN - 0039-2499
VL - 48
SP - 3336
EP - 3346
JO - Stroke
JF - Stroke
IS - 12
ER -