Scientific Reports · 2018 · 13 citations · 34 references
Adult Stem CellImmunologyCell DeathMtor PathwayNeuroinflammationRegenerative MedicineAutophagyStem CellsCell TransplantationNeuroimmunologyBeclin 1-Independent InhibitionSciatic NerveAutoimmunityNeuroprotectionPharmacologyMesenchymal Stem CellCell BiologyBmsc TransplantationStem-cell TherapyMedicineNeural Stem Cell
Chronic exposure to n-hexane, a widely used organic solvent in industry, induces central-peripheral neuropathy, which is mediated by its active metabolite, 2,5-hexanedione (HD). We recently reported that transplantation of bone marrow-mesenchymal stem cells (BMSC) significantly ameliorated HD-induced neuronal damage and motor deficits in rats. However, the mechanisms remain unclear. Here, we reported that inhibition of HD-induced autophagy contributed to BMSC-afforded protection. BMSC transplantation significantly reduced the levels of microtubule-associated protein 1 light chain 3-II (LC3-II) and the degradation of sequestosome-1 (p62) in the spinal cord and sciatic nerve of HD-intoxicated rats. Downregulation of autophagy by BMSC was also confirmed in VSC4.1 cells exposed to HD. Moreover, inhibition of autophagy by PIK III mitigated the neurotoxic effects of HD and, meanwhile, abolished BMSC-afforded neuroprotection. Furthermore, we found that BMSC failed to interfere with Beclin 1, but promoted activation of mammalian target of rapamycin (mTOR). Unc-like kinse 1 (ULK1) was further recognized as the downstream target of mTOR responsible for BMSC-mediated inhibition of autophagy. Altogether, BMSC transplantation potently ameliorated HD-induced autophagy through beclin 1-independent activation of mTOR pathway, providing a novel insight for the therapeutic effects of BMSC against n-hexane and other environmental toxicants-induced neurotoxicity.
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Jian-hui Zhu, Craig Horbinski, Fengli Guo et al. · American Journal Of Pathology · 2007 · 439 citations · Full text
Cell Autophagy, Mitophagy, 1-Methyl-4-phenylpyridinium-induced Cell Death +13
Kuan‐Hung Chen, Chih‐Hung Chen, Christopher Glenn Wallace et al. · Oncotarget · 2016 · 237 citations · Full text
Intravenous Administration, Admsc-derived Exosome Therapy, Cerebrovascular Disease +28