Paper Publications
- [17] 辛丹清. MSCs-extracellular vesicles attenuated neuroinflammation, synapse damage and microglial phagocytosis after hypoxia-ischemia injury by preventing osteopontin expression. 《Pharmacol Res.》, 164, 2021.
- [18] 韩敏. Mesenchymal stem cell-derived extracellular vesicles promote microglial M2 polarization after subarachnoid hemorrhage in rats and involve the AMPK/NF-kappa B signaling pathway. Biomed Pharmacother., 133, 2021.
- [19] 初锡丽. Hydrogen sulfide-modified extracellular vesicles from mesenchymal stem cells for treatment of hypoxic-ischemic brain injury. Journal of Controlled Release, 328, 13, 2020.
- [20] 辛丹清. Mesenchymal stromal cell-derived extracellular vesicles modulate microglia/macrophage polarization and protect the brain against hypoxia-ischemic injury in neonatal mice by targeting delivery of miR-21a-5p. Acta Biomaterialia, 2020.
- [21] 初锡丽. Hydrogen sulfide-modified extracellular vesicles from mesenchymal stem cells for treatment of hypoxic-ischemic brain injury. Journal of Controlled Release. Journal of Controlled Release, 2020.
- [22] 辛丹清. Mesenchymal stromal cell-derived extracellular vesicles modulate microglia/macrophage polarization and protect the brain against hypoxia-ischemic injury in neonatal mice by targeting delivery of miR-21a-5p. Acta Biomaterialia, 113, 597, 2020.
- [23] 柯鸿飞. Hydrogen-Rich Saline Regulates Microglial Phagocytosis and Restores Behavioral Deficits Following Hypoxia-Ischemia Injury in Neonatal Mice via the Akt Pathway. DRUG DESIGN DEVELOPMENT AND THERAPY, 14, 3827, 2020.
- [24] 柯鸿飞. Hydrogen-Rich Saline Regulates Microglial Phagocytosis and Restores Behavioral Deficits Following Hypoxia-Ischemia Injury in Neonatal Mice via the Akt Pathway. DRUG DESIGN DEVELOPMENT AND THERAPY, 2020.
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