38 results on '"Zhou, Luo-Qi"'
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2. Bruton’s tyrosine kinase inhibition ameliorated neuroinflammation during chronic white matter ischemia
3. B cell lineage reconstitution underlies CAR-T cell therapeutic efficacy in patients with refractory myasthenia gravis
4. Microglial Nrf2-mediated lipid and iron metabolism reprogramming promotes remyelination during white matter ischemia
5. TREM2 deficiency inhibits microglial activation and aggravates demyelinating injury in neuromyelitis optica spectrum disorder
6. Anti-BCMA CAR T-cell therapy CT103A in relapsed or refractory AQP4-IgG seropositive neuromyelitis optica spectrum disorders: phase 1 trial interim results
7. Modulation of microglial metabolism facilitates regeneration in demyelination
8. CSF sTREM2 in neurological diseases: a two-sample Mendelian randomization study
9. Signaling pathways involved in ischemic stroke: molecular mechanisms and therapeutic interventions
10. Correction To: Signaling pathways involved in ischemic stroke: molecular mechanisms and therapeutic interventions
11. FSAP aggravated endothelial dysfunction and neurological deficits in acute ischemic stroke due to large vessel occlusion
12. Effects of vaginal microbiota and cervical cerclage on obstetric outcomes of twin pregnancies with cervical incompetence: a retrospective study
13. Microglia reprogram metabolic profiles for phenotype and function changes in central nervous system
14. FTY720 Modulates Microglia Toward Anti-inflammatory Phenotype by Suppressing Autophagy via STAT1 Pathway
15. Causal association between the peripheral immunity and the risk and disease severity of multiple sclerosis
16. Single-cell analysis of refractory anti-SRP necrotizing myopathy treated with anti-BCMA CAR-T cell therapy
17. Serum LDL Promotes Microglial Activation and Exacerbates Demyelinating Injury in Neuromyelitis Optica Spectrum Disorder
18. TREM2‐IGF1 Mediated Glucometabolic Enhancement Underlies Microglial Neuroprotective Properties During Ischemic Stroke
19. Dual Functions of Microglia in Ischemic Stroke
20. Deficiency of microglial Hv1 channel is associated with activation of autophagic pathway and ROS production in LPC-induced demyelination mouse model
21. TREM2‐IGF1 Mediated Glucometabolic Enhancement Underlies Microglial Neuroprotective Properties During Ischemic Stroke.
22. Proteomic profiling of plasma biomarkers in acute ischemic stroke due to large vessel occlusion
23. Soluble TREM2 triggers microglial dysfunction in neuromyelitis optica spectrum disorders.
24. Haste makes waste: staged suppression of autophagic-lysosomal pathway in microglia promotes the efficient clearance of myelin debris
25. Additional file 1 of TREM2 deficiency inhibits microglial activation and aggravates demyelinating injury in neuromyelitis optica spectrum disorder
26. Naïve-memory regulatory T cells ratio is a prognostic biomarker for patients with acute ischemic stroke
27. Risk Factors, Pathophysiologic Mechanisms, and Potential Treatment Strategies of Futile Recanalization after Endovascular Therapy in Acute Ischemic Stroke
28. Staged suppression of microglial autophagy facilitates regeneration in CNS demyelination by enhancing the production of linoleic acid
29. Additional file 1 of CSF sTREM2 in neurological diseases: a two-sample Mendelian randomization study
30. Sphingosine-1-Phosphate Signaling in Ischemic Stroke: From Bench to Bedside and Beyond
31. Effects of vaginal microbiota and cervical cerclage on obstetric outcomes of twin pregnancies with cervical incompetence: a retrospective study
32. FTY720 Modulates Microglia Toward Anti-inflammatory Phenotype by Suppressing Autophagy via STAT1 Pathway
33. Microglial TLR4-dependent autophagy induces ischemic white matter damage via STAT1/6 pathway: Erratum
34. Microglial TLR4-dependent autophagy induces ischemic white matter damage via STAT1/6 pathway
35. Systematic Druggable Genome-Wide Mendelian Randomization Identifies Therapeutic Targets for Functional Outcome After Ischemic Stroke.
36. Research hotspots and trends on neuromyelitis optica spectrum disorders: insights from bibliometric analysis.
37. Staged suppression of microglial autophagy facilitates regeneration in CNS demyelination by enhancing the production of linoleic acid.
38. Erratum: Microglial TLR4-dependent autophagy induces ischemic white matter damage via STAT1/6 pathway: Erratum.
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