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Your search keyword '"Zhongyuan Bao"' showing total 42 results

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42 results on '"Zhongyuan Bao"'

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1. Meningioma achieves malignancy and erastin-induced ferroptosis resistance through FOXM1-AURKA-NRF2 axis

2. Hsp90 induces Acsl4-dependent glioma ferroptosis via dephosphorylating Ser637 at Drp1

3. Endoscopic transcranial transdiaphragmatic approach in a single-stage surgery for giant pituitary adenomas

4. Prokineticin-2 prevents neuronal cell deaths in a model of traumatic brain injury

5. PBX3/MEK/ERK1/2/LIN28/let-7b positive feedback loop enhances mesenchymal phenotype to promote glioblastoma migration and invasion

6. Silencing of A20 Aggravates Neuronal Death and Inflammation After Traumatic Brain Injury: A Potential Trigger of Necroptosis

8. Data from Smoothened Promotes Glioblastoma Radiation Resistance Via Activating USP3-Mediated Claspin Deubiquitination

11. Loss of deubiquitylase USP2 triggers development of glioblastoma via TGF-β signaling

13. MEF2C silencing downregulates NF2 and E-cadherin and enhances Erastin-induced ferroptosis in meningioma

14. DRD1 signaling enhances recovery after traumatic brain injury via an autophagy dependent pathway

15. Distinct clinical outcome of microcystic meningioma as a WHO grade 1 meningioma subtype

16. Up‐regulation of CHMP4B alleviates microglial necroptosis induced by traumatic brain injury

17. Smoothened Promotes Glioblastoma Radiation Resistance Via Activating USP3-Mediated Claspin Deubiquitination

18. Microcystic Meningioma Has A Worse Outcome Than Other WHO Grade 1 Subtypes

19. Hsp90 Induces Acsl4-dependent Glioma Ferroptosis via Dephosphorylate Ser637 at Drp1

20. Hsp90 induces Acsl4-dependent glioma ferroptosis via dephosphorylating Ser637 at Drp1

21. Fetuin-A Alleviates Neuroinflammation Against Traumatic Brain Injury-Induced Microglial Necroptosis By Regulating Nrf-2/HO-1 Pathway

22. Prokineticin-2 prevents neuronal cell deaths in a model of traumatic brain injury

23. S100A11 functions as novel oncogene in glioblastoma via S100A11/ANXA2/NF‐κB positive feedback loop

24. Nuclear receptor coactivator 4-mediated ferritinophagy contributes to cerebral ischemia-induced ferroptosis in ischemic stroke

26. Human Cerebral Organoid Implantation Alleviated the Neurological Deficits of Traumatic Brain Injury in Mice

27. MMP-9 Inhibitor GM6001 Prevents the Development of ssTBI-Induced Parkinson's Disease via the Autophagy Pathway

28. Activation of bradykinin B2 receptor induced the inflammatory responses of cytosolic phospholipase A2 after the early traumatic brain injury

29. PBX3/MEK/ERK1/2/LIN28/let-7b positive feedback loop enhances mesenchymal phenotype to promote glioblastoma migration and invasion

30. ERK1/2/mTOR/Stat3 pathway-mediated autophagy alleviates traumatic brain injury-induced acute lung injury

31. Lowered iPLA2γ activity causes increased mitochondrial lipid peroxidation and mitochondrial dysfunction in a rotenone-induced model of Parkinson's disease

32. Silencing Pre-B-cell leukemia homeobox 3 decreases the proliferation of human glioma cells in vitro and in vivo

33. Extracellular Signal-Regulated Kinase/Nuclear Factor-Erythroid2-like2/Heme Oxygenase-1 Pathway-Mediated Mitophagy Alleviates Traumatic Brain Injury-Induced Intestinal Mucosa Damage and Epithelial Barrier Dysfunction

34. MicroRNA-98 Attenuates Cell Migration and Invasion in Glioma by Directly Targeting Pre-B Cell Leukemia Homeobox 3

35. Silencing of A20 Aggravates Neuronal Death and Inflammation After Traumatic Brain Injury: A Potential Trigger of Necroptosis

36. LINC00511 contributes to glioblastoma tumorigenesis and epithelial-mesenchymal transition via LINC00511/miR-524-5p/YB1/ZEB1 positive feedback loop

37. Activation of bradykinin B2 receptor induced the inflammatory responses of cytosolic phospholipase A

38. Lowered iPLA

39. Corrigendum to 'Activation of bradykinin B2 receptor induced the inflammatory responses of cytosolic phospholipase A2 after the early traumatic brain injury.' [Biochem. Biophys. Acta Mol. Basis Dis. 1864/9 Pt B (2018) 2957–2971]

40. Omega-3 fatty acids regulate NLRP3 inflammasome activation and prevent behavior deficits after traumatic brain injury

41. Corrigendum to 'ERK1/2/mTOR/Stat3 pathway-mediated autophagy alleviates traumatic brain injury-induced acute lung injury' [Biochim. Biophys. Acta 1864/5PA(2018) 1663–1674]

42. Cardiolipin-Dependent Mitophagy Guides Outcome after Traumatic Brain Injury.

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