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1. Chlorogenic acid regulates the expression of protein phosphatase 2A subunit B in the cerebral cortex of a rat stroke model and glutamate-exposed neurons

2. Identification of proteins regulated by chlorogenic acid in an ischemic animal model: a proteomic approach

3. Epigallocatechin gallate improves neuronal damage in animal model of ischemic stroke and glutamate-exposed neurons via modulation of hippocalcin expression.

4. Retinoic acid attenuates ischemic injury-induced activation of glial cells and inflammatory factors in a rat stroke model.

5. Retinoic acid alleviates the reduction of Akt and Bad phosphorylation and regulates Bcl-2 family protein interactions in animal models of ischemic stroke.

6. Chlorogenic acid modulates the ubiquitin–proteasome system in stroke animal model

8. Retinoic acid regulates the ubiquitin–proteasome system in a middle cerebral artery occlusion animal model

9. Quercetin attenuates the reduction of parvalbumin in middle cerebral artery occlusion animal model

10. Decrease of protein phosphatase 2A subunit B by glutamate exposure in the cerebral cortex of neonatal rats

11. Baicalin alleviates lipopolysaccharide-induced neuroglial activation and inflammatory factors activation in hippocampus of adult mice

12. Decrease of 14–3-3 proteins by glutamate exposure in the cerebral cortex of newborn rats

13. Comparative Study of Toxic Effects and Pathophysiology of Envenomations Induced by Carybdea brevipedalia (Cnidaria: Cubozoa) and Nemopilema nomurai (Cnidaria: Scyphozoa) Jellyfish Venoms

14. Identification of proteins differentially expressed by glutamate treatment in cerebral cortex of neonatal rats

15. Lipopolysaccharide induces neuroglia activation and NF-κB activation in cerebral cortex of adult mice

16. Resveratrol modulates the Akt/GSK-3β signaling pathway in a middle cerebral artery occlusion animal model

17. Hyperglycemia aggravates decrease in alpha-synuclein expression in a middle cerebral artery occlusion model

18. Quercetin attenuates the injurγ-induced reduction of γ-enolase expression in a middle cerebral artery occlusion animal model

19. Hyperglycemia decreases preoxiredoxin-2 expression in a middle cerebral artery occlusion model

20. Cerebral ischemic injury decreases α-synuclein expression in brain tissue and glutamate-exposed HT22 cells

21. Hyperglycemia exacerbates downregulation of dynamin-like protein 1 in ischemic cerebral injury

23. Melatonin Protects MCAO-Induced Neuronal Loss via NR2A Mediated Prosurvival Pathways

24. Ischemic brain injury decreases dynamin-like protein 1 expression in a middle cerebral artery occlusion animal model and glutamate-exposed HT22 cells

25. Identification of Proteins Differentially Expressed in the Striatum by Melatonin in a Middle Cerebral Artery Occlusion Rat Model—a Proteomic and in silico Approach

26. Ferulic acid attenuates the injury-induced decrease of protein phosphatase 2A subunit B in ischemic brain injury.

29. Retinoic Acid Prevents the Neuronal Damage Through the Regulation of Parvalbumin in an Ischemic Stroke Model

32. Epigallocatechin gallate restores the reduction of protein phosphatase 2 A subunit B caused by middle cerebral artery occlusion

33. Epigallocatechin Gallate Alleviates Down-Regulation of Thioredoxin in Ischemic Brain Damage and Glutamate-Exposed Neuron

34. Chlorogenic acid alleviates the reduction of Akt and Bad phosphorylation and of phospho-Bad and 14-3-3 binding in an animal model of stroke

35. Identification of changed proteins by retinoic acid in cerebral ischemic damage: a proteomic study

36. Identification of regulated proteins by epigallocatechin gallate treatment in an ischemic cerebral cortex animal model: a proteomics approach

38. Matrix metalloproteinases improves trophoblast invasion and pregnancy potential in mice

39. Retinoic acid alleviates the reduction of Akt and Bad phosphorylation and regulates Bcl-2 family protein interactions in animal models of ischemic stroke

40. Alleviation of γ-enolase decrease by the chlorogenic acid administration in the stroke animal model

41. Chlorogenic acid alleviates cerebral ischemia-induced neuroinflammation via attenuating nuclear factor kappa B activation

42. Quercetin ameliorates glutamate toxicity-induced neuronal cell death by controlling calcium-binding protein parvalbumin

43. Quercetin Attenuates Decrease of Thioredoxin Expression Following Focal Cerebral Ischemia and Glutamate-induced Neuronal Cell Damage

44. Chlorogenic acid alleviates the reduction of Akt and Bad phosphorylation and of phospho-Bad and 14-3-3 binding in an animal model of stroke.

45. Retinoic acid exerts neuroprotective effects against focal cerebral ischemia by preventing apoptotic cell death

46. Rosa davurica Pall. improves DNCB-induced atopic dermatitis in mice and regulated TNF-Alpa/IFN-gamma-induced skin inflammatory responses in HaCaT cells

47. Identification of regulated proteins by resveratrol in glutamate-induced cortical injury of newborn rats

48. Quercetin attenuates the reduction of parvalbumin in middle cerebral artery occlusion animal model

49. A Potent Antioxidant Endogenous Neurohormone Melatonin, Rescued MCAO by Attenuating Oxidative Stress-Associated Neuroinflammation

50. Epigallocatechin gallate alleviates neuronal cell damage against focal cerebral ischemia in rats

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