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1. Microglia-dependent neuroprotective effects of 4-octyl itaconate against rotenone-and MPP+-induced neurotoxicity in Parkinson’s disease

2. Neuroprotective Strategies and Cell-Based Biomarkers for Manganese-Induced Toxicity in Human Neuroblastoma (SH-SY5Y) Cells

4. Neuroprotective effects of urate are mediated by augmenting astrocytic glutathione synthesis and release

5. A Feed-Forward Circuit of Endogenous PGC-1α and Estrogen Related Receptor α Regulates the Neuronal Electron Transport Chain

6. Does Serum Urate Change as Parkinson’s Disease Progresses?

7. Association of caffeine and related analytes with resistance to Parkinson disease among LRRK2 mutation carriers

8. Associations of Lower Caffeine Intake and Plasma Urate Levels with Idiopathic Parkinson’s Disease in the Harvard Biomarkers Study

9. Sex differences by design and outcome in the Safety of Urate Elevation in PD (SURE-PD) trial

10. Higher urate in LRRK2 mutation carriers resistant to Parkinson disease

11. Association of caffeine and related analytes with resistance to Parkinson disease among

12. Pilot trial of inosine to elevate urate levels in amyotrophic lateral sclerosis

13. Urate mitigates oxidative stress and motor neuron toxicity of astrocytes derived from ALS-linked SOD1 mutant mice

14. Distinguishing between biochemical and cellular function: Are there peptide signatures for cellular function of proteins?

15. Targeting the Iron-Response Elements of the mRNAs for the Alzheimer’s Amyloid Precursor Protein and Ferritin to Treat Acute Lead and Manganese Neurotoxicity

16. Oral Inosine Persistently Elevates Plasma antioxidant capacity in Parkinson's disease

17. A Feed-Forward Circuit of EndogenousPGC-1αandEstrogen Related Receptor αRegulates the Neuronal Electron Transport Chain

18. Urate mitigates oxidative stress and motor neuron toxicity of astrocytes derived from ALS-linked SOD1

20. Neuroprotective effects of urate are mediated by augmenting astrocytic glutathione synthesis and release

21. Protection by inosine in a cellular model of Parkinson’s disease

22. Distinguishing between biochemical and cellular function: Are there peptide signatures for cellular function of proteins?

23. Oral Inosine Persistently Elevates Plasma antioxidant capacity in Parkinson's disease

24. Blockade of metabotropic glutamate receptor 5 protects against DNA damage in a rotenone-induced Parkinson's disease model

25. Purines in Parkinson’s: Adenosine A2A Receptors and Urate as Targets for Neuroprotection

26. In silico characterization of the INO80 subfamily of SWI2/SNF2 chromatin remodeling proteins

27. Association of α-synuclein gene expression with Parkinson’s disease is attenuated with higher serum urate in the PPMI cohort

28. The human SWI/SNF complex associates with RUNX1 to control transcription of hematopoietic target genes

29. Subnuclear Localization and Intranuclear Trafficking of Transcription Factors

30. The leukemogenic t(8;21) fusion protein AML1-ETO controls rRNA genes and associates with nucleolar-organizing regions at mitotic chromosomes

31. In situ nuclear organization of regulatory machinery

32. In Situ Nuclear Organization of Regulatory Machinery

33. Characterization of a human SWI2/SNF2 like protein hINO80: demonstration of catalytic and DNA binding activity

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