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1. Chronological age enhances aging phenomena and protein nitration in oocyte

2. Zinc Homeostasis, Reactive Oxygen Species Imbalance and Bisphenol-A Exposure in the Preimplantation Mouse Embryo: a possible adverse outcome pathway

3. Galactose and its Metabolites Deteriorate Metaphase II Mouse Oocyte Quality and Subsequent Embryo Development by Disrupting the Spindle Structure

5. Potential Role of Zinc in the COVID-19 Disease Process and its Probable Impact on Reproduction

6. Melatonin interferes with COVID-19 at several distinct ROS-related steps

7. CoQ10 increases mitochondrial mass and polarization, ATP and Oct4 potency levels, and bovine oocyte MII during IVM while decreasing AMPK activity and oocyte death

8. Mesna (2-mercaptoethane sodium sulfonate) functions as a regulator of myeloperoxidase(✩)

9. Melatonin Prevents Myeloperoxidase Heme Destruction and the Generation of Free Iron Mediated by Self-Generated Hypochlorous Acid

10. Diffused Intra-Oocyte Hydrogen Peroxide Activates Myeloperoxidase and Deteriorates Oocyte Quality

11. Kinetic Studies on the Reaction between Dicyanocobinamide and Hypochlorous Acid

12. Nicotinamide Adenine Dinucleotide Phosphate Oxidase Expression Is Differentially Regulated to Favor a Pro-oxidant State That Contributes to Postoperative Adhesion Development

13. Direct real-time measurement of intra-oocyte nitric oxide concentration in vivo

14. Myeloperoxidase acts as a source of free iron during steady-state catalysis by a feedback inhibitory pathway

15. Impact of hydrogen peroxide driven Fenton reaction on mouse oocyte quality

16. IL-6 and Mouse Oocyte Spindle

17. IL-6 and mouse oocyte spindle

18. The reaction of HOCl and cyanocobalamin: corrin destruction and the liberation of cyanogen chloride

19. Modulation of redox signaling promotes apoptosis in epithelial ovarian cancer cells

20. REACTION OF HEMOGLOBIN WITH HOCl: MECHANISM OF HEME DESTRUCTION AND FREE IRON RELEASE*

21. Exposure to polychlorinated biphenyls enhances lipid peroxidation in human normal peritoneal and adhesion fibroblasts: a potential role for myeloperoxidase

22. Hypoxia-generated superoxide induces the development of the adhesion phenotype

23. Nitric oxide synthesis in the lung. Regulation by oxygen through a kinetic mechanism

24. A review of nitric oxide and oxidative stress in typical ovulatory women and in the pathogenesis of ovulatory dysfunction in PCOS

25. The Impact of Myeloperoxidase and Activated Macrophages on Metaphase II Mouse Oocyte Quality.

26. Diffused Intra-Oocyte Hydrogen Peroxide Activates Myeloperoxidase and Deteriorates Oocyte Quality.

27. Melatonin prevents myeloperoxidase heme destruction and the generation of free iron mediated by self-generated hypochlorous acid.

28. Direct real-time measurement of intra-oocyte nitric oxide concentration in vivo.

29. IL-6 and mouse oocyte spindle.

30. Hypochlorous acid-induced heme degradation from lactoperoxidase as a novel mechanism of free iron release and tissue injury in inflammatory diseases.

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