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1. Guidelines for the use and interpretation of assays for monitoring autophagy (4th edition)

2. Cytochrome b 5 reductase 3 overexpression and dietary nicotinamide riboside supplementation promote distinctive mitochondrial alterations in distal convoluted tubules of mouse kidneys during aging.

3. CYB5R3 overexpression exhibits sexual dimorphism: Mitochondrial and metabolic adaptations in transgenic female mice during calorie restriction.

4. Preclinical Characterization of Pharmacologic NAD + Boosting as a Promising Therapeutic Approach in Rheumatoid Arthritis.

5. Sex-specific metabolic adaptations in transgenic mice overexpressing cytochrome b 5 reductase-3.

6. CYB5R3 overexpression preserves skeletal muscle mitochondria and autophagic signaling in aged transgenic mice.

7. Regulation of hepatic coenzyme Q biosynthesis by dietary omega-3 polyunsaturated fatty acids.

8. Mitochondrial adaptations in liver and skeletal muscle to pro-longevity nutritional and genetic interventions: the crosstalk between calorie restriction and CYB5R3 overexpression in transgenic mice.

9. Kaempferol increases levels of coenzyme Q in kidney cells and serves as a biosynthetic ring precursor.

10. Effects of Sex, Strain, and Energy Intake on Hallmarks of Aging in Mice.

11. Dietary fat composition influences glomerular and proximal convoluted tubule cell structure and autophagic processes in kidneys from calorie-restricted mice.

12. The influence of dietary fat source on liver and skeletal muscle mitochondrial modifications and lifespan changes in calorie-restricted mice.

13. Dietary fat and aging modulate apoptotic signaling in liver of calorie-restricted mice.

14. Mitochondrial ultrastructure and markers of dynamics in hepatocytes from aged, calorie restricted mice fed with different dietary fats.

15. Dietary fat modifies mitochondrial and plasma membrane apoptotic signaling in skeletal muscle of calorie-restricted mice.

16. Differential regulation of hepatic apoptotic pathways by dietary olive and sunflower oils in the aging rat.

17. Stimulation of polyprenyl 4-hydroxybenzoate transferase activity by sodium cholate and 3-[(cholamidopropyl)dimethylammonio]-1-propanesulfonate.

18. Enhanced anti-oxidant protection of liver membranes in long-lived rats fed on a coenzyme Q10-supplemented diet.

19. Inhibition of COX activity by NSAIDs or ascorbate increases cAMP levels and enhances differentiation in 1alpha,25-dihydroxyvitamin D3-induced HL-60 cells.

20. Coenzyme Q and the regulation of intracellular steady-state levels of superoxide in HL-60 cells.

21. Effect of dietary coenzyme Q and fatty acids on the antioxidant status of rat tissues.

22. A novel plasma membrane quinone reductase and NAD(P)H:quinone oxidoreductase 1 are upregulated by serum withdrawal in human promyelocytic HL-60 cells.

23. Cellular redox state and activating protein-1 are involved in ascorbate effect on calcitriol-induced differentiation.

24. Redox regulation of cAMP levels by ascorbate in 1,25-dihydroxy- vitamin D3-induced differentiation of HL-60 cells.

25. Plasma membrane ubiquinone controls ceramide production and prevents cell death induced by serum withdrawal.

26. Ascorbate on cell growth and differentiation.

27. A quantitative ultrastructural and cytochemical study of TPA-induced differentiation in HL-60 cells.

28. NADH-ascorbate free radical and -ferricyanide reductase activities represent different levels of plasma membrane electron transport.

29. Transplasma membrane redox system in HL-60 cells is modulated during TPA-induced differentiation.

30. Thiol groups are involved in NADH-ascorbate free radical reductase activity of rat liver plasma membrane.

31. Ascorbate free radical stimulates the growth of a human promyelocytic leukemia cell line.

33. Cell surface glycoconjugates control the activity of the NADH-ascorbate free radical reductase of rat liver plasma membrane.

34. Thyroxin specifically stimulates anuran larvae epidermal sodium pump during metamorphosis.

35. Isolation of plasma membrane from amphibian epidermis: evidence for a basal-to-apical charge and activity gradient.

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