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1. Maternal melatonin treatment rescues endocrine, inflammatory, and transcriptional deregulation in the adult rat female offspring from gestational chronodisruption

2. Maternal Chronodisruption Throughout Pregnancy Impairs Glucose Homeostasis and Adipose Tissue Physiology in the Male Rat Offspring

4. Long-Term Effects of Altered Photoperiod During Pregnancy on Liver Gene Expression of the Progeny

5. Fetal Programming of Renal Dysfunction and High Blood Pressure by Chronodisruption

6. Gestational chronodisruption impairs hippocampal expression of NMDA receptor subunits Grin1b/Grin3a and spatial memory in the adult offspring.

7. Impact of chronodisruption during primate pregnancy on the maternal and newborn temperature rhythms.

8. Timed maternal melatonin treatment reverses circadian disruption of the fetal adrenal clock imposed by exposure to constant light.

9. In utero circadian changes; facing light pollution

10. New integrative approaches to discovery of pathophysiological mechanisms triggered by night shift work

11. Fetal programming of adipose tissue function by gestational chronodisruption

12. Gestational chronodisruption leads to persistent changes in the rat fetal and adult adrenal clock and function

13. Gestation under chronic constant light leads to extensive gene expression changes in the fetal rat liver

14. Developmental Programming of Capuchin Monkey Adrenal Dysfunction by Gestational Chronodisruption

15. Deciphering the Function of the Blunt Circadian Rhythm of Melatonin in the Newborn Lamb: Impact on Adrenal and Heart

16. Gestational Chronodisruption Impairs Circadian Physiology in Rat Male Offspring, Increasing the Risk of Chronic Disease

18. Circadian rhythms in the fetus

19. Evidence of a role for melatonin in fetal sheep physiology: direct actions of melatonin on fetal cerebral artery, brown adipose tissue and adrenal gland

20. Clock Gene Expression in Adult Primate Suprachiasmatic Nuclei and Adrenal: Is the Adrenal a Peripheral Clock Responsive to Melatonin?

21. Circadian clocks during embryonic and fetal development

22. Immunocytochemical demonstration of day/night changes of clock gene protein levels in the murine adrenal gland: differences between melatonin-proficient (C3H) and melatonin-deficient (C57BL) mice

23. Maternal melatonin selectively inhibits cortisol production in the primate fetal adrenal gland

24. mt1 Melatonin Receptor in the Primate Adrenal Gland: Inhibition of Adrenocorticotropin-Stimulated Cortisol Production by Melatonin

25. Impact of gestational chronodisruption on fetal cardiac genomics

26. Timed Maternal Melatonin Treatment Reverses Circadian Disruption of the Fetal Adrenal Clock Imposed by Exposure to Constant Light

28. A circadian clock entrained by melatonin is ticking in the rat fetal adrenal

29. Melatonin Exerts Direct Inhibitory Actions on ACTH Responses in the Human Adrenal Gland

30. Cryptochrome 2 expression level is critical for adrenocorticotropin stimulation of cortisol production in the capuchin monkey adrenal

31. Evidence of a role for melatonin in fetal sheep physiology: direct actions of melatonin on fetal cerebral artery, brown adipose tissue and adrenal gland

32. Rhythmic expression of functional mt1 melatonin receptors in the rat adrenal gland

33. Circadian cortisol secretion and circadian adrenal responses to acth are maintained in dexamethasone suppressed capuchin monkeys (cebus apella)

34. Clock gene expression in the retina of melatonin-proficient (C3H) and melatonin-deficient (C57BL) mice

35. Maternal melatonin effects on clock gene expression in a nonhuman primate fetus

36. Maternal melatonin stimulates growth and prevents maturation of the capuchin monkey fetal adrenal gland

37. The Circadian Timing System: Making Sense of day/night gene expression

38. The development of circadian rhythms in the fetus and neonate

39. The Circadian Timing System: Making Sense of day/night gene expression

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