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1. Gestational Hypoxia and Programing of Lung Metabolism

2. Long-term exposure to high altitude hypoxia during pregnancy increases fetal heart susceptibility to ischemia/reperfusion injury and cardiac dysfunction

3. TET2 confers a mechanistic link of microRNA‐210 and mtROS in hypoxia‐suppressed spontaneous transient outward currents in uterine arteries of pregnant sheep.

5. Ca 2+ -Activated K + Channels and the Regulation of the Uteroplacental Circulation.

6. MicroRNA-210 mediates hypoxia-induced repression of spontaneous transient outward currents in sheep uterine arteries during gestation

7. MicroRNA-210-mediated mtROS confer hypoxia-induced suppression of STOCs in ovine uterine arteries.

9. Hypoxia and the integrated stress response promote pulmonary hypertension and preeclampsia: Implications in drug development.

10. Long‐term high altitude hypoxia during gestation suppresses large conductance Ca(2+)‐activated K(+) channel function in uterine arteries: a causal role for microRNA‐210

11. Gestational Hypoxia Inhibits Pregnancy-Induced Upregulation of Ca2+ Sparks and Spontaneous Transient Outward Currents in Uterine Arteries Via Heightened Endoplasmic Reticulum/Oxidative Stress.

12. Long-Term High-Altitude Hypoxia and Alpha Adrenoceptor-Dependent Pulmonary Arterial Contractions in Fetal and Adult Sheep.

14. Antenatal Hypoxia and Programming of Glucocorticoid Receptor Expression in the Adult Rat Heart.

15. MicroRNA-210 Targets Ten-Eleven Translocation Methylcytosine Dioxygenase 1 and Suppresses Pregnancy-Mediated Adaptation of Large Conductance Ca2+-Activated K+ Channel Expression and Function in Ovine Uterine Arteries.

16. Effect of chronic hypoxia on adrenoceptor responses of ovine foetal umbilical vessels

17. Epigenetic upregulation of large-conductance Ca2+-activated K+ channel expression in uterine vascular adaptation to pregnancy.

18. Hypoxia-derived oxidative stress mediates epigenetic repression of PKCɛ gene in foetal rat hearts.

19. Foetal hypoxia increases cardiac AT2R expression and subsequent vulnerability to adult ischaemic injury.

20. Changes of renal AT1/AT2 receptors and structures in ovine fetuses following exposure to long-term hypoxia.

21. Chronic hypoxia increases pressure-dependent myogenic tone of the uterine artery in pregnant sheep: role of ERK/PKC pathway.

22. The effect of prenatal nicotine on mRNA of central cholinergic markers and hematological parameters in rat fetuses

23. Fetal Programming of Cardiac Function and Disease.

24. Intrauterine Hypoxia and Epigenetic Programming in Lung Development and Disease.

25. Fetal Hypoxia Impacts on Proliferation and Differentiation of Sca-1+ Cardiac Progenitor Cells and Maturation of Cardiomyocytes: A Role of MicroRNA-210.

26. Multi-Omics Integration Reveals Short and Long-Term Effects of Gestational Hypoxia on the Heart Development.

27. Hypoxia-induced pulmonary hypertension in adults and newborns: implications for drug development.

28. Heart Disease Link to Fetal Hypoxia and Oxidative Stress

29. Fetal Breathing Movements and Changes at Birth

30. Altitude, Attitude and Adaptation

31. Antenatal hypoxia induces epigenetic repression of glucocorticoid receptor and promotes ischemic-sensitive phenotype in the developing heart.

32. Fetal hypoxia increases vulnerability of hypoxic–ischemic brain injury in neonatal rats: Role of glucocorticoid receptors.

33. Gestational Hypoxia Up-regulates Protein Kinase C and Inhibits Calcium-Activated Potassium Channels in Ovine Uterine Arteries

34. Antenatal Hypoxia Induces Programming of Reduced Arterial Blood Pressure Response in Female Rat Offspring: Role of Ovarian Function

35. Endothelin-1 promotes cardiomyocyte terminal differentiation in the developing heart via heightened DNA methylation

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