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1. Association of circulating uric acid and angiotensin-(1–7) in relation to higher blood pressure in adolescents and the influence of preterm birth

2. The Role of Heart Rate Variability in Mindfulness-Based Pain Relief

3. Antenatal corticosteroids and the renin-angiotensin-aldosterone system in adolescents born preterm

4. Abstract WP144: Inflammation After Intracerebral Hemorrhage Is Locally Mediated

5. Injury patterns associated with hypotension in pediatric trauma patients

6. Alterations in the Medullary Endocannabinoid System Contribute to Age-related Impairment of Baroreflex Sensitivity

8. Effect of Fludrocortisone Acetate on Chronic Unexplained Nausea and Abdominal Pain in Children With Orthostatic Intolerance

9. Increased Constrictor Tone Induced by Ouabain Treatment in Rats

10. Low glial angiotensinogen improves body habitus, diastolic function, and exercise tolerance in aging male rats

11. In Vivo Expression of Angiotensin-(1-7) Lowers Blood Pressure and Improves Baroreflex Function in Transgenic (mRen2)27 Rats

12. Protein Phosphatase 1b in the Solitary Tract Nucleus is Necessary for Normal Baroreflex Function

13. The Functional Role of PI3K in Maintenance of Blood Pressure and Baroreflex Suppression in (mRen2)27 and mRen2.Lewis Rat

14. Angiotensin-(1-7) Blockade Attenuates Captopril- or Hydralazine-induced Cardiovascular Protection in Spontaneously Hypertensive Rats Treated With NG-nitro-l-Arginine Methyl Ester

15. Nuclear angiotensin-(1–7) receptor is functionally coupled to the formation of nitric oxide

16. Nuclear angiotensin II type 2 (AT2) receptors are functionally linked to nitric oxide production

17. Angiotensin-(1-7) and Baroreflex Function in Nucleus Tractus Solitarii of (mRen2)27 Transgenic Rats

18. Angiotensin metabolism in renal proximal tubules, urine, and serum of sheep: evidence for ACE2-dependent processing of angiotensin II

19. Rats with low brain angiotensinogen do not exhibit insulin resistance during early aging

20. Differential expression of nuclear AT1receptors and angiotensin II within the kidney of the male congenic mRen2.Lewis rat

21. Growth, metabolism, and blood pressure disturbances during aging in transgenic rats with altered brain renin-angiotensin systems

22. Central depletion of angiotensinogen is associated with elevated AT1receptors in the SFO and PVN

23. Angiotensin-(1–7) Reduces Renal Angiotensin II Receptors through a Cyclooxygenase-Dependent Mechanism

24. Downregulation of the AT1AReceptor by Pharmacologic Concentrations of Angiotensin-(1-7)

25. The angiotensin II AT1receptor antagonist irbesartan prevents thromboxane A2-induced vasoconstriction in the rat hind-limb vascular bed in vivo

26. Pathways for angiotensin-(1—7) metabolism in pulmonary and renal tissues

27. Differential actions of renal ischemic injury on the intrarenal angiotensin system

28. Evidence That Prostaglandins Mediate the Antihypertensive Actions of Angiotensin-(1-7) During Chronic Blockade of the Renin-Angiotensin System

29. Abstract 11502: Elevations in Proinflammatory Cytokines Il-1β and Il-12 in the Transgenic (mren2)27 Rat: A Clinically-Relevant Animal Model of Metabolic Syndrome

30. Angiotensin II Receptor Subtypes in the Human Renal Cortex and Renal Cell Carcinoma

31. Interactions of Nonpeptide Angiotensin II Receptor Antagonists at Imidazoline/Guanidinium Receptor Sites in Rat Forebrain

32. Evidence for an intrinsic angiotensin system in the canine pancreas

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