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1. Haemorrhage increases the pressor effect of angiotensin-(1–7) but not of angiotensin II at the rat rostral ventrolateral medulla

2. Potentiation of the hypotensive effect of bradykinin by angiotensin-(1–7)-related peptides

3. Diuresis and natriuresis produced by long term administration of a selective Angiotensin-(1–7) antagonist in normotensive and hypertensive rats

4. Role of Angiotensin-(1-7) in the Modulation of the Baroreflex in Renovascular Hypertensive Rats

5. Cardiovascular effects produced by microinjection of angiotensins and angiotensin antagonists into the ventrolateral medulla of freely moving rats

6. Changes in the Baroreflex Control of Heart Rate Produced by Central Infusion of Selective Angiotensin Antagonists in Hypertensive Rats

7. Evidence for a Physiological Role of Angiotensin-(1-7) in the Control of Hydroelectrolyte Balance

8. Angiotensin-(1-7) Potentiates the Hypotensive Effect of Bradykinin in Conscious Rats

9. Metabolism of angiotensin I in isolated rat hearts

10. Losartan, nonpeptide angiotensin II-type 1 (AT1) receptor antagonist, attenuates pressor and sympathoexcitatory responses evoked by angiotensin II andL-glutamate in rostral ventrolateral medulla

11. Evidence that angiotensin-(1–7) plays a role in the central control of blood pressure at the ventro-lateral medulla acting through specific receptors

12. Cardiovascular effects produced by micro-injection of angiotensin-(1–7) on vasopressor and vasodepressor sites of the ventrolateral medulla

13. Effects of angiotensin II and its selective antagonists on inferior olivary neurones

14. Identification and regulation of angiotensin II receptor subtypes on NG108-15 cells

15. Characterization of angiotensin receptors mediating prostaglandin synthesis in C6 glioma cells

16. The Nonpeptide Angiotensin II Antagonist DuP 753 Is a Potent Stimulus for Prostacyclin Synthesis

17. Angiotensin-(1-7). A member of circulating angiotensin peptides

18. Differential Signal Transduction Efficacy and Biological Activity of Triprolyl and Pentasarcosyl Angiotensin II In Adrenal Cortex and Vascular Smooth Muscle

19. Angiotensins and the failing heart. Enhanced positive inotropic response to angiotensin I in cardiomyopathic hamster heart in the presence of captopril

20. Angiotensin-[1-7]

21. Pressor action of angiotensin I at the ventrolateral medulla: effect of selective angiotensin blockade

22. [7-D-ALA]-angiotensin-(1–7): Selective antagonism of angiotensin-(1–7) in the rat paraventricular nucleus

23. Angiotensin-(1-7) regulates the levels of angiotensin II receptor subtype AT1 mRNA differentially in a strain-specific fashion

24. [7-D-ALA]-angiotensin 1-7 blocks renal actions of angiotensin 1-7 in the anesthetized rat

25. Characterization of a new angiotensin antagonist selective for angiotensin-(1-7): evidence that the actions of angiotensin-(1-7) are mediated by specific angiotensin receptors

26. Plasma angiotensin(1-7) immunoreactivity is increased by salt load, water deprivation, and hemorrhage

27. Role of nitric oxide and angiotensin II in the regulation of sympathetic nerve activity in spontaneously hypertensive rats

28. Differential responses to angiotensin-(1-7) in the feline mesenteric and hindquarters vascular beds

29. Effects of angiotensin analogues and angiotensin receptor antagonists on paraventricular neurones

30. Stimulation of endothelial cell prostaglandin production by angiotensin peptides. Characterization of receptors

31. Subtype 2 angiotensin receptors mediate prostaglandin synthesis in human astrocytes

32. Biological activity of angiotensin-(1-7) heptapeptide in the hamster heart

33. Differential Effects of Asp1-Angiotensin II and Sar1-Angiotensin II on Vascular and Adrenal Receptors in the Dog

34. Biological activity of des-(Asp1, Arg2, Val3)-angiotensin II in man

35. No Substrate Specificity of Converting Enzyme for N-Terminal Substituted Angiotensin I in Man

36. Agonistic activities of isoleucine8-angiotensin II in man

37. Evidence for extracellular, but not intracellular, generation of angiotensin II in the rat adrenal zona glomerulosa

38. Evidence for the existence of a family of biologically active angiotensin I-like peptides in the dog central nervous system

39. A Hypothesis Regarding the Function of Angiotensin Peptides in the Brain

40. The renin-angiotensin system and treatment of heart failure

41. Biological activity of des-asp-,des-arg-angiotensin II in man

42. Radioimmunoassay of fowl angiotensin I

43. RENIN-ANGIOTENSIN MEDIATION OF ADRENAL CATECHOLAMINE SECRETION INDUCED BY HYPOGLYCAEMIA IN THE CAT

44. Comparative Biochemistry of Renins and Angiotensins in the Vertebrates

45. Pressor activity of angiotensin II-(2-7)-hexapeptide in man

46. Biological Activity of Angiotensin II-(4-8)-Pentapeptide in Man

47. Influence of the adrenal gland on the pressor effect and antagonistic potency of angiotensin II analogs

48. The use of the superfusion approach with rat adrenal capsular cells to compare the steroidogenic potencies of angiotensin analogues, without the effects of peptide degradation

49. Synthesis of angiotensin II analogues by incorporating beta-homotyrosine or beta-homoisoleucine residues

50. Localization of angiotensin receptors in the canine CNS

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