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November 9, 1999Proceedings of the National Academy of Sciences195 citationsOpen Access

Aminopeptidase A inhibitors as potential central antihypertensive agents

MFMarie Claude Fournié-ZaluskiCDChristelle DavidSZSylvie Zini

Structured PICO

Does central administration of an aminopeptidase A inhibitor reduce blood pressure in rats?

P
Population
Rats (experimental model for brain renin-angiotensin system)
I
Intervention
Intracerebroventricular (ICV) injection of the selective aminopeptidase A (APA) inhibitor EC33 [(S)-3-amino-4-mercaptobutyl sulfonic acid]
C
Comparator
Intravenous (i.v.) injection of EC33, or exogenous AngII alone
O
Outcome
Blood pressure (BP) responsesurrogate

Aminopeptidase A (APA) inhibitors represent a potential central therapeutic target for the development of novel antihypertensive agents by blocking brain AngIII formation.

Abstract

Overactivity of the brain renin-angiotensin system (RAS) has been implicated in the development and maintenance of hypertension in several experimental models, such as spontaneously hypertensive rats and transgenic mice expressing both human renin and human angiotensinogen transgenes. We recently reported that, in the murine brain, angiotensin II (AngII) is converted to angiotensin III (AngIII) by aminopeptidase A (APA), whereas AngIII is inactivated by aminopeptidase N (APN). If injected into cerebral ventricles (ICV), AngII and AngIII cause similar pressor responses. Because AngII is metabolized in vivo into AngIII, the exact nature of the active peptide is not precisely determined. Here we report that, in rats, ICV injection of the selective APA inhibitor EC33 (S)-3-amino-4-mercaptobutyl sulfonic acid blocked the pressor response of exogenous AngII, suggesting that the conversion of AngII to AngIII is required to increase blood pressure (BP). Furthermore, ICV injection, but not i.v. injection, of EC33 alone caused a dose-dependent decrease in BP by blocking the formation of brain but not systemic AngIII. This is corroborated by the fact that the selective APN inhibitor, PC18 (2-amino-4-methylsulfonyl butane thiol), administered alone via the ICV route, increases BP. This pressor response was blocked by prior treatment with the angiotensin type 1 (AT(1)) receptor antagonist, losartan, showing that blocking the action of APN on AngIII metabolism leads to an increase in endogenous AngIII levels, resulting in BP increase, through interaction with AT(1) receptors. These data demonstrate that AngIII is a major effector peptide of the brain RAS, exerting tonic stimulatory control over BP. Thus, APA, the enzyme responsible for the formation of brain AngIII, represents a potential central therapeutic target that justifies the development of APA inhibitors as central antihypertensive agents.

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Cite This Study

Fournié-Zaluski et al. (1999) studied this question.

synapsesocial.com/papers/6a7cec3645586c4d6e9294d6https://doi.org/10.1073/pnas.96.23.13415
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