Key result
A standardized in vitro angiotensin II receptor-binding assay significantly correlated with in vivo systolic blood pressure changes (r=0.723, P<0.001) following single-dose ARB administration.
Why the study?
Does a standardized in vitro angiotensin II receptor-binding assay accurately reflect in vivo angiotensin II receptor blockade in normotensive subjects?
RCT (n=12)
Double-blind
Does a standardized in vitro angiotensin II receptor-binding assay accurately reflect in vivo angiotensin II receptor blockade in normotensive subjects?
Effect estimate: r = 0.723
p-value: p=<.001
A standardized in vitro angiotensin II receptor-binding assay is a precise and reproducible tool that correlates well with in vivo receptor blockade, offering reduced variability.
Supports in vitro ARB potency screening to reduce variability; confirms in vivo relevance via RCT in normotensives.
An in vitro angiotensin II (AngII) receptor-binding assay was developed to monitor the degree of receptor blockade in standardized conditions. This in vitro method was validated by comparing its results with those obtained in vivo with the injection of exogenous AngII and the measurement of the AngII-induced changes in systolic blood pressure. For this purpose, 12 normotensive subjects were enrolled in a double-blind, four-way cross-over study comparing the AngII receptor blockade induced by a single oral dose of losartan (50 mg), valsartan (80 mg), irbesartan (150 mg), and placebo. A significant linear relationship between the two methods was found (r = 0.723, n = 191, P<.001). However, there exists a wide scatter of the in vivo data in the absence of active AngII receptor blockade. Thus, the relationship between the two methods is markedly improved (r = 0.87, n = 47, P<.001) when only measurements done 4 h after administration of the drugs are considered (maximal antagonist activity observed in vivo) suggesting that the two methods are equally effective in assessing the degree of AT-1 receptor blockade, but with a greatly reduced variability in the in vitro assay. In addition, the pharmacokinetic/pharmacodynamic analysis performed with the three antagonists suggest that the AT-1 receptor-binding assay works as a bioassay that integrates the antagonistic property of all active drug components of the plasma. This standardized in vitro-binding assay represents a simple, reproducible, and precise tool to characterize the pharmacodynamic profile of AngII receptor antagonists in humans.
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Marc Maillard (1999) conducted an RCT in Normotensive (n=12). Angiotensin II receptor antagonists (losartan, valsartan, irbesartan) vs. Placebo was evaluated on Correlation between in vitro AngII receptor-binding assay and in vivo AngII-induced changes in systolic blood pressure (r = 0.723, p=<.001). A standardized in vitro angiotensin II receptor-binding assay significantly correlated with in vivo systolic blood pressure changes (r=0.723, P<0.001) following single-dose ARB administration.
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