Key result
Targeted disruption of angiotensinogen or renin genes in mice caused anemia with a 30% reduction in hematocrit levels compared to wild-type mice, an effect that was rescued by Ang II infusion via AT1 receptors.
Effect estimate: 30% reduction
Absolute Event Rate: 31.87% vs 44.46%
p-value: p=<0.0001
This preclinical study provides genetic and pharmacological evidence that the AT1 receptor regulates both erythropoiesis and blood pressure through distinct pathways, providing a mechanistic basis for the clinical observation of anemia associated with renin-angiotensin system inhibition.
Preclinical findings suggest possible anemia risk with RAS inhibition; leaves open whether AT1 erythropoiesis effects apply in humans.
The renin-angiotensin system (RAS) plays a central role in blood pressure regulation. Although clinical and experimental studies have suggested that inhibition of RAS is associated with progression of anemia, little evidence is available to support this claim. Here we report that knockout mice that lack angiotensin II, including angiotensinogen and renin knockout mice, exhibit anemia. The anemia of angiotensinogen knockout mice was rescued by angiotensin II infusion, and rescue was completely blocked by simultaneous administration of AT1 receptor blocker. To genetically determine the responsible receptor subtype, we examined AT1a, AT1b, and AT2 knockout mice, but did not observe anemia in any of them. To investigate whether pharmacological AT1 receptor inhibition recapitulates the anemic phenotype, we administered AT1 receptor antagonist in hypotensive AT1a receptor knockout mice to inhibit the remaining AT1b receptor. In these animals, hematocrit levels barely decreased, but blood pressure further decreased to the level observed in angiotensinogen knockout mice. We then generated AT1a and AT1b double-knockout mice to completely ablate the AT1 receptors; the mice finally exhibited the anemic phenotype. These results provide clear evidence that although erythropoiesis and blood pressure are negatively controlled through the AT1 receptor inhibition in vivo, the pathways involved are complex and distinct, because erythropoiesis is more resistant to AT1 receptor inhibition than blood pressure control.
No takes yet. Share an insight, caveat, or question.
Kato et al. (2015) studied Anemia and Hypotension. Targeted disruption of angiotensinogen or renin gene vs. Wild-type (WT) mice was evaluated on Hematocrit level (30% reduction, p=<0.0001). Targeted disruption of angiotensinogen or renin genes in mice caused anemia with a 30% reduction in hematocrit levels compared to wild-type mice, an effect that was rescued by Ang II infusion via AT1 receptors.
Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context: