Key result
Angiotensin II infusion in wild-type mice caused a dramatic loss of aortic energy storage within 2 weeks that persisted for at least 4 weeks due to excessive adventitial collagen accumulation.
Why the study?
Does angiotensin II infusion cause early aortic maladaptation and stiffening in wild-type mice?
Does angiotensin II infusion cause early aortic maladaptation and stiffening in wild-type mice?
Arterial stiffening in hypertension may be driven by inflammatory adventitial collagen accumulation rather than just intimal-medial thickening, suggesting a need to target inflammation and adventitial remodeling.
Adventitial collagen may drive early aortic stiffening in hypertension; hypothesis-generating and requires human validation before targeting.
The primary function of central arteries is to store elastic energy during systole and to use it to sustain blood flow during diastole. Arterial stiffening compromises this normal mechanical function and adversely affects end organs, such as the brain, heart, and kidneys. Using an angiotensin II infusion model of hypertension in wild-type mice, we show that the thoracic aorta exhibits a dramatic loss of energy storage within 2 weeks that persists for at least 4 weeks. This diminished mechanical functionality results from increased structural stiffening as a result of an excessive accumulation of adventitial collagen, not a change in the intrinsic stiffness of the wall. A detailed analysis of the transmural biaxial wall stress suggests that the exuberant production of collagen results more from an inflammatory response than from a mechano-adaptation, hence reinforcing the need to control inflammation, not just blood pressure. Although most clinical assessments of arterial stiffening focus on intimal-medial thickening, these results suggest a need to measure and control the highly active and important adventitia.
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Bersi et al. (2016) studied Hypertension. Angiotensin II infusion was evaluated on Aortic energy storage and structural stiffening. Angiotensin II infusion in wild-type mice caused a dramatic loss of aortic energy storage within 2 weeks that persisted for at least 4 weeks due to excessive adventitial collagen accumulation.
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