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TOPICAL COLLECTIONS

Chemically Induced Murine Abdominal Aortic Aneurysm Models

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Guizhen Zhao

Guizhen Zhao

University of Michigan Medical Center, Department of Internal Medicine, Ann Arbor, MI, USA

<p>Dr. Guizhen Zhao received her BS in Basic Science from Peking University in 2014. She earned her PhD in Physiology from Peking University in 2018. Her PhD studies focused on elucidating the molecular mechanism underlying vascular smooth muscle cell (VSMC) phenotypic modulation and its contribution to abdominal aortic aneurysm (AAA).&nbsp; She is currently a postdoctoral fellow in the Department of Internal Medicine at University of Michigan Medical Center working in the laboratory of Dr. Eugene Chen. There her research focuses on using the animal models to investigate the underlying mechanisms of vascular biological and metabolic regulations driven by epigenetic modulations in cardiovascular diseases, such as aortic aneurysm and atherosclerosis.</p>

Collection Overview

Abdominal aortic aneurysm (AAA) is a severe aortic disease due to the increasing prevalence and high mortality rate. To date, no effective pharmacological treatment for AAA is available, likely due to limited understanding of the primary underlying mechanisms of AAA development and progression. Many AAA mouse models have been developed to aid investigation of pathophysiologic mechanisms underlying human AAA. Most of mouse AAA models are evoked by genetic manipulation, chemical induction, or both. Currently, chemically induced mouse AAA approaches include the subcutaneous infusion of angiotensin II (AngII), the peri-adventitial application of elastase, the intraluminal infusion of elastase and the periaortic incubation of calcium phosphate.

Although no AAA model perfectly reflects all the human AAA features, including medial layer destruction, chronic inflammation, intraluminal thrombus, neoangiogenesis and aneurysm rupture, each model has its advantages and drawbacks. The diversity in localization, appearance and mechanism allows the investigators to focus on specific mechanism involved in human AAA. This aim of this collection is to demonstrate the standardized protocols for each chemically induced AAA mouse model, provide broader access to the existing models, and facilitate the precise selection of the AAA model to explore the sophisticated mechanisms of AAA formation.

Articles

Mouse Abdominal Aortic Aneurysm Model Induced by Perivascular Application of Elastase
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Mouse Abdominal Aortic Aneurysm Model Induced by Perivascular Application of Elastase

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Cited by 17

2022

Abstracts

<p>Induction of a PCSK9 Gain-of-function Mutation Augments Angiotensin II-induced Abdominal Aortic Aneurysms in C57BL/6J Mice</p>

Hong Lu*1,

Alan Daugherty*1,

Hisashi Sawada1

1Saha Cardiovascular Research Center, University of Kentucky

Angiotensin II–Induced Abdominal Aortic Aneurysm Model in Mice with Extended Infusion for Disease Progression

Yasir Alsiraj*1

1College of Medicine, University of Kentucky

Isolation and Culture of Primary Murine Aortic Smooth Muscle Cells for In Vitro Mechanistic Studies Relevant to Aortic Aneurysm Research

Yasir Alsiraj*1

1College of Medicine, University of Kentucky