Human Aortic Smcs

Human aortic smooth muscle cells (SMCs) are contractile vascular cells found in the medial layer of the aorta, where they help maintain vessel structure and regulate blood flow. They respond to biochemical and mechanical cues through calcium-dependent actin-myosin contraction, while also shifting between contractile, synthetic, and proliferative states during vascular remodeling. In bioengineering, human aortic SMCs support the development of vascular grafts, tissue-engineered blood vessels, and in vitro models of aortic disease. Their responses to matrix composition, shear-related signals, inflammatory factors, and drugs help researchers evaluate vascular function, disease mechanisms, and biomaterial performance.

Human Aortic Smcs - Related Videos

Research

JoVE Journal - Medicine

Full-root Aortic Valve Replacement by Stentless Aortic Xenografts in Patients with Small Aortic Roots

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Cited by 4 •

2017

Full-root aortic valve replacement by stentless aortic xenograft is a viable option in patients with small aortic roots. We describe, a technique for the full-root implantation of stentless aortic xenografts, with emphasis on the management of the proximal suture line and coronary anastomoses, and discuss its limitations and alternative options.

Quantitative Analysis and Characterization of Atherosclerotic Lesions in the Murine Aortic Sinus

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Cited by 51 •

2013

We describe procedures to quantify and characterize atherosclerotic lesions in mouse models using precision sectioning of the aortic sinus and ascending aorta combined with histochemical and immunohistochemical analysis.

Aortic Ring Assay

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Cited by 42 •

2009

Angiogenesis, the sprouting of blood vessels from pre-existing vasculature, is associated with both natural and pathological processes. Here we demonstrate an aortic ring assay that allows angiogenic potentiators and inhibitors to be directly added to aortic rings in culture. Sprouting and neovessel outgrowth can be determined by inspecting the aortic rings over a period of 6-12 days.

A New Murine Model of Endovascular Aortic Aneurysm Repair

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Cited by 3 •

2013

Histological and biochemical modifications after aneurysm endograft exclusion are still unclear. We describe a new model of endograft implantation on a murine aneurysm. Through thrombus analysis with and without persistant circulating blood stream interface, and new endovascular biomaterials evaluation, this model will help to better understand endovascular aneurysm exclusion pathobiology.

Transverse Aortic Constriction in Mice

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Cited by 263 •

2010

Transverse aortic constriction (TAC) in the mouse is a commonly used experimental model to study mechanisms underlying cardiac hypertrophy and heart failure development. Here, we describe procedures to constrict the aorta to create a reproducible degree of cardiac hypertrophy in mice.

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