Literature DB >> 21730037

Mechanical assessment of elastin integrity in fibrillin-1-deficient carotid arteries: implications for Marfan syndrome.

Jacopo Ferruzzi1, Melissa J Collins, Alvin T Yeh, Jay D Humphrey.   

Abstract

AIMS: Elastin is the primary component of elastic fibres in arteries, which contribute significantly to the structural integrity of the wall. Fibrillin-1 is a microfibrillar glycoprotein that appears to stabilize elastic fibres mechanically and thereby to delay a fatigue-induced loss of function due to long-term repetitive loading. Whereas prior studies have addressed some aspects of ageing-related changes in the overall mechanical properties of arteries in mouse models of Marfan syndrome, we sought to assess for the first time the load-carrying capability of the elastic fibres early in maturity, prior to the development of ageing-related effects, dilatation, or dissection. METHODS AND
RESULTS: We used elastase to degrade elastin in common carotid arteries excised, at 7-9 weeks of age, from a mouse model (mgR/mgR) of Marfan syndrome that expresses fibrillin-1 at 15-25% of normal levels. In vitro biaxial mechanical tests performed before and after exposure to elastase suggested that the elastic fibres exhibited a nearly normal load-bearing capability. Observations from nonlinear optical microscopy suggested further that competent elastic fibres not only contribute to load-bearing, they also increase the undulation of collagen fibres, which endows the normal arterial wall with a more compliant response to pressurization.
CONCLUSION: These findings support the hypothesis that it is an accelerated fatigue-induced damage to or protease-related degradation of initially competent elastic fibres that render arteries in Marfan syndrome increasingly susceptible to dilatation, dissection, and rupture.

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Year:  2011        PMID: 21730037      PMCID: PMC3193833          DOI: 10.1093/cvr/cvr195

Source DB:  PubMed          Journal:  Cardiovasc Res        ISSN: 0008-6363            Impact factor:   10.787


  31 in total

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Authors:  Satyajit K Karnik; Benjamin S Brooke; Antonio Bayes-Genis; Lise Sorensen; Joshua D Wythe; Robert S Schwartz; Mark T Keating; Dean Y Li
Journal:  Development       Date:  2003-01       Impact factor: 6.868

2.  A multiaxial computer-controlled organ culture and biomechanical device for mouse carotid arteries.

Authors:  R L Gleason; S P Gray; E Wilson; J D Humphrey
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Review 3.  The Marfan syndrome.

Authors:  R E Pyeritz
Journal:  Annu Rev Med       Date:  2000       Impact factor: 13.739

4.  Pathogenetic sequence for aneurysm revealed in mice underexpressing fibrillin-1.

Authors:  L Pereira; S Y Lee; B Gayraud; K Andrikopoulos; S D Shapiro; T Bunton; N J Biery; H C Dietz; L Y Sakai; F Ramirez
Journal:  Proc Natl Acad Sci U S A       Date:  1999-03-30       Impact factor: 11.205

5.  Elastolytic and collagenolytic studies of arteries. Implications for the mechanical properties of aneurysms.

Authors:  P B Dobrin; W H Baker; W C Gley
Journal:  Arch Surg       Date:  1984-04

6.  Central pulse pressure is a major determinant of ascending aorta dilation in Marfan syndrome.

Authors:  G Jondeau; P Boutouyrie; P Lacolley; B Laloux; O Dubourg; J P Bourdarias; S Laurent
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Review 7.  Mouse models of genetic diseases resulting from mutations in elastic fiber proteins.

Authors:  H C Dietz; R P Mecham
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8.  Role of elastin in spontaneously hypertensive rat small mesenteric artery remodelling.

Authors:  Ana M Briones; José M González; Beatriz Somoza; Jesús Giraldo; Craig J Daly; Elisabet Vila; M Carmen González; John C McGrath; Silvia M Arribas
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9.  Quantification of alterations in structure and function of elastin in the arterial media.

Authors:  A Avolio; D Jones; M Tafazzoli-Shadpour
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Review 10.  Elastic fibres.

Authors:  Cay M Kielty; Michael J Sherratt; C Adrian Shuttleworth
Journal:  J Cell Sci       Date:  2002-07-15       Impact factor: 5.285

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4.  Contribution of collagen fiber undulation to regional biomechanical properties along porcine thoracic aorta.

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5.  Compromised mechanical homeostasis in arterial aging and associated cardiovascular consequences.

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6.  Loss of Elastic Fiber Integrity Compromises Common Carotid Artery Function: Implications for Vascular Aging.

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Journal:  Artery Res       Date:  2016-04-22       Impact factor: 0.597

7.  Targeted Gold Nanoparticles as an Indicator of Mechanical Damage in an Elastase Model of Aortic Aneurysm.

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8.  Smooth Muscle Cell Reprogramming in Aortic Aneurysms.

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9.  Quantification of regional differences in aortic stiffness in the aging human.

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10.  Effects of elastase digestion on the murine vaginal wall biaxial mechanical response.

Authors:  Akinjide Akintunde; Kathryn M Robison; Daniel Capone; Laurephile Desrosiers; Leise R Knoepp; Kristin S Miller
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