Differences in the Thoracic Aorta by Region and Sex in a Murine Model of Marfan Syndrome

Francesc Jiménez-Altayó1, Anna-Maria Siegert2,3, Fabio Bonorino2

  • 1Departament de Farmacologia, de Terapèutica i de Toxicologia, Institut de Neurociències, Facultat de Medicina, Universitat Autònoma de Barcelona, Bellaterra, Spain.

Frontiers in Physiology
|December 1, 2017
PubMed

Insights

Marfan syndrome (MFS) causes aortic aneurysm. This study found regional and sex differences in MFS mouse aortas, with males showing more severe aortic injuries, supporting higher risk in male patients.

Area of Science:

  • Cardiovascular Research
  • Genetics and Heritable Diseases
  • Connective Tissue Disorders

Background:

  • Marfan syndrome (MFS) is a hereditary connective tissue disorder leading to life-threatening aortic aneurysms, primarily affecting the aortic root and ascending aorta.
  • Epidemiological data suggest men with MFS face higher aortic complication risks than women, but experimental evidence is lacking.
  • Understanding regional and sex-based differences in thoracic aorta function is crucial for MFS management.

Purpose of the Study:

  • To investigate regional and sex-specific differences in thoracic aorta function in a mouse model of Marfan syndrome (MFS).
  • To explore the impact of the fibrillin-1 (Fbn1) missense mutation (Fbn1C1039G/+) on ascending and descending thoracic aorta reactivity.
  • To provide experimental evidence for the hypothesis of increased aortic complication risk in male MFS patients.

Main Methods:

  • Wire myography was used to assess ascending and descending thoracic aorta reactivity in Fbn1C1039G/+ mice.
  • Quantitative real-time PCR (qRT-PCR) and Western blotting analyzed mRNA and protein levels.
  • Verhoeff-Van Gieson staining evaluated elastic fiber integrity; specific inhibitors (indomethacin, L-NAME) were employed.

Main Results:

  • MFS altered thoracic aorta reactivity, increasing phenylephrine contractions in the ascending aorta and decreasing them in the descending aorta.
  • Male MFS mice showed progressive increases in ascending aorta contractions with age, unlike females, and exhibited more elastic fiber breaks.
  • Enhanced phenylephrine contractions in males were linked to increased cyclooxygenase-2 (COX-2) expression and prevented by indomethacin; nitric oxide synthase (NOS) pathways were implicated in both sexes.

Conclusions:

  • Significant regional and sex-based differences exist in thoracic aorta contractility and injury in the Fbn1C1039G/+ mouse model.
  • Male MFS mice displayed more pronounced aortic alterations, including increased elastic fiber breaks and contractility changes, compared to females.
  • These findings provide experimental support for the clinical observation of a higher risk of aortic complications in male Marfan syndrome patients.