In Vivo Phenotypic Vascular Dysfunction Extends Beyond the Aorta in a Mouse Model for Fibrillin-1 ( FBN1 ) Mutation

Insights

Marfan syndrome (MFS) caused by FBN1 mutations accelerates vascular aging, particularly in males. This study reveals sex-dependent changes in central and cerebral arteries, mimicking natural aging in MFS mice.

Area of Science:

  • Cardiovascular Biology
  • Genetics
  • Vascular Biology

Background:

  • Marfan syndrome (MFS), caused by fibrillin-1 gene (FBN1) mutations, leads to vascular dysfunction and aortic aneurysms.
  • The MFS mouse model exhibits accelerated aging in elastic organs, but sex-specific vascular impacts remain unclear.

Approach:

  • Investigated sex-dependent alterations in central and cerebral vascular function in 6-month-old male and female MFS and control mice.
  • Utilized in vivo ultrasound imaging and compared findings with sex-matched 12-month-old healthy controls.

Key Points:

  • MFS mice showed aortic enlargement and stiffness, more pronounced in males.
  • Male MFS mice exhibited reduced posterior cerebral artery blood flow velocity compared to controls.
  • Reduced mitral valve velocities and left ventricular hypertrophy were observed in MFS mice, highlighting sex-specific effects.

Conclusions:

  • FBN1 mutations contribute to sex-dependent vascular dysfunction in MFS.
  • MFS mice display a premature vascular aging phenotype, with males showing exacerbated effects.
  • Biological sex is a critical factor in understanding MFS vascular pathology.

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