Morphometric analysis of ultrastructural vascular changes in CADASIL: analysis of 50 skin biopsy specimens and

Peggy Brulin1, Catherine Godfraind, Emmanuelle Leteurtre

  • 1EA 2691 MENRT, Faculté de Médecine de Lille, 59037 Lille, France.

Acta Neuropathologica
|August 13, 2002
PubMed

Insights

Skin biopsies reveal vascular smooth muscle cell destruction in Cerebral Autosomal Dominant Arteriopathy with Subcortical Infarcts and Leukoencephalopathy (CADASIL), suggesting arteriolar hypotonicity as a key disease mechanism. This finding aids CADASIL diagnosis and therapeutic monitoring.

Area of Science:

  • Neurology
  • Vascular Biology
  • Genetics

Background:

  • Cerebral Autosomal Dominant Arteriopathy with Subcortical Infarcts and Leukoencephalopathy (CADASIL) is a genetic vascular disorder linked to Notch 3 mutations.
  • Characteristic granular osmiophilic material (GOM) surrounds vascular smooth muscle cells in CADASIL.
  • Skin biopsy was previously proposed for CADASIL diagnosis and family screening.

Purpose of the Study:

  • To analyze skin biopsy findings in CADASIL patients.
  • To compare skin vessel morphology with brain arterioles.
  • To elucidate the pathogenetic mechanisms of CADASIL.

Main Methods:

  • Morphometric analysis of skin vessel morphology using electron microscopy.
  • Systematic measurements of vessel diameters, cell areas, wall area, and extracellular matrix.
  • Comparison of 50 CADASIL patient skin biopsies with 20 normal controls.

Main Results:

  • CADASIL skin vessels showed marked smooth muscle cell destruction and reduced extracellular matrix, leading to vessel wall weakness.
  • Absence of significant stenosis was noted.
  • Similar vascular changes were observed in brain arterioles of CADASIL patients.

Conclusions:

  • Arteriolar hypotonicity may be a crucial pathogenetic mechanism in CADASIL.
  • Smooth muscle cell destruction can lead to decreased VEGF, altered vascular permeability, and hemodynamic issues.
  • Skin vessel morphology correlates with brain arteriolar changes, supporting its use in understanding CADASIL pathogenesis and evaluating therapeutic effectiveness.

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