Brain microvascular accumulation and distribution of the NOTCH3 ectodomain and granular osmiophilic material in

Yumi Yamamoto1, Lucinda J L Craggs, Atsushi Watanabe

  • 1Centre for Brain Ageing and Vitality, Institute for Ageing and Health, Newcastle University, Campus for Ageing & Vitality, Newcastle upon Tyne, United Kingdom.

Insights

Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) involves granular osmiophilic material (GOM) deposits. NOTCH3 fragments are identified as major components within these GOM deposits in CADASIL patients.

Area of Science:

  • Neuroscience
  • Pathology
  • Genetics

Background:

  • Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is a hereditary small-vessel disease.
  • CADASIL is characterized by the deposition of granular osmiophilic material (GOM) in brain microvasculature.

Purpose of the Study:

  • To investigate the distribution of GOM and NOTCH3 ectodomain (N3ECD) protein in the microvasculature of CADASIL patients.
  • To determine the role of N3ECD in GOM formation and its potential elimination pathways.

Main Methods:

  • Immunohistochemistry and immunogold electron microscopy (EM) were employed.
  • Samples from CADASIL patients, other small-vessel disease patients, and controls were analyzed.
  • Antibodies against N3ECD were used to detect protein localization within GOM deposits.

Main Results:

  • Intense N3ECD immunostaining was observed in CADASIL microvasculature, including arteries and capillaries, but not in controls or other small-vessel diseases.
  • Electron microscopy confirmed widespread extracellular GOM deposits associated with various cerebral vessels.
  • Immunogold EM revealed abundant N3ECD particles within GOM, particularly in microvessels and associated cells.

Conclusions:

  • NOTCH3 fragments are confirmed as major components of GOM deposits in CADASIL.
  • The extensive distribution of N3ECD-GOM complexes suggests their pathological significance in CADASIL.
  • Perivascular routes may be involved in the elimination of these N3ECD-GOM complexes.