Dynamic Changes in Brain Mesenchymal Perivascular Cells Associate with Multiple Sclerosis Disease Duration, Active

Ellen Iacobaeus1,2, Rachael V Sugars3, Anton Törnqvist Andrén1

  • 1Division of Clinical Immunology, Department of Laboratory Medicine, Finland.

Insights

Mesenchymal perivascular cells (MPCs) in the brain show altered characteristics in multiple sclerosis (MS) lesions, correlating with disease progression. Targeting these vascular cells may offer new therapeutic avenues for progressive MS.

Area of Science:

  • Neuroscience
  • Immunology
  • Vascular Biology

Background:

  • Vascular changes and blood-brain barrier destabilization are hallmarks of multiple sclerosis (MS) lesions.
  • Mesenchymal stromal cells (MSCs) in adult organs share characteristics with pericytes and reside in blood vessels.

Purpose of the Study:

  • To investigate the presence and characteristics of MSCs/pericytes, termed mesenchymal perivascular cells (MPCs), in brain tissue from individuals with and without MS.
  • To analyze how MPC subpopulations change in different types of MS lesions and disease stages.

Main Methods:

  • Immunohistochemical analysis of post-mortem brain tissue from early progressive MS (EPMS), late-stage progressive MS (LPMS), and healthy controls.
  • Detection of MSC and pericyte markers (CD146, PDGFRβ, CD73, CD271, alpha-smooth muscle actin, Ki67) in MS lesions and normal-appearing white matter.
  • Quantitative analysis of MPC subpopulations within blood vessels and perivascular areas.

Main Results:

  • Two MPC subpopulations (CD146+PDGFRβ+Ki67+ and CD73+CD271+PDGFRβ+Ki67-) were identified in association with brain blood vessels.
  • Active MS lesions showed increased CD146+PDGFRβ+Ki67+ and CD73+CD271+PDGFRβ+Ki67- MPCs compared to inactive lesions.
  • Chronic lesions had reduced CD146+PDGFRβ+Ki67+ MPCs, while LPMS lesions exhibited enlarged CD73+CD271+ MPC areas compared to controls.

Conclusions:

  • Mesenchymal perivascular cells (MPCs) are present in healthy human brain vasculature and exhibit altered phenotypes in MS.
  • These phenotypic changes in MPCs correlate with MS lesion activity, inflammation, demyelination, and disease duration.
  • Brain-derived MPCs respond to MS pathology, suggesting that vessel-targeted therapies could be beneficial for progressive MS patients.