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Quantification of white matter cellularity and damage in preclinical and early symptomatic Alzheimer's disease

Qing Wang1, Yong Wang2, Jingxia Liu3

  • 1Mallinckrodt Institute of Radiology, Washington University School of Medicine, St. Louis, MO 63110, USA; Knight Alzheimer's Disease Research Center, 4488 Forest Park, Suite 101, St. Louis, MO 63108, USA.

Neuroimage. Clinical
|March 23, 2019
PubMed

Insights

Neuro-inflammation imaging (NII) detects white matter inflammation earlier than damage in Alzheimer disease (AD). This advanced MRI technique may help track disease progression and therapeutic responses in AD patients.

Area of Science:

  • Neuroimaging
  • Neuropathology
  • Alzheimer Disease Research

Background:

  • Growing interest in white matter (WM) inflammation and damage in Alzheimer disease (AD) pathophysiology.
  • Lack of in vivo magnetic resonance imaging (MRI) techniques for imaging WM inflammation.
  • Development of neuro-inflammation imaging (NII), an advanced diffusion-based MRI method, to address this gap.

Purpose of the Study:

  • To employ NII measures alongside cerebrospinal fluid (CSF) biomarkers to evaluate WM inflammation and damage in AD.
  • To assess the potential of NII in differentiating preclinical and symptomatic AD phases.
  • To investigate the correlation between NII findings and AD biomarkers (Aβ and neurodegeneration).

Main Methods:

  • Utilized NII, a diffusion-based MRI technique, to image and quantify WM inflammation and damage.
  • Classified participants using CSF biomarkers for β-amyloid (Aβ) and neurodegeneration.
  • Evaluated 200 participants in an ongoing memory and aging study.

Main Results:

  • Elevated NII-derived cellular diffusivity (indicating inflammation) observed in both preclinical and early symptomatic AD.
  • WM integrity disruption (decreased FA, increased RD) detected only in the symptomatic phase.
  • Negative correlation found between NII cellular diffusivity and CSF Aβ42, and between NII FA and CSF t-tau.

Conclusions:

  • WM inflammation may precede WM damage in AD pathophysiology.
  • NII can simultaneously image and quantify WM cellularity changes and damage in AD.
  • NII shows promise as a clinically feasible tool for studying WM's role in AD.

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