In vivo Magnetization Transfer MRI Shows Dysmyelination in an Ischemic Mouse Model of Periventricular Leukomalacia

Author:

Fatemi Ali123,Wilson Mary Ann124,Phillips Andre W12,McMahon Michael T15,Zhang Jiangyang5,Smith Seth A67,Arauz Edwin J1,Falahati Sina12,Gummadavelli Abhijeet1,Bodagala Hima18,Mori Susumu15,Johnston Michael V123

Affiliation:

1. Hugo W. Moser Research Institute at Kennedy Krieger, Baltimore, Maryland, USA

2. Department of Neurology, Johns Hopkins University, Baltimore, Maryland, USA

3. Department of Pediatrics, Johns Hopkins University, Baltimore, Maryland, USA

4. Department of Neuroscience, Johns Hopkins University, Baltimore, Maryland, USA

5. The Russel H. Morgan Department of Radiology and Radiological Sciences, Johns Hopkins University, Baltimore, Maryland, USA

6. Department of Radiology and Radiological Sciences, Vanderbilt University, Nashville, Tennessee, USA

7. Department of Biomedical Engineering, Vanderbilt University, Nashville, Tennessee, USA

8. College of Medicine, American University of Antigua, New York, New York, USA

Abstract

Periventricular leukomalacia, PVL, is the leading cause of cerebral palsy in prematurely born infants, and therefore more effective interventions are required. The objective of this study was to develop an ischemic injury model of PVL in mice and to determine the feasibility of in vivo magnetization transfer (MT) magnetic resonance imaging (MRI) as a potential monitoring tool for the evaluation of disease severity and experimental therapeutics. Neonatal CD-1 mice underwent unilateral carotid artery ligation on postnatal day 5 (P5); at P60, in vivo T2-weighted (T2w) and MT-MRI were performed and correlated with postmortem histopathology. In vivo T2w MRI showed thinning of the right corpus callosum, but no significant changes in hippocampal and hemispheric volumes. Magnetization transfer MRI revealed significant white matter abnormalities in the bilateral corpus callosum and internal capsule. These quantitative MT-MRI changes correlated highly with postmortem findings of reduced myelin basic protein in bilateral white matter tracts. Ventriculomegaly and persistent astrogliosis were observed on the ligated side, along with evidence of axonopathy and fewer oligodendrocytes in the corpus callosum. We present an ischemia-induced mouse model of PVL, which has pathologic abnormalities resembling autopsy reports in infants with PVL. We further validate in vivo MRI techniques as quantitative monitoring tools that highly correlate with postmortem histopathology.

Publisher

SAGE Publications

Subject

Cardiology and Cardiovascular Medicine,Neurology (clinical),Neurology

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