Longitudinal Assessments of Normal and Perilesional Tissues in Focal Brain Ischemia and Partial Optic Nerve Injury with Manganese-enhanced MRI
Authors
Affiliations
Although manganese (Mn) can enhance brain tissues for improving magnetic resonance imaging (MRI) assessments, the underlying neural mechanisms of Mn detection remain unclear. In this study, we used Mn-enhanced MRI to test the hypothesis that different Mn entry routes and spatiotemporal Mn distributions can reflect different mechanisms of neural circuitry and neurodegeneration in normal and injured brains. Upon systemic administration, exogenous Mn exhibited varying transport rates and continuous redistribution across healthy rodent brain nuclei over a 2-week timeframe, whereas in rodents following photothrombotic cortical injury, transient middle cerebral artery occlusion, or neonatal hypoxic-ischemic brain injury, Mn preferentially accumulated in perilesional tissues expressing gliosis or oxidative stress within days. Intravitreal Mn administration to healthy rodents not only allowed tracing of primary visual pathways, but also enhanced the hippocampus and medial amygdala within a day, whereas partial transection of the optic nerve led to MRI detection of degrading anterograde Mn transport at the primary injury site and the perilesional tissues secondarily over 6 weeks. Taken together, our results indicate the different Mn transport dynamics across widespread projections in normal and diseased brains. Particularly, perilesional brain tissues may attract abnormal Mn accumulation and gradually reduce anterograde Mn transport via specific Mn entry routes.
Komatsu C, Van der Merwe Y, He L, Kasi A, Sims J, Miller M J Neurosci Methods. 2022; 372:109534.
PMID: 35202613 PMC: 8940646. DOI: 10.1016/j.jneumeth.2022.109534.
Tanihira H, Fujiwara T, Kikuta S, Homma N, Osanai M Front Neural Circuits. 2022; 15:787692.
PMID: 34987361 PMC: 8722453. DOI: 10.3389/fncir.2021.787692.
Kumamoto T, Tsurugizawa T Int J Mol Sci. 2021; 22(19).
PMID: 34638653 PMC: 8508625. DOI: 10.3390/ijms221910312.
In vivo MRI evaluation of early postnatal development in normal and impaired rat eyes.
Au J, Kancherla S, Hamade M, Mendoza M, Chan K Sci Rep. 2021; 11(1):15513.
PMID: 34330952 PMC: 8324881. DOI: 10.1038/s41598-021-93991-2.
Cholinergic nervous system and glaucoma: From basic science to clinical applications.
Faiq M, Wollstein G, Schuman J, Chan K Prog Retin Eye Res. 2019; 72:100767.
PMID: 31242454 PMC: 6739176. DOI: 10.1016/j.preteyeres.2019.06.003.