Dopamine-resistant gait and postural dysfunctions represent a critical unmet need in Parkinson disease (PD). Evidence is accumulating that cholinergic system dysfunction contributes significantly to gait and balance impairment. The cholinergic system is implicated in mobility functions in PD because of loss of cholinergic basal forebrain (BF) neurons directing attention and degeneration of cholinergic neurons in the pedunculopontine nucleus (PPN) complex. Although mobility functions require intrinsic coupling between locomotor and postural functions, our work points to dissociable and additive motor deficits characterized by specific associations with BF vs. PPN cholinergic degenerations. Our recent work shows that slowing of gait speed appears to be a good correlate of BF cholinergic degeneration in patients with mild to moderate PD. We have also data suggesting that cholinergic thalamic denervation, reflecting PPN cholinergic afferent degeneration, is associated with falls and postural dysfunction in PD. These results implicate PPN degeneration as a significant mechanistic factor contributing to impaired postural control in PD. Progressive mobility impairments likely reflect cumulative effects of multisystem degenerations in PD. The goal of this project is to study the different contributions of cholinergic projection system degenerations to PD gait and postural dysfunctions. Together with the other Projects in this Udall Center proposal, this study will contribute to testing of the 3-Hit model of gait and balance dysfunction in PD (detailed in """"""""Overview""""""""). This model posits that serial degeneration of nigrostriatal (first hit) and BF/PPN cholinergic systems (second and third hits, resp.) are responsible for the typically inexorable progression of dopamine-resistant gait and postural dysfunction in PD. We hypothesize that BF and PPN deficits contribute to dissociable and additive components of PD gait and postural dysfunction. Our center developed a novel vesicular acetylcholine transporter (VAChT) PET ligand, fluoroethoxy-benzovesamicol ([18F]FEOBV), which enables a more accurate assessment of cholinergic nerve terminal integrity compared to previously used cholinesterase-based ligands. Most notably, [18F]FEOBV will allow quantitative assessment of cholinergic terminals in the cerebellar vermis, which originates in the PPN. The spinocerebellum is important in the regulation of postural control through the processing of propioceptive information. Identification of pathway specific deficits may lead to novel therapeutic targets for treatment of gait and balance disorders in PD. This proposal is directly responsive to the NINDS PD 2014 Research Report """"""""highest priority recommendations"""""""" including 1) developing biomarkers for dopa-resistant features of PD, in particular gait and balance problems (Clinical Rec. #2);2) characterizing mechanisms that underlie the heterogeneity in clinical presentation and rates of PD progression (Clinical Rec. #3);and 3) development of patient stratification tools to define more homogenous cohorts of PD subjects (Translational Rec. #1).

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Specialized Center (P50)
Project #
1P50NS091856-01
Application #
8882621
Study Section
Special Emphasis Panel (ZNS1-SRB-J (07))
Project Start
Project End
Budget Start
2014-09-30
Budget End
2015-06-30
Support Year
1
Fiscal Year
2014
Total Cost
$573,123
Indirect Cost
$204,555
Name
University of Michigan Ann Arbor
Department
Type
DUNS #
073133571
City
Ann Arbor
State
MI
Country
United States
Zip Code
48109
Bohnen, Nicolaas I; Kanel, Prabesh; Müller, Martijn L T M (2018) Molecular Imaging of the Cholinergic System in Parkinson's Disease. Int Rev Neurobiol 141:211-250
Rektor, Ivan; Bohnen, Nicolaas I; Korczyn, Amos D et al. (2018) An updated diagnostic approach to subtype definition of vascular parkinsonism - Recommendations from an expert working group. Parkinsonism Relat Disord 49:9-16
Marino, Simeone; Xu, Jiachen; Zhao, Yi et al. (2018) Controlled feature selection and compressive big data analytics: Applications to biomedical and health studies. PLoS One 13:e0202674
Albin, Roger L (2018) Tourette syndrome: a disorder of the social decision-making network. Brain 141:332-347
Rektor, Ivan; Bohnen, Nicolaas I; Korczyn, Amos D (2018) Subtype definition of vascular parkinsonism. Parkinsonism Relat Disord 52:107-108
Dinov, Ivo D; Palanimalai, Selvam; Khare, Ashwini et al. (2018) Randomization-Based Statistical Inference: A Resampling and Simulation Infrastructure. Teach Stat 40:64-73
Antoniou, Nasia; Vlachakis, Dimitrios; Memou, Anna et al. (2018) A motif within the armadillo repeat of Parkinson's-linked LRRK2 interacts with FADD to hijack the extrinsic death pathway. Sci Rep 8:3455
Bohnen, Nicolaas I; Muller, Martijn (2018) Reader response: Odor identification as a biomarker of preclinical AD in older adults at risk. Neurology 90:343
Sarter, Martin; Phillips, Kyra B (2018) The neuroscience of cognitive-motivational styles: Sign- and goal-trackers as animal models. Behav Neurosci 132:1-12
Kim, Kamin; Bohnen, Nicolaas I; Müller, Martijn L T M et al. (2018) Compensatory dopaminergic-cholinergic interactions in conflict processing: Evidence from patients with Parkinson's disease. Neuroimage :

Showing the most recent 10 out of 100 publications