Brain-first versus body-first Parkinson’s disease: a multimodal imaging case-control study
2020/07/01 by Jacob Horsager, Katrine B. Andersen, Katrine B Andersen +23 · 40 citations
Medicine · Neuroscience · #Parkinson's Disease Mechanisms and Treatments #Neurological disorders and treatments #Genetic Neurodegenerative Diseases
paper · doi:10.1093/brain/awaa238
Abstract
Parkinson's disease is characterized by the presence of abnormal, intraneuronal α-synuclein aggregates, which may propagate from cell-to-cell in a prion-like manner. However, it remains uncertain where the initial α-synuclein aggregates originate. We have hypothesized that Parkinson's disease comprises two subtypes. A brain-first (top-down) type, where α-synuclein pathology initially arises in the brain with secondary spreading to the peripheral autonomic nervous system; and a body-first (bottom-up) type, where the pathology originates in the enteric or peripheral autonomic nervous system and then spreads to the brain. We also hypothesized that isolated REM sleep behaviour disorder (iRBD) is a prodromal phenotype for the body-first type. Using multimodal imaging, we tested the hypothesis by quantifying neuronal dysfunction in structures corresponding to Braak stages I, II and III involvement in three distinct patient groups. We included 37 consecutive de novo patients with Parkinson's disease into this case-control PET study. Patients with Parkinson's disease were divided into 24 RBD-negative (PDRBD-) and 13 RBD-positive cases (PDRBD+) and a comparator group of 22 iRBD patients. We used 11C-donepezil PET/CT to assess cholinergic (parasympathetic) innervation, 123I-metaiodobenzylguanidine (MIBG) scintigraphy to measure cardiac sympathetic innervation, neuromelanin-sensitive MRI to measure the integrity of locus coeruleus pigmented neurons, and 18F-dihydroxyphenylalanine (FDOPA) PET to assess putaminal dopamine storage capacity. Colon volume and transit times were assessed with CT scans and radiopaque markers. Imaging data from the three groups were interrogated with ANOVA and Kruskal-Wallis tests corrected for multiple comparisons. The PDRBD- and PDRBD+ groups showed similar marked reductions in putaminal FDOPA-specific uptake, whereas two-thirds of iRBD patients had normal scans (P < 10-13, ANOVA). When compared to the PDRBD- patients, the PDRBD+ and iRBD patients showed reduced mean MIBG heart:mediastinum ratios (P < 10-5, ANOVA) and colon 11C-donepezil standard uptake values (P = 0.008, ANOVA). The PDRBD+ group trended towards a reduced mean MRI locus coeruleus: pons ratio compared to PDRBD- (P = 0.07, t-test). In comparison to the other groups, the PDRBD+ group also had enlarged colon volumes (P < 0.001, ANOVA) and delayed colonic transit times (P = 0.01, Kruskal-Wallis). The combined iRBD and PDRBD+ patient data were compatible with a body-first trajectory, characterized by initial loss of cardiac MIBG signal and 11C-colonic donepezil signal followed by loss of putaminal FDOPA uptake. In contrast, the PDRBD- data were compatible with a brain-first trajectory, characterized by primary loss of putaminal FDOPA uptake followed by a secondary loss of cardiac MIBG signal and 11C-donepezil signal. These findings support the existence of brain-first and body-first subtypes of Parkinson's disease.
Citations
Cited by
- Exercise as medicine in Parkinson’s disease
- Olfactory Dysfunction as a Window Into the Heterogeneity of Parkinson Disease
- How to treat cardiovascular autonomic failure in Parkinson’s disease
- Risk of Parkinson’s disease in people aged ≥50 years with new-onset anxiety: a retrospective cohort study in UK primary care
- Erythrocyte-derived extracellular vesicles transcytose across the blood-brain barrier to induce Parkinson’s disease-like neurodegeneration
- Parkinson's disease
- The Unusual Suspects: Macrophages in Parkinson's Disease?
- A molecular convergence in the triad of parkinson’s disease, depressive disorder and gut health is revealed by the inflammation-miRNA axis
- The natural history of body-first versus brain-first Parkinson’s disease subtypes
- A PLAN to address the Parkinson pandemic
- Parkinson's Disease Is Associated with Impaired Gut–Blood Barrier for Short‐Chain Fatty Acids
- Substantia nigra and locus coeruleus microstructural abnormalities in isolated rapid eye movement sleep behaviour disorder and Parkinson’s disease
- Onset of Skin, Gut, and Genitourinary Prodromal Parkinson's Disease: A Study of 1.5 Million Veterans
- A topographical atlas of αSyn dosage and cell-type expression in the mouse brain and periphery
- Update on the Role of [18F]FDOPA PET/CT
- Inflaming the Brain with Iron. [europepmc]
- Periphery and brain, innate and adaptive immunity in Parkinson's disease. [europepmc]
- Gastrointestinal Dysfunction in Parkinson's Disease. [europepmc]
- Glymphatic System as a Gateway to Connect Neurodegeneration From Periphery to CNS. [europepmc]
- The α-Synuclein Origin and Connectome Model (SOC Model) of Parkinson's Disease: Explaining Motor Asymmetry, Non-Motor Phenotypes, and Cognitive Decline. [europepmc]
- The gut-brain axis and Parkinson disease: clinical and pathogenetic relevance. [europepmc]
- The Pathogenesis of Parkinson's Disease: A Complex Interplay Between Astrocytes, Microglia, and T Lymphocytes? [europepmc]
- Neurodegenerative disorders and gut-brain interactions. [europepmc]
- The role of neuroimaging in Parkinson's disease. [europepmc]
- The Cholinergic Brain in Parkinson's Disease. [europepmc]
- Cholinergic system changes in Parkinson's disease: emerging therapeutic approaches. [europepmc]
- Identifying the individual metabolic abnormities from a systemic perspective using whole-body PET imaging. [europepmc]
- The Impact of Type 2 Diabetes in Parkinson's Disease. [europepmc]
- Genetics and Pathogenesis of Parkinson's Syndrome. [europepmc]
- Metagenomics of Parkinson's disease implicates the gut microbiome in multiple disease mechanisms. [europepmc]
- A postmortem study suggests a revision of the dual-hit hypothesis of Parkinson's disease. [europepmc]
- Cutaneous α-Synuclein Signatures in Patients With Multiple System Atrophy and Parkinson Disease. [europepmc]
- Current Treatments and New, Tentative Therapies for Parkinson's Disease. [europepmc]
- The heterogeneity of Parkinson's disease. [europepmc]
- Neuropathology of incidental Lewy body & prodromal Parkinson's disease. [europepmc]
- A blood-based marker of mitochondrial DNA damage in Parkinson's disease. [europepmc]
- Parkinson's disease and gut microbiota: from clinical to mechanistic and therapeutic studies. [europepmc]
- Safety and efficacy of faecal microbiota transplantation in patients with mild to moderate Parkinson's disease (GUT-PARFECT): a double-blind, placebo-controlled, randomised, phase 2 trial. [europepmc]
- Disease progression modelling reveals heterogeneity in trajectories of Lewy-type α-synuclein pathology. [europepmc]
- Neuroimaging and fluid biomarkers in Parkinson's disease in an era of targeted interventions. [europepmc]
Related