Authors
Eed, A., Novikov, V., Bahrampour, S., Summers, K., Tullo, S., Chakravarty, M., Luo, W., Shlaifer, I., Durcan, T. M., Prado, V. F., Khan, A. R., Prado, M. A. M., Menon, R. S.
Abstract
Phosphorylated -synuclein at S129 (pS129) is the predominant form of -synuclein in the aggregates known as Lewy bodies (LB) and Lewy neurites (LN), the pathological hallmarks of Parkinson's disease (PD) and dementia with Lewy bodies (DLB), collectively known as synucleinopathies. The toxic nature of these inclusions remains contentious. To improve our understanding of these aggregates and their role in the structural and functional changes observed in synucleinopathies, we combined non-invasive structural and functional MRI in awake head-fixed M83 mice with whole-brain light-sheet fluorescence microscopy (LSFM) in the same animals following a unilateral injection of either human preformed fibrils of -synuclein (PFF) or PBS into the dorsal striatum. We developed a multimodal framework integrating the non-invasive, mesoscopic nature of MRI with the cellular-level details of LSFM to further our understanding of the underlying pathology of synucleinopathies. Using this framework, we show that four months after injection, animals injected with PFFs showed ubiquitous spread of pS129 pathology throughout the whole brain and spinal cord consistent with anatomical connectivity from the seeding region, with some structures such as the midbrain more susceptible to pS129 accumulation. Compared to controls, PFF-injected animals showed widespread atrophy as well as a decrease in functional connectivity, while evoked activity in the somatosensory/somatomotor areas in response to spontaneous paw movements showed significant hypoactivation. These cellular, structural and functional changes were significantly associated with the proportion of pS129 accumulation determined in the same animals. Our results demonstrate the deleterious effects of pS129 accumulation and argue in favor of a toxic role played by these aggregates.
Preprint server:
bioRxiv
The authors list and abstract were imported from bioRxiv on 23 Sep 2026.
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