Differential Pathological Dynamics triggered by distinct Parkinson patient-derived α-synuclein extracts in non-human primates

R. Kinet, M. Bourdenx, S. Dovero, M. Darricau, M.-L. Arotcarena, S. Camus, G. Porras, M.-L. Thiolat, I. Trigo-Damas, S. Bohic, M. Morari, E. Doudnikoff, M. Goikoetxea, S. Claverol, C. Tokarski, N. Kruse, B. Mollenhauer, C. Estrada, N. Garcia-Carrillo, M. T. Herrero, M. Vila, J. A. Obeso, E. Bezard, B. Dehay
Sci. Adv.. 2025-06-20; 11(25):
DOI: 10.1126/sciadv.adu6050

PubMed
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https://www.bordeaux-neurocampus.fr/11670

The presence of α-synuclein (α-syn) aggregates, such as Lewy bodies in patients with Parkinson’s disease (PD), contributes to dopaminergic cell death. Injection of PD patient–derived α-syn in nonhuman primates has illustrated the exquisite vulnerability of primate dopaminergic neurons. Here, we aimed to elucidate the temporal and spatial pathological changes induced by two distinct α-syn pathogenic structures, having large or small sizes. To unravel the underlying molecular pathways, we conducted a proteomic analysis of the putamen and the entorhinal cortex, two brain regions carrying notable α-syn pathology. We demonstrate that distinct assemblies of α-syn aggregates drive unique pathogenic changes that ultimately result in a comparable extent of nigrostriatal degeneration at the level of nigral dopaminergic neuron cell bodies and striatal dopaminergic terminals. More broadly, our findings identify pathogenic trajectories associated with large or small α-syn aggregates, suggesting the existence of several possible concomitant pathogenic routes in PD.

Auteurs Bordeaux Neurocampus