Abstract / Summary
Healthy embryonic neurons grafted into the putamen of Parkinson's disease (PD) patients start to develop Lewy pathology 10 years after transplantation. It remains unclear whether this pathology is initiated by the spread of host-derived α-synuclein (αsyn) aggregates which seed aggregation in the grafted cells or arises independently from a hostile PD environment (e.g., chronic inflammation). To distinguish these possibilities, we identified αsyn seeding sites in the human brain using a multiplex in situ seed immunodetection (isSID) assay. In PD and dementia with Lewy bodies (DLB), isSID labeled a subset of Lewy pathology (LP) as puncta along neurites and within inclusions. In multiple system atrophy (MSA), isSID labeled Papp-Lantos bodies and microglia. In progressive supranuclear palsy (PSP), isSID labeled tufted astrocytes. isSID labeled neuromelanin in the substantia nigra independent of diagnosis. In 16- and 27-year intraputamenal neuronal grafts, isSID labeled within and proximal to Lewy pathology, as well as outside the grafted tissue. Younger grafts (18 months and 4 years) lacked Lewy pathology. In the 18-month graft, isSID labeled grafted neurons; at 4 years, isSID was confined to amorphous deposits in the graft and was absent from tyrosine hydroxylase-positive grafted neurons. In conclusion, αsyn seeding is detectable in grafted neurons before and during LP formation. Because seeding accompanies melanization, but is not explained by melanization alone, these findings support host-derived seeds as a contributor to graft pathology.