Search bioRxivSearch

Biology subjects

Betzer, C.

Publications and source records attributed to Betzer, C..

2 recordsLinked to original sources

Organotypic slice culture model demonstrates interneuronal spreading of alpha-synuclein aggregates

Here we describe the use of an organotypic hippocampal slice model for studying -synuclein aggregation and inter-neuronal spreading initiated by injection of preformed -synuclein filaments (PFFs). PFF injection at dentate gyrus templates the endogenous -synuclein to form aggregates in axons and cell bodies that spread to CA3 and CA1 regions. Aggregates were insoluble and phosphorylated at serine 129, recapitulating Lewy pathology features found in Parkinsons disease and other synucleinopathies. The spreading of the aggregates were favoring the anterograde direction in the slice model. The model allowed development of slices expressing only serine-129 phosphorylation-deficient human -synuclein (S129G) using adeno-associated viral (AAV) vector in -synuclein knockout slices. Processes of aggregation and spreading of -synuclein were thereby shown to be independent of phosphorylation at serine 129. We provide methods and highlight crucial steps for PFF microinjection and characterization of aggregate formation and spreading. Slices derived from genetically engineered mice or manipulated by using viral vectors allow testing of hypotheses on mechanisms involved in formation of -synuclein aggregates and their prion-like spreading.

neuroscience

Stabilization of α-synuclein oligomers using formaldehyde

The group of neurodegenerative diseases, Parkinsons disease (PD), dementia with Lewy bodies (DLB), and multiple system atrophy (MSA) all exhibit inclusions containing amyloid-type -synuclein (-syn) aggregates within degenerating brain cells. -syn also exists as soluble oligomeric species that are hypothesized to represent intermediates between its native and aggregated states. These oligomers are present in brain extracts from patients suffering from synucleinopathies and hold great potential as biomarkers. Although easily prepared in vitro, oligomers are metastable and dissociate over time, thereby complicating -syn oligomer research. Using the small amine-reactive cross-linker, formaldehyde (FA), we successfully stabilized -syn oligomers without affecting their size, overall structure or antigenicity towards aggregate-conformation specific -syn antibodies FILA and MJFR-14-6-4-2. Further, cross-linked -syn oligomers show resistance towards denaturant like urea and SDS treatment and remain fully functional as internal standard in an aggregation-specific enzyme-linked immunosorbent assay (ELISA) despite prior incubation with urea. We propose that FA cross-linked -syn oligomers could serve as important calibrators to facilitate comparative and standardized -syn biomarker studies going forward.

neuroscience