Back

AAV-mediated Expression of a Novel Conformational Anti-Aggregated alpha-Synuclein Antibody Prolongs Survival in a Genetic Model of alpha-Synucleinopathies

Duechs, M.; Blazevic, D.; Rechtsteiner, P.; Kenny, C.; Lamla, T.; Low, S.; Savistchenko, J.; Neumann, M.; Melki, R.; Schoenberger, T.; Stierstorfer, B.; Wyatt, D.; Igney, F.; Ciossek, T.

2022-12-01 neuroscience
10.1101/2022.11.30.518485 bioRxiv
Show abstract

Prion-like transmission of pathology in -synucleinopathies like Parkinsons disease or multiple system atrophy is increasingly recognized as one potential mechanism to address disease progression. Active and passive immunotherapies targeting insoluble, aggregated -synuclein are already being actively explored in the clinic with mixed outcomes so far. Here, we report the identification of 306C7B3, a highly selective, aggregate-specific -synuclein antibody with picomolar affinity devoid of binding to the monomeric, physiologic protein. 306C7B3 binding is Ser129-phosphorylation independent and shows high affinity to several different aggregated -synuclein polymorphs, increasing the likelihood that it can also bind to the pathological seeds assumed to drive disease progression in patients. In support of this, highly selective binding to pathological aggregates in postmortem brains of MSA patients was demonstrated, with no staining in samples from other human neurodegenerative diseases. To achieve CNS exposure of 306C7B3, an Adeno-Associated Virus (AAV) based approach driving expression of the secreted antibody within the brain of (Thy-1)-[A30P]-h-Synuclein mice was used. Widespread central transduction after intrastriatal inoculation was ensured by using the AAV2HBKO serotype, with transduction being spread to areas far away from the inoculation site. Treatment of (Thy-1)-[A30P]-h-Synuclein mice at the age of 12 months demonstrated significantly increased survival, with 306C7B3 concentration reaching 3.9 nM in the cerebrospinal fluid. These results suggest that AAV-mediated expression of 306C7B3 has great potential as a disease-modifying therapy for -synucleinopathies as it ensures CNS exposure of the antibody, thereby mitigating the selective permeability of the blood-brain barrier.

Matching journals

The top 4 journals account for 50% of the predicted probability mass.

50% of probability mass above

"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.