Back

Formic acid impairs α-synuclein seeding activity in human and mouse brains

Digraskar, S.; Dobbins, G. C.; Das, P.; Bash, R.; Songer, A.; Huh, J.; Scholz, K.; Khan, M.; Goldberg, M.; Gearing, M.; Volpicelli-Daley, L.; Chen, S.; Calvo, P. A.

2025-07-18 neuroscience
10.1101/2025.07.14.664807 bioRxiv
Show abstract

-Synuclein (-syn) is an abundant monomeric protein that can aggregate into fibrils and form neuropathological inclusions in the brains of patients with synucleinopathies. New evidence suggests that the mouse-human transmission barrier of -syn is lower than previously reported, emphasizing the need for improved biosafety procedures when working with -syn aggregates. Histopathology of -syn-infected brain represents a significant potential source of occupational exposure, and current methods for tissue fixation do not inactivate the ability of pathologic -syn to seed the conversion of endogenous, monomeric -syn into fibrils. In this study, we tested whether 96% formic acid treatment could reduce the seeding activity of -syn aggregates in paraformaldehyde-fixed brain samples from dementia with Lewy bodies (DLB) patients and -syn pre-formed fibrils (PFF)-injected mouse brains. Using real-time quaking-induced conversion (RT-QuIC), we found that formic acid treatment reduced -syn seeding dose (picograms of -syn seeds per ml of brain homogenate) in DLB and mouse brain by 6 and 8 logarithms, respectively. RT-QuIC reactions seeded with formic acid-treated brain homogenates showed significantly longer lag phase, and decreased total thioflavin T fluorescence compared to untreated samples, indicating that formic acid treatment impairs the ability of pathological -syn to seed monomeric -syn. Importantly, the -syn pathologic features and the immunostaining quality were preserved in formic acid-treated tissues. Our results demonstrate that formic acid treatment is a quick and efficient procedure for reducing -syn seeding activity in fixed brain samples, thereby lowering the risk of accidental exposure in laboratories without compromising the quality of histopathological analysis. SummaryFormic acid treatment drastically reduces -synuclein seeding activity in fixed human and mouse brain samples while preserving histopathological quality.

Matching journals

The top 8 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.