MPTP-Treated Zebrafish Recapitulate ‘Late-Stage’ Parkinson’s-like Cognitive Decline

Author:

Bashirzade Alim A. O.ORCID,Cheresiz Sergey V.ORCID,Belova Alisa S.,Drobkov Alexey V.,Korotaeva Anastasiia D.ORCID,Azizi-Arani Soheil,Azimirad Amirhossein,Odle Eric,Gild Emma-Yanina V.,Ardashov Oleg V.,Volcho Konstantin P.ORCID,Bozhko Dmitrii V.,Myrov Vladislav O.,Kolchanova Sofia M.,Polovian Aleksander I.ORCID,Galumov Georgii K.ORCID,Salakhutdinov Nariman F.,Amstislavskaya Tamara G.ORCID,Kalueff Allan V.

Abstract

The zebrafish is a promising model species in biomedical research, including neurotoxicology and neuroactive drug screening. 1-Methyl-4-phenyl-1,2,3,6-tetrahydropyridine (MPTP) evokes degeneration of dopaminergic neurons and is commonly used to model Parkinson’s disease (PD) in laboratory animals, including zebrafish. However, cognitive phenotypes in MPTP-evoked experimental PD models remain poorly understood. Here, we established an LD50 (292 mg/kg) for intraperitoneal MPTP administration in adult zebrafish, and report impaired spatial working memory (poorer spontaneous alternation in the Y-maze) in a PD model utilizing fish treated with 200 µg of this agent. In addition to conventional behavioral analyses, we also employed artificial intelligence (AI)-based approaches to independently and without bias characterize MPTP effects on zebrafish behavior during the Y-maze test. These analyses yielded a distinct cluster for 200-μg MPTP (vs. other) groups, suggesting that high-dose MPTP produced distinct, computationally detectable patterns of zebrafish swimming. Collectively, these findings support MPTP treatment in adult zebrafish as a late-stage experimental PD model with overt cognitive phenotypes.

Funder

Government of Russia

Publisher

MDPI AG

Subject

Chemical Health and Safety,Health, Toxicology and Mutagenesis,Toxicology

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