| Literature DB >> 34478769 |
Flavia Tasmin Techera Antunes1, Alessandra Hubner de Souza2, Emanuelle Sistherenn Caminski3, Samuel Greggio4, Gianina Teribele Venturin5, Jaderson Costa da Costa6, Maitê Taffarel7, Isadora Nunes Rebelo8, Marcus Vinicius Gomez9, Dione Silva Correa10, Fernanda Nunes Vilanova11, Andrea Pereira Regner12, Eliane Dallegrave13.
Abstract
The mitochondrial inhibitor 3-nitropropionic acid (3-NP) induces excitotoxicity. The authors hypothesized that CTK 01512-2, a recombinant peptide calcium channel N-type blocker, and the TRPA1 antagonist, could show neuroprotective effects. The male Wistar rats received 3-NP [25 mg/kg (i.p.) for 7 days], and a treatment of CTK 01512-2 was delivered intrathecally (i.t.), thrice a week. The neuroprotective effects were evaluated by [18F]FDG MicroPET analysis. The CTK 01512-2 toxin was able to reestablish similar glucose uptakes on the control animals. To detect the neurobehavioral effects from 3-NP, three protocols (6.25, 12.5, 18.75 mg/kg of 3-NP (i.p.), for 3, 4, and 6 days, respectively) were evaluated by performance tests (open field test, walk footprint, elevated plus-maze, Y-maze, and the object recognition test). Important disabilities in the gait of the rats were seen, as well as memory deficits, and anxious behavior in the animals that were treated with all 3-NP protocols. The dose of 18.75 mg/kg (for 3 days) showed the most pronounced behavioral effects and lethality, while the rats treated with 12.5 mg/kg (for 4 days) showed behavioral effects similar to the 6.25 mg/kg dose (for 6 days). The third protocol was then repeated and the rats were treated with the CTK 01512-2 toxin to be evaluated behaviorally again. The recombinant peptide prevented all of the gait-evaluated parameters that were induced by 3-NP at a 6.25 mg/kg dose, which displayed an improvement in the exploratory activities. Overall, these results have reinforced the positive effects of CTK 01512-2 against the behavioral changes that were induced by the mitochondrial inhibitor 3-NP.Entities:
Keywords: Calcium signaling; Cav2.2; Huntington’s disease; Phoneutria nigriventer; Positron emission tomography; Voltage-gated calcium channel
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Year: 2021 PMID: 34478769 DOI: 10.1016/j.neuro.2021.08.016
Source DB: PubMed Journal: Neurotoxicology ISSN: 0161-813X Impact factor: 4.294