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Repeated Oral Administration of Ivermectin Belatedly Induces Toxicity and Disrupts the Locomotion and
Antônio Alvenir Comis-Neto1, Natália Silva Jardim1, Caroline Brandão Quines2
1Federal University of Pampa, Campus Uruguaiana, Uruguaiana, Rio Grande do Sul 97508000, Brazil.
Abstract:
In 2020, the World Health Organization declared that COVID-19, caused by the SARS-CoV-2 virus, is a pandemic. This led to severe respiratory syndromes and overwhelmed hospital capacities alongside the widespread, yet unproven, use of drugs like ivermectin. Amidst growing concerns over the consequences of frequent ivermectin use, this study aims to examine its toxicological effects following repeated dosage in rats. Female Wistar rats received a daily dose of 12 mg/kg of ivermectin intragastrically for 5 days. Two groups were studied: one euthanized 24 h post the final dose (early protocol) and the other 14 days later (late protocol). The rats underwent tests for locomotion and anxiety- and depression-like behaviors. Additionally, blood and cortex samples were analyzed for acetylcholinesterase and Na+/K+-ATPase activities, oxidative stress levels, and liver and kidney function markers. The early protocol results showed decreased locomotion and increased signs of anxiety and depression in the rats, along with Na+/K+-ATPase inhibition and oxidative stress. In the late protocol, signs of persistent depression-like behavior and hyperlocomotion were observed, coupled with heightened oxidative stress, as indicated by increased reactive oxygen species and disrupted catalase activity. Moreover, the dual inhibition of acetylcholinesterase and Na+/K+-ATPase activities seems to underlie the behavioral alterations seen in the late protocol. The study also noted ivermectin's potential hepatotoxic effects, corroborating previous findings of elevated liver enzyme levels and severe drug-induced liver injury cases, as well as delayed neuropsychiatric and behavioral changes.
Insights
Repeated ivermectin use in rats caused significant toxicological effects, including behavioral changes, oxidative stress, and potential liver damage. These findings highlight the need for caution regarding frequent ivermectin administration.
Area of Science:
- Toxicology
- Neuroscience
- Pharmacology
Background:
- The COVID-19 pandemic saw widespread ivermectin use despite unproven efficacy.
- Concerns arose regarding the toxicological consequences of frequent ivermectin administration.
Purpose of the Study:
- To investigate the toxicological effects of repeated ivermectin dosage in a rat model.
- To assess neurobehavioral changes and biochemical alterations following ivermectin exposure.
Main Methods:
- Female Wistar rats received daily ivermectin (12 mg/kg) for 5 days.
- Behavioral tests (locomotion, anxiety, depression) were conducted.
- Biochemical analyses included enzyme activities (acetylcholinesterase, Na+/K+-ATPase), oxidative stress markers, and liver/kidney function tests.
Main Results:
- Early protocol (24h post-dose): Decreased locomotion, increased anxiety/depression, Na+/K+-ATPase inhibition, and oxidative stress.
- Late protocol (14 days post-dose): Persistent depression-like behavior, hyperlocomotion, elevated oxidative stress (ROS, altered catalase), and dual enzyme inhibition.
- Evidence of potential hepatotoxicity and delayed neuropsychiatric effects.
Conclusions:
- Repeated ivermectin exposure induces significant neurobehavioral and biochemical toxicity in rats.
- Observed effects include altered motor activity, mood-related behaviors, enzyme inhibition, and oxidative stress.
- Findings suggest potential risks associated with frequent ivermectin use, including hepatotoxicity and delayed neurological changes.
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