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Dysfunction in Cardiovascular Autonomic Modulation Caused by Chronic Use of Ketamine Hydrochloride Can Be Prevented by Aerobic Exercise Training in Wistar Rats.

Adriano Dos-Santos, Lucas Porto Fernandes Dos Santos, Gabriela Da Silva-Santos, Bruno Durante Da Silva, Bruno Nascimento-Carvalho, Hunter Douglas De Souza-Lima, Nicolas Da Costa-Santos, Erico Chagas Caperuto, Nathalia Bernardes, Katia De Angelis, Maria Claudia Irigoyen, Katia Bilhar Scapini, Iris Callado Sanches

Journal of clinical medicine October 24, 2025 DOI: 10.3390/jcm14217548 via PubMed

Summary

AI-generated from the abstract

Chronic ketamine exposure in rats elevates systolic blood pressure and impairs baroreflex sensitivity and heart rate variability. Six weeks of treadmill-based aerobic training, performed three times per week alongside ketamine administration (10 mg/kg, intraperitoneal), attenuated these cardiovascular impairments. Trained rats receiving ketamine showed improved baroreflex sensitivity (bradycardic reflex: -1.3 ± 0.1) and preserved heart rate variability (total power: 38.9 ± 8.4) compared to sedentary ketamine-treated rats (bradycardic reflex: -0.7 ± 0.1; total power: 18.3 ± 2.1). The findings suggest aerobic exercise may serve as a non-pharmacological strategy to counteract ketamine-induced cardiotoxicity.

Study at a glance

Characteristics Randomized controlled trial Peer reviewed
Sample size 24
Population Wistar rats
Interventions Aerobic exercise training Ketamine
Dose 10 mg/kg
Duration 6-week intervention
Topics Ketamine
Keywords Cardiovascular autonomic control Ketamine: ketamine Chronic ketamine exposure Long-term ketamine-related issues Regular physical activity
Key finding Aerobic training attenuated the elevated systolic blood pressure and reduced baroreflex sensitivity caused by chronic ketamine administration in rats.

Abstract

Background/Objectives: Ketamine, widely used for its anesthetic and analgesic properties, has been linked to cardiotoxic effects, particularly with chronic use. Prolonged ketamine exposure may impair cardiovascular function, while aerobic exercise is known to promote protective cardiovascular adaptations. This study aimed to evaluate whether aerobic training can mitigate the deleterious cardiovascular effects of chronic ketamine administration in rats. Methods: Twenty-four Wistar rats were randomly assigned to four groups: sedentary control (S), trained control (T), sedentary with ketamine (S-ket), and trained with ketamine (T-ket). Ketamine was administered intraperitoneally at a dose of 10 mg/kg, three times per week for six weeks. Aerobic training was conducted on a treadmill in the trained groups throughout the protocol. At the end of the experiment, cardiac function was assessed by echocardiography. Additionally, animals were cannulated in the carotid artery and jugular vein to measure blood pressure, baroreflex sensitivity, and heart rate variability using a data acquisition system (2 kHz, Windaq DATAQ). Results: Rats in the S-ket group showed elevated systolic arterial pressure and reduced baroreflex sensitivity compared to controls. Aerobic training attenuated these effects. Baroreflex sensitivity improved (bradycardic reflex-S: -1.7 ± 0.3; S-ket: -0.7 ± 0.1; T: -1.3 ± 0.2; T-ket: -1.3 ± 0.1), and cardiovascular autonomic function was preserved (total power-S: 45.6 ± 6.3; S-ket: 18.3 ± 2.1; T: 44.1 ± 5.7; T-ket: 38.9 ± 8.4) in trained animals. Conclusions: Aerobic exercise mitigates cardiovascular impairments caused by chronic ketamine exposure in rats, suggesting its potential as a non-pharmacological intervention to counteract ketamine-induced cardiotoxicity. These findings support incorporating exercise into treatment strategies for individuals chronically exposed to ketamine.

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