Anxiolytic Potential of Selected Essential Oils and Their Impact on Motor Function

Plant essential oils (EOs) exhibit promising anxiolytic activity, but their application may be constrained by adverse motor effects arising from interactions with neural circuits controlling movement. Here, we investigated the anxiolytic-like effects and motor impairment liability of EOs from Pimenta pseudocaryophyllus, Melissa officinalis, Matricaria chamomilla, Lippia alba, Salvia rosmarinus, Ocimum basilicum, Spiranthera odoratissima, and Cymbopogon citratus, integrating computational target prediction with behavioral pharmacology. Prioritized EO constituents were subjected to target prediction, molecular docking, and 100-ns molecular dynamics simulations to identify molecular mechanisms potentially associated with motor impairment. Male and female Swiss mice received oral vehicle 10 mL/kg, EOs (10, 100, or 500 mg/kg) or diazepam (DZP 1 or 5 mg/kg), followed by the evaluation of anxiolytic-like behavior and motor coordination in the elevated plus maze and rotarod test, respectively. In silico analyses involving docking and molecular dynamics simulations of computationally prioritized EO constituents identified candidate targets within M1 and M2 receptors. All EOs exhibited anxiolytic-like activity at the intermediate dose. Motor impairment varied markedly among EOs. Integrating computational target prediction with behavioral assessment identified distinct motor liability profiles among EOs.

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Journal
International Journal of Molecular Sciences
Published
2026-09-30
DOI
https://doi.org/10.3390/ijms27198786
Primary Topic
Medicinal Plant Extracts Effects
Type
article
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article

Anxiolytic Potential of Selected Essential Oils and Their Impact on Motor Function

Alberto Souza Sá Filho, Antônio S. N. Aguiar, Saheed Olanrewaju Afolabi, Renê Oliveira do Couto et al.
International Journal of Molecular Sciences
Medicinal Plant Extracts Effects
article

Anxiolytic Potential of Selected Essential Oils and Their Impact on Motor Function

Alberto Souza Sá Filho, Antônio S. N. Aguiar, Saheed Olanrewaju Afolabi, Renê Oliveira do Couto, James Oluwagbamigbe Fajemiroye, Edeildo Ferreira da Silva‐Júnior, Gustavo Rodrigues Pedrino, Vicente Aprigliano, Ayobami J. Olusola, Marcos Luiz Ferreira Neto, John Ihayi Ogbu, Lucas Barbosa Ribeiro de Carvalho, Mirely Vitória Farias da Silva, Leonardo Luiz Borges
article en

Abstract

Plant essential oils (EOs) exhibit promising anxiolytic activity, but their application may be constrained by adverse motor effects arising from interactions with neural circuits controlling movement. Here, we investigated the anxiolytic-like effects and motor impairment liability of EOs from Pimenta pseudocaryophyllus, Melissa officinalis, Matricaria chamomilla, Lippia alba, Salvia rosmarinus, Ocimum basilicum, Spiranthera odoratissima, and Cymbopogon citratus, integrating computational target prediction with behavioral pharmacology. Prioritized EO constituents were subjected to target prediction, molecular docking, and 100-ns molecular dynamics simulations to identify molecular mechanisms potentially associated with motor impairment. Male and female Swiss mice received oral vehicle 10 mL/kg, EOs (10, 100, or 500 mg/kg) or diazepam (DZP 1 or 5 mg/kg), followed by the evaluation of anxiolytic-like behavior and motor coordination in the elevated plus maze and rotarod test, respectively. In silico analyses involving docking and molecular dynamics simulations of computationally prioritized EO constituents identified candidate targets within M1 and M2 receptors. All EOs exhibited anxiolytic-like activity at the intermediate dose. Motor impairment varied markedly among EOs. Integrating computational target prediction with behavioral assessment identified distinct motor liability profiles among EOs.

International Journal of Molecular SciencesVol. 27(19)
University of Ilorin (NG), Universidade Evangelica de Goiás (BR), Universidade Estadual de Goiás (BR), Pontificial Catholic University of Valparaiso (CL), Federal University of São João del-Rei (BR), Pontifícia Universidade Católica de Goiás (BR), Universidade Federal de Goiás (BR), Universidade Federal de Alagoas (BR), Universidade Federal de Uberlândia (BR)
Openalex Percentile: Top 6%
Medicinal Plant Extracts Effects
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