An In Silico Approach to Exploring the Antinociceptive Biological Activities of Linalool and its Metabolites

Author:

da Silva Pablo Rayff1,Nunes Pazos Natalia Diniz1,de Andrade Jéssica Cabral1,de Sousa Natália Ferreira2,Oliveira Pires Hugo Fernandes1,de Figueiredo Lima Jaislânia Lucena1,Dias Arthur Lins1,da Silva Stiebbe Salvadori Mirian Graciela1,de Oliveira Golzio Adriana Maria Fernandes1,de Castro Ricardo Dias1,Scotti Marcus T.2,Patil Vaishali M.3,Bezerra Felipe Cícero Francisco1,de Almeida Reinaldo Nóbrega1,Scotti Luciana2ORCID

Affiliation:

1. Psychopharmacology Laboratory, Institute of Drugs and Medicines Research, Federal University of Paraíba, 58051- 085, Via Ipê Amarelo, S/N, João Pessoa, Paraíba, Brazil

2. Cheminformatics Laboratory, Institute of Drugs and Medicines Research, Federal University of Paraíba, 58051-900, Via Ipê Amarelo, S/N, João Pessoa, Paraíba, Brazil

3. KIET School of Pharmacy, KIET Group of Institutions, Ghaziabad 201206, Uttar Pradesh, India

Abstract

Abstract: Pain is characterized by the unpleasant sensory and emotional sensation associated with actual or potential tissue damage, whereas nociception refers to the mechanism by which noxious stimuli are transmitted from the periphery to the CNS. The main drugs used to treat pain are nonsteroidal anti-inflammatory drugs (NSAIDs) and opioid analgesics, which have side effects that limit their use. Therefore, in the search for new drugs with potential antinociceptive effects, essential oils have been studied, whose constituents (monoterpenes) are emerging as a new therapeutic possibility. Among them, linalool and its metabolites stand out. The present study aims to investigate the antinociceptive potential of linalool and its metabolites through a screening using an in silico approach. Molecular docking was used to evaluate possible interactions with important targets involved in antinociceptive activity, such as α2-adrenergic, GABAergic, muscarinic, opioid, adenosinergic, transient potential, and glutamatergic receptors. The compounds in the investigated series obtained negative energies for all enzymes, representing satisfactory interactions with the targets and highlighting the multi-target potential of the L4 metabolite. Linalool and its metabolites have a high likelihood of modulatory activity against the targets involved in nociception and are potential candidates for future drugs.

Publisher

Bentham Science Publishers Ltd.

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