γ-Terpinene complexed with β-cyclodextrin attenuates spinal neuroactivity in animals with cancer pain by Ca2+ channel block

Abstract Objectives Considering that γ-terpinene (γ-TPN) is a monoterpene found in Cannabis oil, with high lipophilicity and limited pharmacokinetics, our objective was to evaluate whether its complexation in β-cyclodextrin (γ-TPN/β-CD) could improve its physicochemical properties and action on canc...

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Veröffentlicht in:Journal of pharmacy and pharmacology 2022-11, Vol.74 (11), p.1629-1639
Hauptverfasser: Pina, Lícia T S, Rabelo, Thallita K, Trindade, Gabriela G G, Almeida, Iggo K S, Oliveira, Marlange A, dos Santos, Priscila L, Souza, Diego Santos, de Menezes-Filho, José E R, de Vasconcelos, Carla Maria Lins, Santos, Sandra L, Scotti, Luciana, Scotti, Marcus T, Araújo, Adriano A S, Quintans, Jullyana S S, Quintans, Lucindo J, Guimarães, Adriana G
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Sprache:eng
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Zusammenfassung:Abstract Objectives Considering that γ-terpinene (γ-TPN) is a monoterpene found in Cannabis oil, with high lipophilicity and limited pharmacokinetics, our objective was to evaluate whether its complexation in β-cyclodextrin (γ-TPN/β-CD) could improve its physicochemical properties and action on cancer pain, as well as verify the mechanisms of action involved. Methods The γ-TPN/β-CD was prepared and submitted to physicochemical characterization. Animals with sarcoma 180 were treated (vehicle, γ-TPN 50 mg/kg, γ-TPN/β-CD 5 mg/kg or morphine) and assessed for hyperalgesia, TNF-α and IL-1β levels, iNOS and c-Fos activity. The effects of γ-TPN on calcium channels were studied by patch-clamp and molecular docking. Results β-CD improved the physicochemical properties and prolonged the anti-hyperalgesic effect of γ-TPN. This compound also reduced the levels of IL-1β, TNF-α and iNOS in the tumour, and c-Fos protein in the spinal cord. In addition, it reduced Ca2+ current, presenting favourable chemical interactions with different voltage-dependent calcium channels. Conclusion These results indicate that the complexation of γ-TPN into β-CD increases its stability and time effect, reducing spinal neuroactivity and inflammation by blocking calcium channels.
ISSN:0022-3573
2042-7158
DOI:10.1093/jpp/rgac052