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Cyclodextrin-Complexed Ocimum basilicum Leaves Essential Oil Increases Fos Protein Expression in the Central Nervous System and Produce an Antihyperalgesic Effect in Animal Models for Fibromyalgia

O. basilicum leaves produce essential oils (LEO) rich in monoterpenes. The short half-life and water insolubility are limitations for LEO medical uses. β-Cyclodextrin (β-CD) has been employed to improve the pharmacological properties of LEO. We assessed the antihyperalgesic profile of LEO, isolated...

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Autores principales: Nascimento, Simone S., Araújo, Adriano A. S., Brito, Renan G., Serafini, Mairim R., Menezes, Paula P., DeSantana, Josimari M., Lucca Júnior, Waldecy, Alves, Pericles B., Blank, Arie F., Oliveira, Rita C. M., Oliveira, Aldeidia P., Albuquerque-Júnior, Ricardo L. C., Almeida, Jackson R. G. S., Quintans-Júnior, Lucindo J.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4307262/
https://www.ncbi.nlm.nih.gov/pubmed/25551603
http://dx.doi.org/10.3390/ijms16010547
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author Nascimento, Simone S.
Araújo, Adriano A. S.
Brito, Renan G.
Serafini, Mairim R.
Menezes, Paula P.
DeSantana, Josimari M.
Lucca Júnior, Waldecy
Alves, Pericles B.
Blank, Arie F.
Oliveira, Rita C. M.
Oliveira, Aldeidia P.
Albuquerque-Júnior, Ricardo L. C.
Almeida, Jackson R. G. S.
Quintans-Júnior, Lucindo J.
author_facet Nascimento, Simone S.
Araújo, Adriano A. S.
Brito, Renan G.
Serafini, Mairim R.
Menezes, Paula P.
DeSantana, Josimari M.
Lucca Júnior, Waldecy
Alves, Pericles B.
Blank, Arie F.
Oliveira, Rita C. M.
Oliveira, Aldeidia P.
Albuquerque-Júnior, Ricardo L. C.
Almeida, Jackson R. G. S.
Quintans-Júnior, Lucindo J.
author_sort Nascimento, Simone S.
collection PubMed
description O. basilicum leaves produce essential oils (LEO) rich in monoterpenes. The short half-life and water insolubility are limitations for LEO medical uses. β-Cyclodextrin (β-CD) has been employed to improve the pharmacological properties of LEO. We assessed the antihyperalgesic profile of LEO, isolated or complexed in β-CD (LEO/β-CD), on an animal model for fibromyalgia. Behavioral tests: mice were treated every day with either LEO/β-CD (25, 50 or 100 mg/kg, p.o.), LEO (25 mg/kg, p.o.), tramadol (TRM 4 mg/kg, i.p.) or vehicle (saline), and 60 min after treatment behavioral parameters were assessed. Therefore, mice were evaluated for mechanical hyperalgesia (von Frey), motor coordination (Rota-rod) and muscle strength (Grip Strength Metter) in a mice fibromyalgia model. After 27 days, we evaluated the central nervous system (CNS) pathways involved in the effect induced by experimental drugs through immunofluorescence protocol to Fos protein. The differential scanning analysis (DSC), thermogravimetry/derivate thermogravimetry (TG/DTG) and infrared absorption spectroscopy (FTIR) curves indicated that the products prepared were able to incorporate the LEO efficiently. Oral treatment with LEO or LEO-βCD, at all doses tested, produced a significant reduction of mechanical hyperalgesia and we were able to significantly increase Fos protein expression. Together, our results provide evidence that LEO, isolated or complexed with β-CD, produces analgesic effects on chronic non-inflammatory pain as fibromyalgia.
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spelling pubmed-43072622015-02-02 Cyclodextrin-Complexed Ocimum basilicum Leaves Essential Oil Increases Fos Protein Expression in the Central Nervous System and Produce an Antihyperalgesic Effect in Animal Models for Fibromyalgia Nascimento, Simone S. Araújo, Adriano A. S. Brito, Renan G. Serafini, Mairim R. Menezes, Paula P. DeSantana, Josimari M. Lucca Júnior, Waldecy Alves, Pericles B. Blank, Arie F. Oliveira, Rita C. M. Oliveira, Aldeidia P. Albuquerque-Júnior, Ricardo L. C. Almeida, Jackson R. G. S. Quintans-Júnior, Lucindo J. Int J Mol Sci Article O. basilicum leaves produce essential oils (LEO) rich in monoterpenes. The short half-life and water insolubility are limitations for LEO medical uses. β-Cyclodextrin (β-CD) has been employed to improve the pharmacological properties of LEO. We assessed the antihyperalgesic profile of LEO, isolated or complexed in β-CD (LEO/β-CD), on an animal model for fibromyalgia. Behavioral tests: mice were treated every day with either LEO/β-CD (25, 50 or 100 mg/kg, p.o.), LEO (25 mg/kg, p.o.), tramadol (TRM 4 mg/kg, i.p.) or vehicle (saline), and 60 min after treatment behavioral parameters were assessed. Therefore, mice were evaluated for mechanical hyperalgesia (von Frey), motor coordination (Rota-rod) and muscle strength (Grip Strength Metter) in a mice fibromyalgia model. After 27 days, we evaluated the central nervous system (CNS) pathways involved in the effect induced by experimental drugs through immunofluorescence protocol to Fos protein. The differential scanning analysis (DSC), thermogravimetry/derivate thermogravimetry (TG/DTG) and infrared absorption spectroscopy (FTIR) curves indicated that the products prepared were able to incorporate the LEO efficiently. Oral treatment with LEO or LEO-βCD, at all doses tested, produced a significant reduction of mechanical hyperalgesia and we were able to significantly increase Fos protein expression. Together, our results provide evidence that LEO, isolated or complexed with β-CD, produces analgesic effects on chronic non-inflammatory pain as fibromyalgia. MDPI 2014-12-29 /pmc/articles/PMC4307262/ /pubmed/25551603 http://dx.doi.org/10.3390/ijms16010547 Text en © 2014 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Nascimento, Simone S.
Araújo, Adriano A. S.
Brito, Renan G.
Serafini, Mairim R.
Menezes, Paula P.
DeSantana, Josimari M.
Lucca Júnior, Waldecy
Alves, Pericles B.
Blank, Arie F.
Oliveira, Rita C. M.
Oliveira, Aldeidia P.
Albuquerque-Júnior, Ricardo L. C.
Almeida, Jackson R. G. S.
Quintans-Júnior, Lucindo J.
Cyclodextrin-Complexed Ocimum basilicum Leaves Essential Oil Increases Fos Protein Expression in the Central Nervous System and Produce an Antihyperalgesic Effect in Animal Models for Fibromyalgia
title Cyclodextrin-Complexed Ocimum basilicum Leaves Essential Oil Increases Fos Protein Expression in the Central Nervous System and Produce an Antihyperalgesic Effect in Animal Models for Fibromyalgia
title_full Cyclodextrin-Complexed Ocimum basilicum Leaves Essential Oil Increases Fos Protein Expression in the Central Nervous System and Produce an Antihyperalgesic Effect in Animal Models for Fibromyalgia
title_fullStr Cyclodextrin-Complexed Ocimum basilicum Leaves Essential Oil Increases Fos Protein Expression in the Central Nervous System and Produce an Antihyperalgesic Effect in Animal Models for Fibromyalgia
title_full_unstemmed Cyclodextrin-Complexed Ocimum basilicum Leaves Essential Oil Increases Fos Protein Expression in the Central Nervous System and Produce an Antihyperalgesic Effect in Animal Models for Fibromyalgia
title_short Cyclodextrin-Complexed Ocimum basilicum Leaves Essential Oil Increases Fos Protein Expression in the Central Nervous System and Produce an Antihyperalgesic Effect in Animal Models for Fibromyalgia
title_sort cyclodextrin-complexed ocimum basilicum leaves essential oil increases fos protein expression in the central nervous system and produce an antihyperalgesic effect in animal models for fibromyalgia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4307262/
https://www.ncbi.nlm.nih.gov/pubmed/25551603
http://dx.doi.org/10.3390/ijms16010547
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