Drug interactions between the ethanolic extract of Maytenus macrocarpa “chuchuhuasi” bark and antidepressants in albino mice
Descripción del Articulo
Objective: To evaluate the potential drug interactions between the ethanolic extract of Maytenus macrocarpa “chuchuhuasi” bark and two commonly used antidepressants, fluoxetine and amitriptyline, in an experimental model using male albino mice. Materials and methods: Twenty-one experimental groups o...
| Autores: | , |
|---|---|
| Formato: | artículo |
| Fecha de Publicación: | 2025 |
| Institución: | Universidad de San Martín de Porres |
| Repositorio: | Horizonte médico |
| Lenguaje: | español inglés |
| OAI Identifier: | oai:horizontemedico.usmp.edu.pe:article/3878 |
| Enlace del recurso: | https://horizontemedico.usmp.edu.pe/index.php/horizontemed/article/view/3878 |
| Nivel de acceso: | acceso abierto |
| Materia: | Interacciones Farmacológicas Maytenus Sinergismo Farmacológico Antidepresivos Corteza de la Planta Drug Interactions Drug Synergism Antidepressive Agents Plant Bark |
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Drug interactions between the ethanolic extract of Maytenus macrocarpa “chuchuhuasi” bark and antidepressants in albino mice Interacciones farmacológicas entre el extracto etanólico de la corteza de Maytenus macrocarpa “chuchuhuasi” y los fármacos antidepresivos en ratones albinos |
| title |
Drug interactions between the ethanolic extract of Maytenus macrocarpa “chuchuhuasi” bark and antidepressants in albino mice |
| spellingShingle |
Drug interactions between the ethanolic extract of Maytenus macrocarpa “chuchuhuasi” bark and antidepressants in albino mice Huaccho, Juan Jesus Interacciones Farmacológicas Maytenus Sinergismo Farmacológico Antidepresivos Corteza de la Planta Drug Interactions Maytenus Drug Synergism Antidepressive Agents Plant Bark |
| title_short |
Drug interactions between the ethanolic extract of Maytenus macrocarpa “chuchuhuasi” bark and antidepressants in albino mice |
| title_full |
Drug interactions between the ethanolic extract of Maytenus macrocarpa “chuchuhuasi” bark and antidepressants in albino mice |
| title_fullStr |
Drug interactions between the ethanolic extract of Maytenus macrocarpa “chuchuhuasi” bark and antidepressants in albino mice |
| title_full_unstemmed |
Drug interactions between the ethanolic extract of Maytenus macrocarpa “chuchuhuasi” bark and antidepressants in albino mice |
| title_sort |
Drug interactions between the ethanolic extract of Maytenus macrocarpa “chuchuhuasi” bark and antidepressants in albino mice |
| dc.creator.none.fl_str_mv |
Huaccho, Juan Jesus Salazar Granara, Alberto |
| author |
Huaccho, Juan Jesus |
| author_facet |
Huaccho, Juan Jesus Salazar Granara, Alberto |
| author_role |
author |
| author2 |
Salazar Granara, Alberto |
| author2_role |
author |
| dc.subject.none.fl_str_mv |
Interacciones Farmacológicas Maytenus Sinergismo Farmacológico Antidepresivos Corteza de la Planta Drug Interactions Maytenus Drug Synergism Antidepressive Agents Plant Bark |
| topic |
Interacciones Farmacológicas Maytenus Sinergismo Farmacológico Antidepresivos Corteza de la Planta Drug Interactions Maytenus Drug Synergism Antidepressive Agents Plant Bark |
| description |
Objective: To evaluate the potential drug interactions between the ethanolic extract of Maytenus macrocarpa “chuchuhuasi” bark and two commonly used antidepressants, fluoxetine and amitriptyline, in an experimental model using male albino mice. Materials and methods: Twenty-one experimental groups of male albino mice, randomly assigned and weighing approximately 30 g, were used. Different doses of fluoxetine (20 and 40 mg/kg), amitriptyline (10 and 15 mg/kg), and ethanolic extract of M. macrocarpa bark (500, 750, and 1000 mg/kg) were administered. Additionally, groups combining the extract and antidepressants were formed, along with blank and placebo control groups. Neuropharmacological activity was assessed through the forced swim test to evaluate depression-related behavior and the Irwin test to record overall behavioral and neurological effects. Data were statistically analyzed using one-way ANOVA with Tukey’s post hoc test for normally distributed variables, the Kruskal–Wallis test with Dunn’s post hoc test for non-parametric variables, and Fisher’s exact test for qualitative data from the Irwin test. Results: Statistically significant differences (p < 0.05) were found among the experimental groups. In the forced swim test, an antagonistic effect was detected when combining 500 mg/kg of the extract and either antidepressant. Conversely, at 1000 mg/kg of the extract, a synergistic effect was observed with fluoxetine 20 mg/kg and amitriptyline 10 mg/kg. The Irwin test revealed significant differences in parameters such as sedation, excitation, gait abnormalities, abdominal contractions, piloerection, and stereotyped behaviors, confirming interactions between the tested compounds. Conclusions: These findings provide relevant preliminary data on pharmacological interactions between the ethanolic extract of M. macrocarpa and the evaluated antidepressants, contributing valuable information to experimental pharmacology. Nevertheless, furtherstudies including biochemical analyses are required to clarify the underlying mechanisms involved and validate these results within a clinical context. |
| publishDate |
2025 |
| dc.date.none.fl_str_mv |
2025-12-03 |
| dc.type.none.fl_str_mv |
info:eu-repo/semantics/article info:eu-repo/semantics/publishedVersion |
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article |
| status_str |
publishedVersion |
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https://horizontemedico.usmp.edu.pe/index.php/horizontemed/article/view/3878 10.24265/horizmed.2025.v25n4.07 |
| url |
https://horizontemedico.usmp.edu.pe/index.php/horizontemed/article/view/3878 |
| identifier_str_mv |
10.24265/horizmed.2025.v25n4.07 |
| dc.language.none.fl_str_mv |
spa eng |
| language |
spa eng |
| dc.relation.none.fl_str_mv |
https://horizontemedico.usmp.edu.pe/index.php/horizontemed/article/view/3878/2493 https://horizontemedico.usmp.edu.pe/index.php/horizontemed/article/view/3878/2513 https://horizontemedico.usmp.edu.pe/index.php/horizontemed/article/view/3878/2578 https://horizontemedico.usmp.edu.pe/index.php/horizontemed/article/view/3878/2723 |
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Derechos de autor 2025 Horizonte Médico (Lima) https://creativecommons.org/licenses/by/4.0 info:eu-repo/semantics/openAccess |
| rights_invalid_str_mv |
Derechos de autor 2025 Horizonte Médico (Lima) https://creativecommons.org/licenses/by/4.0 |
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openAccess |
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application/pdf text/xml application/pdf text/xml |
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Universidad de San Martín de Porres. Facultad de Medicina Humana |
| publisher.none.fl_str_mv |
Universidad de San Martín de Porres. Facultad de Medicina Humana |
| dc.source.none.fl_str_mv |
Horizonte Médico (Lima); v. 25 n. 4 (2025): Outubro–Dezembro; e3878 Horizonte Médico (Lima); Vol. 25 Núm. 4 (2025): Octubre-Diciembre; e3878 Horizonte Médico (Lima); Vol. 25 No. 4 (2025): October–December; e3878 2227-3530 1727-558X 10.24265/ reponame:Horizonte médico instname:Universidad de San Martín de Porres instacron:USMP |
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Universidad de San Martín de Porres |
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USMP |
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Horizonte médico |
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Horizonte médico |
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Drug interactions between the ethanolic extract of Maytenus macrocarpa “chuchuhuasi” bark and antidepressants in albino miceInteracciones farmacológicas entre el extracto etanólico de la corteza de Maytenus macrocarpa “chuchuhuasi” y los fármacos antidepresivos en ratones albinosHuaccho, Juan JesusSalazar Granara, Alberto Interacciones Farmacológicas Maytenus Sinergismo Farmacológico Antidepresivos Corteza de la PlantaDrug Interactions Maytenus Drug Synergism Antidepressive Agents Plant BarkObjective: To evaluate the potential drug interactions between the ethanolic extract of Maytenus macrocarpa “chuchuhuasi” bark and two commonly used antidepressants, fluoxetine and amitriptyline, in an experimental model using male albino mice. Materials and methods: Twenty-one experimental groups of male albino mice, randomly assigned and weighing approximately 30 g, were used. Different doses of fluoxetine (20 and 40 mg/kg), amitriptyline (10 and 15 mg/kg), and ethanolic extract of M. macrocarpa bark (500, 750, and 1000 mg/kg) were administered. Additionally, groups combining the extract and antidepressants were formed, along with blank and placebo control groups. Neuropharmacological activity was assessed through the forced swim test to evaluate depression-related behavior and the Irwin test to record overall behavioral and neurological effects. Data were statistically analyzed using one-way ANOVA with Tukey’s post hoc test for normally distributed variables, the Kruskal–Wallis test with Dunn’s post hoc test for non-parametric variables, and Fisher’s exact test for qualitative data from the Irwin test. Results: Statistically significant differences (p < 0.05) were found among the experimental groups. In the forced swim test, an antagonistic effect was detected when combining 500 mg/kg of the extract and either antidepressant. Conversely, at 1000 mg/kg of the extract, a synergistic effect was observed with fluoxetine 20 mg/kg and amitriptyline 10 mg/kg. The Irwin test revealed significant differences in parameters such as sedation, excitation, gait abnormalities, abdominal contractions, piloerection, and stereotyped behaviors, confirming interactions between the tested compounds. Conclusions: These findings provide relevant preliminary data on pharmacological interactions between the ethanolic extract of M. macrocarpa and the evaluated antidepressants, contributing valuable information to experimental pharmacology. Nevertheless, furtherstudies including biochemical analyses are required to clarify the underlying mechanisms involved and validate these results within a clinical context.Objetivo: Evaluar las posibles interacciones farmacológicas entre el extracto etanólico de la corteza de Maytenus macrocarpa (“chuchuhuasi”) y dos antidepresivos de uso común, fluoxetina y amitriptilina, en un modelo experimental con ratones albinos machos. Materiales y métodos: Se emplearon 21 grupos experimentales con ratones albinos machos, asignados de manera aleatoria, con un peso promedio de 30 g. Se administraron diferentes dosis de fluoxetina (20 y 40 mg/kg), amitriptilina (10 y 15 mg/kg) y extracto etanólico de corteza de M. macrocarpa (500, 750 y 1000 mg/kg). Además, se conformaron grupos con combinaciones del extracto y los fármacos, junto con los controles blanco y placebo. La actividad neurofarmacológica se evaluó mediante la prueba de nado forzado, que permite medir la conducta relacionada con la depresión, y el test de Irwin, empleado para registrar efectos conductuales y neurológicos generales. Los datos se analizaron estadísticamente utilizando ANOVA de un factor con prueba post hoc de Tukey para variables con distribución normal; para variables no paramétricas, se aplicó la prueba de Kruskal-Wallis con post hoc de Dunn; y para los datos cualitativos del test de Irwin se utilizó la prueba exacta de Fisher. Resultados: Se hallaron diferencias estadísticamente significativas (p < 0,05) entre los grupos experimentales. En la prueba de nado forzado, se observó un efecto antagonista al combinar 500 mg/kg de extracto con ambos antidepresivos. En contraste, con 1000 mg/kg de extracto se evidenció un efecto sinérgico al administrarse junto con fluoxetina 20 mg/kg y amitriptilina 10 mg/kg. El test de Irwin mostró diferencias significativas en parámetros como sedación, excitación, alteraciones de la marcha, contracciones abdominales, piloerección y conductas estereotipadas, lo que confirma la presencia de interacciones entre los compuestos estudiados. Conclusiones: Estos resultados proporcionan datos preliminares relevantes sobre las interacciones farmacológicas entre el extracto etanólico de M. macrocarpa y los antidepresivos evaluados, y aportan información valiosa para la farmacología experimental. Sin embargo, se requieren estudios adicionales que incluyan análisis bioquímicos para clarificar los mecanismos involucrados y validar estas observaciones en un contexto clínico.Universidad de San Martín de Porres. Facultad de Medicina Humana2025-12-03info:eu-repo/semantics/articleinfo:eu-repo/semantics/publishedVersionapplication/pdftext/xmlapplication/pdftext/xmlhttps://horizontemedico.usmp.edu.pe/index.php/horizontemed/article/view/387810.24265/horizmed.2025.v25n4.07Horizonte Médico (Lima); v. 25 n. 4 (2025): Outubro–Dezembro; e3878Horizonte Médico (Lima); Vol. 25 Núm. 4 (2025): Octubre-Diciembre; e3878Horizonte Médico (Lima); Vol. 25 No. 4 (2025): October–December; e38782227-35301727-558X10.24265/reponame:Horizonte médicoinstname:Universidad de San Martín de Porresinstacron:USMPspaenghttps://horizontemedico.usmp.edu.pe/index.php/horizontemed/article/view/3878/2493https://horizontemedico.usmp.edu.pe/index.php/horizontemed/article/view/3878/2513https://horizontemedico.usmp.edu.pe/index.php/horizontemed/article/view/3878/2578https://horizontemedico.usmp.edu.pe/index.php/horizontemed/article/view/3878/2723Derechos de autor 2025 Horizonte Médico (Lima)https://creativecommons.org/licenses/by/4.0info:eu-repo/semantics/openAccessoai:horizontemedico.usmp.edu.pe:article/38782026-07-01T17:50:28Z |
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13.072473 |
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La información contenida en este registro es de entera responsabilidad de la institución que gestiona el repositorio institucional donde esta contenido este documento o set de datos. El CONCYTEC no se hace responsable por los contenidos (publicaciones y/o datos) accesibles a través del Repositorio Nacional Digital de Ciencia, Tecnología e Innovación de Acceso Abierto (ALICIA).