Amoebicidal and trichomonicidal capacity of polymeric nanoparticles loaded with extracts of the plants Curcuma longa (Zingiberaceae) and Berberis vulgaris (Berberidaceae)

Abstract Introduction: Pathogenic protozoans, like Entamoeba histolytica and Trichomonas vaginalis, represent a major health problem in tropical countries; and polymeric nanoparticles could be used to apply plant extracts against those parasites. Objective: To test Curcuma longa ethanolic extract and Berberis vulgaris methanolic extracts, and their main constituents, against two species of protozoans. Methods: We tested the extracts, as well as their main constituents, curcumin (Cur) and berberine (Ber), both non-encapsulated and encapsulated in polymeric nanoparticles (NPs), in vitro. We also determined nanoparticle characteristics by photon correlation spectroscopy and scanning electron microscopy, and hemolytic capacity by hemolysis in healthy erythrocytes. Results: C. longa consisted mainly of tannins, phenols, and flavonoids; and B. vulgaris in alkaloids. Encapsulated particles were more effective (P < 0.001); however, curcumin and berberine nanoparticles were the most effective treatments. CurNPs had IC50 values (µg/mL) of 9.48 and 4.25, against E. histolytica and T. vaginalis, respectively, and BerNPs 0.24 and 0.71. The particle size and encapsulation percentage for CurNPs and BerNPs were 66.5 and 73.4 nm, and 83.59 and 76.48 %, respectively. The NPs were spherical and significantly reduced hemolysis when compared to non-encapsulated extracts. Conclusions: NPs represent a useful and novel bioactive compound delivery system for therapy in diseases caused by protozoans.

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Main Authors: Pacheco-Ordaz,Alejandra, Sánchez-García,Eduardo, Quintanilla-Licea,Ramiro, Bazaldúa-Rodríguez,Aldo-Fabio, Pérez-Hernández,Raymundo-Alejandro, Hernández-García,Magda-Elizabeth, Báez-González,Juan-Gabriel, Castro-Ríos,Rocío, Elizondo-Luévano,Joel-Horacio, Chávez-Montes,Abelardo
Format: Digital revista
Language:English
Published: Universidad de Costa Rica 2022
Online Access:http://www.scielo.sa.cr/scielo.php?script=sci_arttext&pid=S0034-77442022000100319
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spelling oai:scielo:S0034-774420220001003192023-04-19Amoebicidal and trichomonicidal capacity of polymeric nanoparticles loaded with extracts of the plants Curcuma longa (Zingiberaceae) and Berberis vulgaris (Berberidaceae)Pacheco-Ordaz,AlejandraSánchez-García,EduardoQuintanilla-Licea,RamiroBazaldúa-Rodríguez,Aldo-FabioPérez-Hernández,Raymundo-AlejandroHernández-García,Magda-ElizabethBáez-González,Juan-GabrielCastro-Ríos,RocíoElizondo-Luévano,Joel-HoracioChávez-Montes,Abelardo antiparasitic activity berberine curcumin drug discovery nanoparticles natural products. Abstract Introduction: Pathogenic protozoans, like Entamoeba histolytica and Trichomonas vaginalis, represent a major health problem in tropical countries; and polymeric nanoparticles could be used to apply plant extracts against those parasites. Objective: To test Curcuma longa ethanolic extract and Berberis vulgaris methanolic extracts, and their main constituents, against two species of protozoans. Methods: We tested the extracts, as well as their main constituents, curcumin (Cur) and berberine (Ber), both non-encapsulated and encapsulated in polymeric nanoparticles (NPs), in vitro. We also determined nanoparticle characteristics by photon correlation spectroscopy and scanning electron microscopy, and hemolytic capacity by hemolysis in healthy erythrocytes. Results: C. longa consisted mainly of tannins, phenols, and flavonoids; and B. vulgaris in alkaloids. Encapsulated particles were more effective (P < 0.001); however, curcumin and berberine nanoparticles were the most effective treatments. CurNPs had IC50 values (µg/mL) of 9.48 and 4.25, against E. histolytica and T. vaginalis, respectively, and BerNPs 0.24 and 0.71. The particle size and encapsulation percentage for CurNPs and BerNPs were 66.5 and 73.4 nm, and 83.59 and 76.48 %, respectively. The NPs were spherical and significantly reduced hemolysis when compared to non-encapsulated extracts. Conclusions: NPs represent a useful and novel bioactive compound delivery system for therapy in diseases caused by protozoans.info:eu-repo/semantics/openAccessUniversidad de Costa RicaRevista de Biología Tropical v.70 n.1 20222022-12-01info:eu-repo/semantics/articletext/htmlhttp://www.scielo.sa.cr/scielo.php?script=sci_arttext&pid=S0034-77442022000100319en10.15517/rev.biol.trop..v70i1.48746
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language English
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author Pacheco-Ordaz,Alejandra
Sánchez-García,Eduardo
Quintanilla-Licea,Ramiro
Bazaldúa-Rodríguez,Aldo-Fabio
Pérez-Hernández,Raymundo-Alejandro
Hernández-García,Magda-Elizabeth
Báez-González,Juan-Gabriel
Castro-Ríos,Rocío
Elizondo-Luévano,Joel-Horacio
Chávez-Montes,Abelardo
spellingShingle Pacheco-Ordaz,Alejandra
Sánchez-García,Eduardo
Quintanilla-Licea,Ramiro
Bazaldúa-Rodríguez,Aldo-Fabio
Pérez-Hernández,Raymundo-Alejandro
Hernández-García,Magda-Elizabeth
Báez-González,Juan-Gabriel
Castro-Ríos,Rocío
Elizondo-Luévano,Joel-Horacio
Chávez-Montes,Abelardo
Amoebicidal and trichomonicidal capacity of polymeric nanoparticles loaded with extracts of the plants Curcuma longa (Zingiberaceae) and Berberis vulgaris (Berberidaceae)
author_facet Pacheco-Ordaz,Alejandra
Sánchez-García,Eduardo
Quintanilla-Licea,Ramiro
Bazaldúa-Rodríguez,Aldo-Fabio
Pérez-Hernández,Raymundo-Alejandro
Hernández-García,Magda-Elizabeth
Báez-González,Juan-Gabriel
Castro-Ríos,Rocío
Elizondo-Luévano,Joel-Horacio
Chávez-Montes,Abelardo
author_sort Pacheco-Ordaz,Alejandra
title Amoebicidal and trichomonicidal capacity of polymeric nanoparticles loaded with extracts of the plants Curcuma longa (Zingiberaceae) and Berberis vulgaris (Berberidaceae)
title_short Amoebicidal and trichomonicidal capacity of polymeric nanoparticles loaded with extracts of the plants Curcuma longa (Zingiberaceae) and Berberis vulgaris (Berberidaceae)
title_full Amoebicidal and trichomonicidal capacity of polymeric nanoparticles loaded with extracts of the plants Curcuma longa (Zingiberaceae) and Berberis vulgaris (Berberidaceae)
title_fullStr Amoebicidal and trichomonicidal capacity of polymeric nanoparticles loaded with extracts of the plants Curcuma longa (Zingiberaceae) and Berberis vulgaris (Berberidaceae)
title_full_unstemmed Amoebicidal and trichomonicidal capacity of polymeric nanoparticles loaded with extracts of the plants Curcuma longa (Zingiberaceae) and Berberis vulgaris (Berberidaceae)
title_sort amoebicidal and trichomonicidal capacity of polymeric nanoparticles loaded with extracts of the plants curcuma longa (zingiberaceae) and berberis vulgaris (berberidaceae)
description Abstract Introduction: Pathogenic protozoans, like Entamoeba histolytica and Trichomonas vaginalis, represent a major health problem in tropical countries; and polymeric nanoparticles could be used to apply plant extracts against those parasites. Objective: To test Curcuma longa ethanolic extract and Berberis vulgaris methanolic extracts, and their main constituents, against two species of protozoans. Methods: We tested the extracts, as well as their main constituents, curcumin (Cur) and berberine (Ber), both non-encapsulated and encapsulated in polymeric nanoparticles (NPs), in vitro. We also determined nanoparticle characteristics by photon correlation spectroscopy and scanning electron microscopy, and hemolytic capacity by hemolysis in healthy erythrocytes. Results: C. longa consisted mainly of tannins, phenols, and flavonoids; and B. vulgaris in alkaloids. Encapsulated particles were more effective (P < 0.001); however, curcumin and berberine nanoparticles were the most effective treatments. CurNPs had IC50 values (µg/mL) of 9.48 and 4.25, against E. histolytica and T. vaginalis, respectively, and BerNPs 0.24 and 0.71. The particle size and encapsulation percentage for CurNPs and BerNPs were 66.5 and 73.4 nm, and 83.59 and 76.48 %, respectively. The NPs were spherical and significantly reduced hemolysis when compared to non-encapsulated extracts. Conclusions: NPs represent a useful and novel bioactive compound delivery system for therapy in diseases caused by protozoans.
publisher Universidad de Costa Rica
publishDate 2022
url http://www.scielo.sa.cr/scielo.php?script=sci_arttext&pid=S0034-77442022000100319
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