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Natural curcuminoids encapsulated in layered double hydroxides: a novel antimicrobial nanohybrid

Currently, there is an increased scientific interest to discover plant based drug formulations with improved therapeutic potential. Among the cornucopia of traditional medicinal plants, Curcuma longa rhizomes have been used as a powerful antibacterial and antifungal agent. However, its practical app...

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Autores principales: Megalathan, Ajona, Kumarage, Sajeewani, Dilhari, Ayomi, Weerasekera, Manjula M., Samarasinghe, Siromi, Kottegoda, Nilwala
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Springer International Publishing 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4888422/
https://www.ncbi.nlm.nih.gov/pubmed/27252776
http://dx.doi.org/10.1186/s13065-016-0179-7
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author Megalathan, Ajona
Kumarage, Sajeewani
Dilhari, Ayomi
Weerasekera, Manjula M.
Samarasinghe, Siromi
Kottegoda, Nilwala
author_facet Megalathan, Ajona
Kumarage, Sajeewani
Dilhari, Ayomi
Weerasekera, Manjula M.
Samarasinghe, Siromi
Kottegoda, Nilwala
author_sort Megalathan, Ajona
collection PubMed
description Currently, there is an increased scientific interest to discover plant based drug formulations with improved therapeutic potential. Among the cornucopia of traditional medicinal plants, Curcuma longa rhizomes have been used as a powerful antibacterial and antifungal agent. However, its practical applications are limited due to its instability under thermal and UV radiation and its low bioavailability and the extensive procedures needed for isolation. This study focuses on exploring the potential of nanotechnology-based approaches to stabilize the natural curcuminoids, the major active components in turmeric without the need for its isolation, and to evaluate the release characteristics, stability and antimicrobial activity of the resulting nanohybrids. Natural curcuminoids were selectively encapsulated into nanolayers present in Mg–Al-layered double hydroxides (LDHs) using a method that avoids any isolation of the curcuminoids. The products were characterized using solid state techniques, while thermal and photo-stability were studied using thermogravimetric analysis (TGA) and UV exposure data. The morphological features were studied using scanning electron microscope (SEM) and transmission electron microscope (TEM). Drug release characteristics of the nanohybrid were quantitatively monitored under pH 3 and 5, and therapeutic potentials were assessed by using distinctive kinetic models. Finally, the antimicrobial activity of curcuminoids-LDH was tested against three bacterial and two fungal species. Powder X-ray diffraction, Fourier transform infra-red spectroscopy, SEM and TEM data confirmed the successful and selective encapsulation of curcuminoids in the LDH, while the TGA and UV exposure data suggested the stabilization of curcuminoids within the LDH matrix. The LDH demonstrated a slow and a sustained release of the curcuminoids in an acidic medium, while it was active against the three bacteria and two fungal species used in this study, suggesting its potential applications in pharmaceutical industry. [Figure: see text] ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13065-016-0179-7) contains supplementary material, which is available to authorized users.
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spelling pubmed-48884222016-06-02 Natural curcuminoids encapsulated in layered double hydroxides: a novel antimicrobial nanohybrid Megalathan, Ajona Kumarage, Sajeewani Dilhari, Ayomi Weerasekera, Manjula M. Samarasinghe, Siromi Kottegoda, Nilwala Chem Cent J Research Article Currently, there is an increased scientific interest to discover plant based drug formulations with improved therapeutic potential. Among the cornucopia of traditional medicinal plants, Curcuma longa rhizomes have been used as a powerful antibacterial and antifungal agent. However, its practical applications are limited due to its instability under thermal and UV radiation and its low bioavailability and the extensive procedures needed for isolation. This study focuses on exploring the potential of nanotechnology-based approaches to stabilize the natural curcuminoids, the major active components in turmeric without the need for its isolation, and to evaluate the release characteristics, stability and antimicrobial activity of the resulting nanohybrids. Natural curcuminoids were selectively encapsulated into nanolayers present in Mg–Al-layered double hydroxides (LDHs) using a method that avoids any isolation of the curcuminoids. The products were characterized using solid state techniques, while thermal and photo-stability were studied using thermogravimetric analysis (TGA) and UV exposure data. The morphological features were studied using scanning electron microscope (SEM) and transmission electron microscope (TEM). Drug release characteristics of the nanohybrid were quantitatively monitored under pH 3 and 5, and therapeutic potentials were assessed by using distinctive kinetic models. Finally, the antimicrobial activity of curcuminoids-LDH was tested against three bacterial and two fungal species. Powder X-ray diffraction, Fourier transform infra-red spectroscopy, SEM and TEM data confirmed the successful and selective encapsulation of curcuminoids in the LDH, while the TGA and UV exposure data suggested the stabilization of curcuminoids within the LDH matrix. The LDH demonstrated a slow and a sustained release of the curcuminoids in an acidic medium, while it was active against the three bacteria and two fungal species used in this study, suggesting its potential applications in pharmaceutical industry. [Figure: see text] ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1186/s13065-016-0179-7) contains supplementary material, which is available to authorized users. Springer International Publishing 2016-05-31 /pmc/articles/PMC4888422/ /pubmed/27252776 http://dx.doi.org/10.1186/s13065-016-0179-7 Text en © The Author(s) 2016 Open AccessThis article is distributed under the terms of the Creative Commons Attribution 4.0 International License (http://creativecommons.org/licenses/by/4.0/), which permits unrestricted use, distribution, and reproduction in any medium, provided you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The Creative Commons Public Domain Dedication waiver (http://creativecommons.org/publicdomain/zero/1.0/) applies to the data made available in this article, unless otherwise stated.
spellingShingle Research Article
Megalathan, Ajona
Kumarage, Sajeewani
Dilhari, Ayomi
Weerasekera, Manjula M.
Samarasinghe, Siromi
Kottegoda, Nilwala
Natural curcuminoids encapsulated in layered double hydroxides: a novel antimicrobial nanohybrid
title Natural curcuminoids encapsulated in layered double hydroxides: a novel antimicrobial nanohybrid
title_full Natural curcuminoids encapsulated in layered double hydroxides: a novel antimicrobial nanohybrid
title_fullStr Natural curcuminoids encapsulated in layered double hydroxides: a novel antimicrobial nanohybrid
title_full_unstemmed Natural curcuminoids encapsulated in layered double hydroxides: a novel antimicrobial nanohybrid
title_short Natural curcuminoids encapsulated in layered double hydroxides: a novel antimicrobial nanohybrid
title_sort natural curcuminoids encapsulated in layered double hydroxides: a novel antimicrobial nanohybrid
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4888422/
https://www.ncbi.nlm.nih.gov/pubmed/27252776
http://dx.doi.org/10.1186/s13065-016-0179-7
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