Reflux extraction and cleanup process by column chromatography for high yield of andrographolide enriched extract

Andrographis paniculata is widely used by local people from Southeast Asia countries for traditional medication. Recently, the demand for this herb and its extract is in the increasing trend, particularly for herbal related product development. Therefore, this study investigated the optimization of...

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Main Authors: Chua, L. S., Latiff, N. A., Mohamad, M.
Format: Article
Published: Elsevier GmbH 2016
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Online Access:http://eprints.utm.my/id/eprint/72557/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84958212107&doi=10.1016%2fj.jarmap.2016.01.004&partnerID=40&md5=db88c0b766c1045b42202c457a094a83
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spelling my.utm.725572017-11-27T08:58:09Z http://eprints.utm.my/id/eprint/72557/ Reflux extraction and cleanup process by column chromatography for high yield of andrographolide enriched extract Chua, L. S. Latiff, N. A. Mohamad, M. TP Chemical technology Andrographis paniculata is widely used by local people from Southeast Asia countries for traditional medication. Recently, the demand for this herb and its extract is in the increasing trend, particularly for herbal related product development. Therefore, this study investigated the optimization of A. paniculata extraction in a reflux system, and the fractionation of the plant crude extract for andrographolide enriched extract using column chromatography. The extraction variables such as the ratio of plant leaves to solvent (1:9), extraction temperature (73 °C) and time (1.9 h) were optimized by the desirability, 0.85 based on the three levels and three factors of Box-Behnken design. The yield of extraction (17.2% w/w) and the concentration of andrographolide (140.5 ppm) were the responses for the optimization using a quadratic model in the response surface methodology. A pattern recognition tool of principle component analysis was used to determine the similarity of the andrographolide enriched extracts, in term of their chemical composition produced from the column chromatography at different ethanol concentrations (20-100%) as eluent. The first principle component explained for >40% of the total variance, which explained the high similarity of chemical composition in the extracts. The eluent system of 40% ethanol was chosen for andrographolide fractionation as it required the lowest volume of eluent (950 mL) for high concentration of andrographolide production (1.9% w/w). The combination of reflux extraction with column chromatography was successfully used for the preparation of andrographolide enriched extract. Elsevier GmbH 2016 Article PeerReviewed Chua, L. S. and Latiff, N. A. and Mohamad, M. (2016) Reflux extraction and cleanup process by column chromatography for high yield of andrographolide enriched extract. Journal of Applied Research on Medicinal and Aromatic Plants, 3 (2). pp. 64-70. ISSN 2214-7861 https://www.scopus.com/inward/record.uri?eid=2-s2.0-84958212107&doi=10.1016%2fj.jarmap.2016.01.004&partnerID=40&md5=db88c0b766c1045b42202c457a094a83
institution Universiti Teknologi Malaysia
building UTM Library
collection Institutional Repository
continent Asia
country Malaysia
content_provider Universiti Teknologi Malaysia
content_source UTM Institutional Repository
url_provider http://eprints.utm.my/
topic TP Chemical technology
spellingShingle TP Chemical technology
Chua, L. S.
Latiff, N. A.
Mohamad, M.
Reflux extraction and cleanup process by column chromatography for high yield of andrographolide enriched extract
description Andrographis paniculata is widely used by local people from Southeast Asia countries for traditional medication. Recently, the demand for this herb and its extract is in the increasing trend, particularly for herbal related product development. Therefore, this study investigated the optimization of A. paniculata extraction in a reflux system, and the fractionation of the plant crude extract for andrographolide enriched extract using column chromatography. The extraction variables such as the ratio of plant leaves to solvent (1:9), extraction temperature (73 °C) and time (1.9 h) were optimized by the desirability, 0.85 based on the three levels and three factors of Box-Behnken design. The yield of extraction (17.2% w/w) and the concentration of andrographolide (140.5 ppm) were the responses for the optimization using a quadratic model in the response surface methodology. A pattern recognition tool of principle component analysis was used to determine the similarity of the andrographolide enriched extracts, in term of their chemical composition produced from the column chromatography at different ethanol concentrations (20-100%) as eluent. The first principle component explained for >40% of the total variance, which explained the high similarity of chemical composition in the extracts. The eluent system of 40% ethanol was chosen for andrographolide fractionation as it required the lowest volume of eluent (950 mL) for high concentration of andrographolide production (1.9% w/w). The combination of reflux extraction with column chromatography was successfully used for the preparation of andrographolide enriched extract.
format Article
author Chua, L. S.
Latiff, N. A.
Mohamad, M.
author_facet Chua, L. S.
Latiff, N. A.
Mohamad, M.
author_sort Chua, L. S.
title Reflux extraction and cleanup process by column chromatography for high yield of andrographolide enriched extract
title_short Reflux extraction and cleanup process by column chromatography for high yield of andrographolide enriched extract
title_full Reflux extraction and cleanup process by column chromatography for high yield of andrographolide enriched extract
title_fullStr Reflux extraction and cleanup process by column chromatography for high yield of andrographolide enriched extract
title_full_unstemmed Reflux extraction and cleanup process by column chromatography for high yield of andrographolide enriched extract
title_sort reflux extraction and cleanup process by column chromatography for high yield of andrographolide enriched extract
publisher Elsevier GmbH
publishDate 2016
url http://eprints.utm.my/id/eprint/72557/
https://www.scopus.com/inward/record.uri?eid=2-s2.0-84958212107&doi=10.1016%2fj.jarmap.2016.01.004&partnerID=40&md5=db88c0b766c1045b42202c457a094a83
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