Optimization of Pagoda (Clerodendrum paniculatum L.) Extraction Based By Analytical Factorial Design Approach, Its Phytochemical Compound, and Cytotoxicity Activity
One of the successful determinants of active compounds extraction from plant material depends mainly on the extraction procedures, including the type of solvents, plant materials, and extraction techniques used in the extraction procedure. This research aimed to optimize Pagoda's extraction yie...
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id-ugm-repo.2832802023-11-20T04:00:16Z https://repository.ugm.ac.id/283280/ Optimization of Pagoda (Clerodendrum paniculatum L.) Extraction Based By Analytical Factorial Design Approach, Its Phytochemical Compound, and Cytotoxicity Activity Yasir, Budiman Astuti, Ayun D. Raihan, Muhammad Natzir, Rosdiana Subehan, Subehan Rohman, Abdul Alam, Gemini Pharmaceutical Sciences One of the successful determinants of active compounds extraction from plant material depends mainly on the extraction procedures, including the type of solvents, plant materials, and extraction techniques used in the extraction procedure. This research aimed to optimize Pagoda's extraction yields (Clerodendrum paniculatum L.) using several types of solvents and extraction techniques and to evaluate the cytotoxic activity of extracts obtained. The various solvents include water, methanol, hexane, and ethanol, while the extraction techniques used were maceration, microwave-assisted extraction (MAE), and reflux. The flowers, leaves, and stems were also extracted to represent parts of the plants. Screening of secondary metabolites was carried out using thin-layer chromatography (TLC), while cytotoxic activity was tested against Artemia salina. The highest yield of extract was obtained using water, followed by methanol > ethanol > hexane. The most effective extraction methods were the reflux method, followed by MAE and maceration. Analysis of variance (ANOVA) showed that the linear model of plant parts, solvents, and interactions between factors showed significant effects on yield (P < 0.05). The studied extracts contain secondary metabolites of terpenoids, flavonoids, alkaloids, and tannins. These extracts were also very toxic to Artemia salina; therefore, they can be developed as anticancer. © 2022 National Information and Documentation Center. NIDOC (Nat.Inform.Document.Centre) 2022 Article PeerReviewed application/pdf en https://repository.ugm.ac.id/283280/1/Optimization%20of%20Pagoda%20%28Clerodendrum%20paniculatum%20L.%29%20Extraction%20Based.pdf Yasir, Budiman and Astuti, Ayun D. and Raihan, Muhammad and Natzir, Rosdiana and Subehan, Subehan and Rohman, Abdul and Alam, Gemini (2022) Optimization of Pagoda (Clerodendrum paniculatum L.) Extraction Based By Analytical Factorial Design Approach, Its Phytochemical Compound, and Cytotoxicity Activity. Egyptian Journal of Chemistry, 65 (9). 421 -430. ISSN 04492285 https://www.scopus.com/inward/record.uri?eid=2-s2.0-85131636319&doi=10.21608%2fEJCHEM.2022.82407.4060&partnerID=40&md5=ac9ffc3ec5290f43d982a61f7d0b1d34 |
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Pharmaceutical Sciences Yasir, Budiman Astuti, Ayun D. Raihan, Muhammad Natzir, Rosdiana Subehan, Subehan Rohman, Abdul Alam, Gemini Optimization of Pagoda (Clerodendrum paniculatum L.) Extraction Based By Analytical Factorial Design Approach, Its Phytochemical Compound, and Cytotoxicity Activity |
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One of the successful determinants of active compounds extraction from plant material depends mainly on the extraction procedures, including the type of solvents, plant materials, and extraction techniques used in the extraction procedure. This research aimed to optimize Pagoda's extraction yields (Clerodendrum paniculatum L.) using several types of solvents and extraction techniques and to evaluate the cytotoxic activity of extracts obtained. The various solvents include water, methanol, hexane, and ethanol, while the extraction techniques used were maceration, microwave-assisted extraction (MAE), and reflux. The flowers, leaves, and stems were also extracted to represent parts of the plants. Screening of secondary metabolites was carried out using thin-layer chromatography (TLC), while cytotoxic activity was tested against Artemia salina. The highest yield of extract was obtained using water, followed by methanol > ethanol > hexane. The most effective extraction methods were the reflux method, followed by MAE and maceration. Analysis of variance (ANOVA) showed that the linear model of plant parts, solvents, and interactions between factors showed significant effects on yield (P < 0.05). The studied extracts contain secondary metabolites of terpenoids, flavonoids, alkaloids, and tannins. These extracts were also very toxic to Artemia salina; therefore, they can be developed as anticancer. © 2022 National Information and Documentation Center. |
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Article PeerReviewed |
author |
Yasir, Budiman Astuti, Ayun D. Raihan, Muhammad Natzir, Rosdiana Subehan, Subehan Rohman, Abdul Alam, Gemini |
author_facet |
Yasir, Budiman Astuti, Ayun D. Raihan, Muhammad Natzir, Rosdiana Subehan, Subehan Rohman, Abdul Alam, Gemini |
author_sort |
Yasir, Budiman |
title |
Optimization of Pagoda (Clerodendrum paniculatum L.) Extraction Based By Analytical Factorial Design Approach, Its Phytochemical Compound, and Cytotoxicity Activity |
title_short |
Optimization of Pagoda (Clerodendrum paniculatum L.) Extraction Based By Analytical Factorial Design Approach, Its Phytochemical Compound, and Cytotoxicity Activity |
title_full |
Optimization of Pagoda (Clerodendrum paniculatum L.) Extraction Based By Analytical Factorial Design Approach, Its Phytochemical Compound, and Cytotoxicity Activity |
title_fullStr |
Optimization of Pagoda (Clerodendrum paniculatum L.) Extraction Based By Analytical Factorial Design Approach, Its Phytochemical Compound, and Cytotoxicity Activity |
title_full_unstemmed |
Optimization of Pagoda (Clerodendrum paniculatum L.) Extraction Based By Analytical Factorial Design Approach, Its Phytochemical Compound, and Cytotoxicity Activity |
title_sort |
optimization of pagoda (clerodendrum paniculatum l.) extraction based by analytical factorial design approach, its phytochemical compound, and cytotoxicity activity |
publisher |
NIDOC (Nat.Inform.Document.Centre) |
publishDate |
2022 |
url |
https://repository.ugm.ac.id/283280/1/Optimization%20of%20Pagoda%20%28Clerodendrum%20paniculatum%20L.%29%20Extraction%20Based.pdf https://repository.ugm.ac.id/283280/ https://www.scopus.com/inward/record.uri?eid=2-s2.0-85131636319&doi=10.21608%2fEJCHEM.2022.82407.4060&partnerID=40&md5=ac9ffc3ec5290f43d982a61f7d0b1d34 |
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