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Box–Behnken Design (BBD)-Based Optimization of Microwave-Assisted Extraction of Parthenolide from the Stems of Tarconanthus camphoratus and Cytotoxic Analysis

Parthenolide, a strong cytotoxic compound found in different parts of Tarchonanthus camphoratus which motivated the authors to develop an optimized microwave-assisted extraction (MEA) method using Box–Behnken design (BBD) for efficient extraction of parthenolide from the stem of T. camphoratus and i...

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Autores principales: Alam, Perwez, Siddiqui, Nasir Ali, Rehman, Md. Tabish, Hussain, Afzal, Akhtar, Ali, Mir, Showkat R., Alajmi, Mohamed Fahad
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8038025/
https://www.ncbi.nlm.nih.gov/pubmed/33810340
http://dx.doi.org/10.3390/molecules26071876
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author Alam, Perwez
Siddiqui, Nasir Ali
Rehman, Md. Tabish
Hussain, Afzal
Akhtar, Ali
Mir, Showkat R.
Alajmi, Mohamed Fahad
author_facet Alam, Perwez
Siddiqui, Nasir Ali
Rehman, Md. Tabish
Hussain, Afzal
Akhtar, Ali
Mir, Showkat R.
Alajmi, Mohamed Fahad
author_sort Alam, Perwez
collection PubMed
description Parthenolide, a strong cytotoxic compound found in different parts of Tarchonanthus camphoratus which motivated the authors to develop an optimized microwave-assisted extraction (MEA) method using Box–Behnken design (BBD) for efficient extraction of parthenolide from the stem of T. camphoratus and its validation by high-performance thin-layer chromatography (HPTLC) and cytotoxic analysis. The optimized parameters for microwave extraction were determined as: 51.5 °C extraction temperature, 50.8 min extraction time, and 211 W microwave power. A quadratic polynomial model was found the most suitable model with R(2) of 0.9989 and coefficient of variation (CV) of 0.2898%. The high values of adjusted R(2) (0.9974), predicted R(2) (0.9945), and signal-to-noise ratio (74.23) indicated a good correlation and adequate signal, respectively. HPTLC analyzed the parthenolide (R(f) = 0.16) content in T. camphoratus methanol extract (TCME) at λ(max) = 575 nm and found it as 0.9273% ± 0.0487% w/w, which was a higher than expected yield (0.9157% w/w). The TCME exhibited good cytotoxicity against HepG2 and MCF-7 cell lines (IC(50) = 30.87 and 35.41 µg/mL, respectively), which further supported our findings of high parthenolide content in TCME. This optimized MAE method can be further applied to efficiently extract parthenolide from marketed herbal supplements containing different Tarconanthus species.
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spelling pubmed-80380252021-04-12 Box–Behnken Design (BBD)-Based Optimization of Microwave-Assisted Extraction of Parthenolide from the Stems of Tarconanthus camphoratus and Cytotoxic Analysis Alam, Perwez Siddiqui, Nasir Ali Rehman, Md. Tabish Hussain, Afzal Akhtar, Ali Mir, Showkat R. Alajmi, Mohamed Fahad Molecules Article Parthenolide, a strong cytotoxic compound found in different parts of Tarchonanthus camphoratus which motivated the authors to develop an optimized microwave-assisted extraction (MEA) method using Box–Behnken design (BBD) for efficient extraction of parthenolide from the stem of T. camphoratus and its validation by high-performance thin-layer chromatography (HPTLC) and cytotoxic analysis. The optimized parameters for microwave extraction were determined as: 51.5 °C extraction temperature, 50.8 min extraction time, and 211 W microwave power. A quadratic polynomial model was found the most suitable model with R(2) of 0.9989 and coefficient of variation (CV) of 0.2898%. The high values of adjusted R(2) (0.9974), predicted R(2) (0.9945), and signal-to-noise ratio (74.23) indicated a good correlation and adequate signal, respectively. HPTLC analyzed the parthenolide (R(f) = 0.16) content in T. camphoratus methanol extract (TCME) at λ(max) = 575 nm and found it as 0.9273% ± 0.0487% w/w, which was a higher than expected yield (0.9157% w/w). The TCME exhibited good cytotoxicity against HepG2 and MCF-7 cell lines (IC(50) = 30.87 and 35.41 µg/mL, respectively), which further supported our findings of high parthenolide content in TCME. This optimized MAE method can be further applied to efficiently extract parthenolide from marketed herbal supplements containing different Tarconanthus species. MDPI 2021-03-26 /pmc/articles/PMC8038025/ /pubmed/33810340 http://dx.doi.org/10.3390/molecules26071876 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) ).
spellingShingle Article
Alam, Perwez
Siddiqui, Nasir Ali
Rehman, Md. Tabish
Hussain, Afzal
Akhtar, Ali
Mir, Showkat R.
Alajmi, Mohamed Fahad
Box–Behnken Design (BBD)-Based Optimization of Microwave-Assisted Extraction of Parthenolide from the Stems of Tarconanthus camphoratus and Cytotoxic Analysis
title Box–Behnken Design (BBD)-Based Optimization of Microwave-Assisted Extraction of Parthenolide from the Stems of Tarconanthus camphoratus and Cytotoxic Analysis
title_full Box–Behnken Design (BBD)-Based Optimization of Microwave-Assisted Extraction of Parthenolide from the Stems of Tarconanthus camphoratus and Cytotoxic Analysis
title_fullStr Box–Behnken Design (BBD)-Based Optimization of Microwave-Assisted Extraction of Parthenolide from the Stems of Tarconanthus camphoratus and Cytotoxic Analysis
title_full_unstemmed Box–Behnken Design (BBD)-Based Optimization of Microwave-Assisted Extraction of Parthenolide from the Stems of Tarconanthus camphoratus and Cytotoxic Analysis
title_short Box–Behnken Design (BBD)-Based Optimization of Microwave-Assisted Extraction of Parthenolide from the Stems of Tarconanthus camphoratus and Cytotoxic Analysis
title_sort box–behnken design (bbd)-based optimization of microwave-assisted extraction of parthenolide from the stems of tarconanthus camphoratus and cytotoxic analysis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8038025/
https://www.ncbi.nlm.nih.gov/pubmed/33810340
http://dx.doi.org/10.3390/molecules26071876
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