Extraction of Rutin from the Leaf of Male Carica papaya Linn. using Microwave-Assisted and Ultrasound-Assisted Extractive Methods

Q4 Chemical Engineering ASEAN Journal of Chemical Engineering Pub Date : 2022-12-29 DOI:10.22146/ajche.77375
See Khai Chew, W. H. Teoh, S. Hong, R. Yusoff
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Saudi pharmaceutical journal, 28(11), 1466-1473. doi: https:// doi.org/10.1016/j.jsps.2020.09.012De Luna, S. L. R., Ramírez-Garza, R., & Saldívar, S. O. S. 2020. Environmentally Friendly Methods for Flavonoid Extraction from Plant Material: Impact of Their Operating Conditions on Yield and Antioxidant Properties. The Scientific World Journal, 2020.Ferreira, S. C., Bruns, R., Ferreira, H., Matos, G., David, J., Brandão, G., . . . Souza, A. 2007. Box-Behnken design: an alternative for the optimization of analytical methods. Analytica chimica acta, 597(2), 179-186.He, Q., Li, Y., Zhang, P., Zhang, A., & Wu, H. 2016. Optimisation of microwave-assisted extraction of flavonoids and phenolics from celery (Apium graveolens L.) leaves by response surface methodology. Czech Journal of Food Sciences, 34(4), 341-349.Hyun, S. B., Ko, M. N., & Hyun, C.-G. 2021. Carica papaya leaf water extract promotes innate immune response via mapk signaling pathways. Journal of Applied Biological Chemistry, 64(3), 277-284.Khadam, S., Afzal, U., Gul, H., Hira, S., Satti, M., Yaqub, A., . . . Gulfraz, M. 2019. Phytochemical screening and bioactivity assessment of leaves and fruits extract of Carica papaya. Pakistan journal of pharmaceutical sciences, 32(5).Latiff, N., Ong, P. Y., Abdullah, L. C., Abd Rashid, S. N. A., Fauzi, N. A. M., & Amin, N. A. M. 2021. Ultrasonic-Assisted Extraction (UAE) for Enhanced Recovery of Bioactive Phenolic Compounds From Cosmos Caudatus Leaves.Li, Y., Radoiu, M., Fabiano-Tixier, A.-S., & Chemat, F. 2013. From Laboratory to Industry: Scale-up of Microwave-Assisted Reactors, Quality and Safety Consideration for Microwave-Assisted Extraction. In (pp. 207-229).Ling, Y. Y., Fun, P. S., Yeop, A., Yusoff, M. M., & Gimbun, J. 2019. Assessment of maceration, ultrasonic and microwave assisted extraction for total phenolic content, total flavonoid content and kaempferol yield from Cassia alata via microstructures analysis. Materials Today: Proceedings, 19, 1273-1279.Liu, H.-L., Lan, Y.-W., & Cheng, Y.-C. 2004. Optimal production of sulphuric acid by Thiobacillus thiooxidans using response surface methodology. Process Biochemistry, 39(12), 1953-1961. doi: https://doi.org/10.1016/j.procbio.2003.09.018Liu, Y., Wei, S., & Liao, M. 2013. Optimization of ultrasonic extraction of phenolic compounds from Euryale ferox seed shells using response surface methodology. Industrial Crops and Products, 49, 837-843.Lu, X., Zheng, Z., Li, H., Cao, R., Zheng, Y., Yu, H., . . . Zheng, B. 2017. Optimization of ultrasonic-microwave assisted extraction of oligosaccharides from lotus (Nelumbo nucifera Gaertn.) seeds. Industrial Crops and Products, 107, 546-557.Machado, I., Faccio, R., & Pistón, M. 2019. Characterization of the effects involved in ultrasound-assisted extraction of trace elements from artichoke leaves and soybean seeds. Ultrasonics Sonochemistry, 59, 104752.Maisarah, A., Amira, N. B., Asmah, R., & Fauziah, O. 2013. Antioxidant analysis of different parts of Carica papaya. International Food Research Journal, 20(3), 1043.Martino, E., Ramaiola, I., Urbano, M., Bracco, F., & Collina, S. 2006. Microwave-assisted extraction of coumarin and related compounds from Melilotus officinalis (L.) Pallas as an alternative to Soxhlet and ultrasound-assisted extraction. Journal of Chromatography A, 1125(2), 147-151.Ming, R., Yu, Q., & Moore, P. 2007. Sex determination in papaya. Seminars in cell & developmental biology, 18, 401-408. doi:10.1016/j.semcdb.2006.11.013Mohammadpour, H., Sadrameli, S. M., Eslami, F., & Asoodeh, A. 2019. Optimization of ultrasound-assisted extraction of Moringa peregrina oil with response surface methodology and comparison with Soxhlet method. Industrial Crops and Products, 131, 106-116. doi: https://doi.org/10.1016/j.indcrop.2019.01.030Nor, M., Manan, Z. A., Mustaffa, A., & Lee, S. 2017. Solubility prediction of flavonoids using new developed UNIFAC-based model. Chemical Engineering Transactions, 56, 799-804.Oreopoulou, A., Tsimogiannis, D., & Oreopoulou, V. 2019. Extraction of polyphenols from aromatic and medicinal plants: an overview of the methods and the effect of extraction parameters. Polyphenols in plants, 243-259.Poureini, F., Mohammadi, M., Najafpour, G. D., & Nikzad, M. 2020. Comparative study on the extraction of apigenin from parsley leaves (Petroselinum crispum L.) by ultrasonic and microwave methods. Chemical Papers, 74(11), 3857-3871.Rabska, M., Pers-Kamczyc, E., Żytkowiak, R., Adamczyk, D., & Iszkuło, G. 2020. Sexual Dimorphism in the Chemical Composition of Male and Female in the Dioecious Tree, Juniperus communis L., Growing under Different Nutritional Conditions. Int J Mol Sci, 21(21). doi:10.3390/ijms21218094Radoiu, M., Splinter, S., & Popek, T. 2019. Continuous industrial-scale microwave-assisted extraction of high-value ingredients from natural biomass. Paper presented at the AMPERE 2019. 17th International Conference on Microwave and High Frequency Heating.Rasul, M. G. 2018. Conventional Extraction Methods Use in Medicinal Plants, their Advantages and Disadvantages. Int J Basic Sciences App Computing, 2(6), 10-14.Sarker, M. M. R., Khan, F., & Mohamed, I. N. 2021. Dengue Fever: Therapeutic Potential of Carica papaya L. Leaves. Frontiers in pharmacology, 12, 610912-610912. doi:10.3389/fphar.2021.610912Satari, A., Ghasemi, S., Habtemariam, S., Asgharian, S., & Lorigooini, Z. 2021. Rutin: A Flavonoid as an Effective Sensitizer for Anticancer Therapy; Insights into Multifaceted Mechanisms and Applicability for Combination Therapy. Evidence-Based Complementary and Alternative Medicine, 2021, 9913179. doi:10.1155/2021/9913179See, T. Y., Tee, S. I., Ang, T. N., Chan, C.-H., Yusoff, R., & Ngoh, G. C. 2016. Assessment of Various Pretreatment and Extraction Methods for the Extraction of Bioactive Compounds from Orthosiphon stamineus Leaf via Microstructures Analysis. International Journal of Food Engineering, 12(7), 711-717. doi:doi:10.1515/ijfe-2016-0094Ying, Z., Han, X., & Li, J. 2011. Ultrasound-assisted extraction of polysaccharides from mulberry leaves. Food Chemistry, 127(3), 1273-1279.Zhang, Q.-W., Lin, L.-G., & Ye, W.-C. 2018. Techniques for extraction and isolation of natural products: A comprehensive review. 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引用次数: 1

Abstract

Açıkel, Ü., Erşan, M., & Sağ Açıkel, Y. 2010. Optimization of critical medium components using response surface methodology for lipase production by Rhizopus delemar. Food and Bioproducts Processing, 88(1), 31-39. doi: https:// doi.org/10.1016/j.fbp.2009.08.003Carniel, N., Dallago, R. M., Dariva, C., Bender, J. P., Nunes, A. L., Zanella, O., . . . Luiz Priamo, W. 2017. Microwave‐assisted extraction of phenolic acids and flavonoids from Physalis angulata. Journal of Food Process Engineering, 40(3), e12433.Chahyadi, A., & Elfahmi. 2020. The influence of extraction methods on rutin yield of cassava leaves (Manihot esculenta Crantz). Saudi pharmaceutical journal, 28(11), 1466-1473. doi: https:// doi.org/10.1016/j.jsps.2020.09.012De Luna, S. L. R., Ramírez-Garza, R., & Saldívar, S. O. S. 2020. Environmentally Friendly Methods for Flavonoid Extraction from Plant Material: Impact of Their Operating Conditions on Yield and Antioxidant Properties. The Scientific World Journal, 2020.Ferreira, S. C., Bruns, R., Ferreira, H., Matos, G., David, J., Brandão, G., . . . Souza, A. 2007. Box-Behnken design: an alternative for the optimization of analytical methods. Analytica chimica acta, 597(2), 179-186.He, Q., Li, Y., Zhang, P., Zhang, A., & Wu, H. 2016. Optimisation of microwave-assisted extraction of flavonoids and phenolics from celery (Apium graveolens L.) leaves by response surface methodology. Czech Journal of Food Sciences, 34(4), 341-349.Hyun, S. B., Ko, M. N., & Hyun, C.-G. 2021. Carica papaya leaf water extract promotes innate immune response via mapk signaling pathways. Journal of Applied Biological Chemistry, 64(3), 277-284.Khadam, S., Afzal, U., Gul, H., Hira, S., Satti, M., Yaqub, A., . . . Gulfraz, M. 2019. Phytochemical screening and bioactivity assessment of leaves and fruits extract of Carica papaya. Pakistan journal of pharmaceutical sciences, 32(5).Latiff, N., Ong, P. Y., Abdullah, L. C., Abd Rashid, S. N. A., Fauzi, N. A. M., & Amin, N. A. M. 2021. Ultrasonic-Assisted Extraction (UAE) for Enhanced Recovery of Bioactive Phenolic Compounds From Cosmos Caudatus Leaves.Li, Y., Radoiu, M., Fabiano-Tixier, A.-S., & Chemat, F. 2013. From Laboratory to Industry: Scale-up of Microwave-Assisted Reactors, Quality and Safety Consideration for Microwave-Assisted Extraction. In (pp. 207-229).Ling, Y. Y., Fun, P. S., Yeop, A., Yusoff, M. M., & Gimbun, J. 2019. Assessment of maceration, ultrasonic and microwave assisted extraction for total phenolic content, total flavonoid content and kaempferol yield from Cassia alata via microstructures analysis. Materials Today: Proceedings, 19, 1273-1279.Liu, H.-L., Lan, Y.-W., & Cheng, Y.-C. 2004. Optimal production of sulphuric acid by Thiobacillus thiooxidans using response surface methodology. Process Biochemistry, 39(12), 1953-1961. doi: https://doi.org/10.1016/j.procbio.2003.09.018Liu, Y., Wei, S., & Liao, M. 2013. Optimization of ultrasonic extraction of phenolic compounds from Euryale ferox seed shells using response surface methodology. Industrial Crops and Products, 49, 837-843.Lu, X., Zheng, Z., Li, H., Cao, R., Zheng, Y., Yu, H., . . . Zheng, B. 2017. Optimization of ultrasonic-microwave assisted extraction of oligosaccharides from lotus (Nelumbo nucifera Gaertn.) seeds. Industrial Crops and Products, 107, 546-557.Machado, I., Faccio, R., & Pistón, M. 2019. Characterization of the effects involved in ultrasound-assisted extraction of trace elements from artichoke leaves and soybean seeds. Ultrasonics Sonochemistry, 59, 104752.Maisarah, A., Amira, N. B., Asmah, R., & Fauziah, O. 2013. Antioxidant analysis of different parts of Carica papaya. International Food Research Journal, 20(3), 1043.Martino, E., Ramaiola, I., Urbano, M., Bracco, F., & Collina, S. 2006. Microwave-assisted extraction of coumarin and related compounds from Melilotus officinalis (L.) Pallas as an alternative to Soxhlet and ultrasound-assisted extraction. Journal of Chromatography A, 1125(2), 147-151.Ming, R., Yu, Q., & Moore, P. 2007. Sex determination in papaya. Seminars in cell & developmental biology, 18, 401-408. doi:10.1016/j.semcdb.2006.11.013Mohammadpour, H., Sadrameli, S. M., Eslami, F., & Asoodeh, A. 2019. Optimization of ultrasound-assisted extraction of Moringa peregrina oil with response surface methodology and comparison with Soxhlet method. Industrial Crops and Products, 131, 106-116. doi: https://doi.org/10.1016/j.indcrop.2019.01.030Nor, M., Manan, Z. A., Mustaffa, A., & Lee, S. 2017. Solubility prediction of flavonoids using new developed UNIFAC-based model. Chemical Engineering Transactions, 56, 799-804.Oreopoulou, A., Tsimogiannis, D., & Oreopoulou, V. 2019. Extraction of polyphenols from aromatic and medicinal plants: an overview of the methods and the effect of extraction parameters. Polyphenols in plants, 243-259.Poureini, F., Mohammadi, M., Najafpour, G. D., & Nikzad, M. 2020. Comparative study on the extraction of apigenin from parsley leaves (Petroselinum crispum L.) by ultrasonic and microwave methods. Chemical Papers, 74(11), 3857-3871.Rabska, M., Pers-Kamczyc, E., Żytkowiak, R., Adamczyk, D., & Iszkuło, G. 2020. Sexual Dimorphism in the Chemical Composition of Male and Female in the Dioecious Tree, Juniperus communis L., Growing under Different Nutritional Conditions. Int J Mol Sci, 21(21). doi:10.3390/ijms21218094Radoiu, M., Splinter, S., & Popek, T. 2019. Continuous industrial-scale microwave-assisted extraction of high-value ingredients from natural biomass. Paper presented at the AMPERE 2019. 17th International Conference on Microwave and High Frequency Heating.Rasul, M. G. 2018. Conventional Extraction Methods Use in Medicinal Plants, their Advantages and Disadvantages. Int J Basic Sciences App Computing, 2(6), 10-14.Sarker, M. M. R., Khan, F., & Mohamed, I. N. 2021. Dengue Fever: Therapeutic Potential of Carica papaya L. Leaves. Frontiers in pharmacology, 12, 610912-610912. doi:10.3389/fphar.2021.610912Satari, A., Ghasemi, S., Habtemariam, S., Asgharian, S., & Lorigooini, Z. 2021. Rutin: A Flavonoid as an Effective Sensitizer for Anticancer Therapy; Insights into Multifaceted Mechanisms and Applicability for Combination Therapy. Evidence-Based Complementary and Alternative Medicine, 2021, 9913179. doi:10.1155/2021/9913179See, T. Y., Tee, S. I., Ang, T. N., Chan, C.-H., Yusoff, R., & Ngoh, G. C. 2016. Assessment of Various Pretreatment and Extraction Methods for the Extraction of Bioactive Compounds from Orthosiphon stamineus Leaf via Microstructures Analysis. International Journal of Food Engineering, 12(7), 711-717. doi:doi:10.1515/ijfe-2016-0094Ying, Z., Han, X., & Li, J. 2011. Ultrasound-assisted extraction of polysaccharides from mulberry leaves. Food Chemistry, 127(3), 1273-1279.Zhang, Q.-W., Lin, L.-G., & Ye, W.-C. 2018. Techniques for extraction and isolation of natural products: A comprehensive review. Chinese medicine, 13(1), 1-26. 
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雄性番木瓜叶中芦丁的提取。采用微波辅助和超声辅助提取方法
Açıkel,Ü。,Erşan,M.和SağAçıkel,Y.2010。利用响应面法优化根霉脂肪酶生产的关键培养基组分。食品和生物制品加工,88(1),31-39。doi:https://doi.org/10.1016/j.fb.2009.08.003Carniel,N.,Dallago,R.M.,Dariva,C.,Bender,j.P.,Nunes,A.L.,Zanella,O.,…Luiz Priamo,W.2017。微波辅助提取酸枣中的酚酸和黄酮类化合物。《食品加工工程杂志》,40(3),e12433。Chahyadi,A.和Elfahmi。2020.提取方法对木薯叶芦丁产量的影响(Manihot esculenta Crantz)。沙特制药杂志,28(11),1466-1473。doi:https://doi.org/10.1016/j.jsps.2020.09.012De Luna,S.L.R.、Ramírez Garza,R.和Saldívar,S.O.S.2020。从植物材料中提取黄酮类化合物的环保方法:操作条件对产量和抗氧化性能的影响。《科学世界杂志》,2020。Ferreira,S.C.、Bruns,R.、Ferreira、H.、Matos,G.、David,J.、Brandão,G.、…Souza,A.2007。Box-Behnken设计:分析方法优化的替代方案。《化学分析》,597(2),179-186。何,Q.,李,Y.,张,P.,张,A.,吴,H.2016。响应面法优化微波辅助提取芹菜叶中黄酮类化合物和酚类化合物。捷克食品科学杂志,34(4),341-349.玄,S.B.,Ko,M.N.和玄,C.-G.2021。番木瓜叶水提取物通过mapk信号通路促进先天免疫反应。应用生物化学杂志,64(3),277-284.Khadam,S.,Afzal,U.,Gul,H.,Hira,S.,Satti,M.,Yaqub,A.,…Gulfraz,M.2019。番木瓜叶和果实提取物的植物化学筛选及生物活性评价。巴基斯坦药物科学杂志,32(5)。Latiff,N.,Ong,P.Y.,Abdullah,L.C.,Abd Rashid,S.N.A.,Fauzi,N.A.M.和Amin,N.A.M.2021。超声波辅助提取(UAE)用于提高从牛蒡叶中回收生物活性酚类化合物。李,Y.,拉多乌,M.,法比亚诺·提舍尔,A.-S.,&Chemat,F.,2013。从实验室到工业:微波辅助反应器的规模扩大,微波辅助萃取的质量和安全考虑。在(第207-229页)。凌,Y.Y.,Fun,P.S.,Yeop,A.,Yusoff,M.M.和Gimbun,J.2019。通过显微结构分析评价浸渍、超声和微波辅助提取决明中总酚含量、总黄酮含量和山奈酚产量。《今日材料》,载《论文集》,19273-1279。刘、兰、程2004。响应面法优化氧化硫硫杆菌生产硫酸的研究。过程生物化学,39(12),1953-1961。doi:https://doi.org/10.1016/j.procbio.2003.09.018Liu,Y.,Wei,S.,&廖,M.2013。响应面法优化超声提取Euryale ferox籽壳中酚类化合物的工艺。工业作物与产品,49837-843.Lu,X.,Zheng,Z.,Li,H.,Cao,R.,Zheng.,Y.,Yu,H.,…Zheng.B.2017。超声波-微波辅助提取莲子低聚糖的工艺优化。《工业作物和产品》,107546-557.Machado,I.,Faccio,R.和Pistón,M.2019。超声波辅助提取洋蓟叶和大豆种子中微量元素的效果表征。超声波-声化学,59104752。Maisarah,A.、Amira,N.B.、Asmah,R.和Fauziah,O.,2013。番木瓜不同部位抗氧化性分析。《国际食品研究杂志》,20(3),1043。Martino,E.、Ramaiola,I.、Urbano,M.、Bracco,F.和Collina,S.,2006。微波辅助提取药用Melilotus officinalis(L.)Pallas中的香豆素及其相关化合物,作为Soxhlet和超声辅助提取的替代方案。色谱学报A,1125(2),147-151.明,R,余,Q,&Moore,P.2007。木瓜的性别决定。细胞与发育生物学研讨会,1841-408。doi:10.1016/j.emcdb.2006.11.013Mohammadpour,H.,Sadrameli,S.M.,Eslami,F.和Asoodeh,A.2019。响应面法优化超声辅助提取辣木油工艺及与索氏法的比较。工业作物和产品,131106-116。doi:https://doi.org/10.1016/j.indcrop.2019.01.030Nor,M.,Manan,Z.A.,Mustaffa,A.和Lee,S.2017。利用新开发的基于UNIFAC的模型预测黄酮类化合物的溶解度。《化学工程学报》,56799-804,Oreopoulou,A.,Tsimogiannis,D.和Oreopouliu,V.2019。从芳香植物和药用植物中提取多酚:综述了提取方法和提取参数的影响。植物中的多酚,243-259。Poreini,F.、Mohammadi,M.、Najafpour,G.D.和Nikzad,M.2020。从香芹叶中提取芹菜素的比较研究。
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