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Microwave-Assisted Extraction of Curcuma

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Microwave-Assisted Extraction of Curcuma ( microwave-assisted-extraction-curcuma )

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Molecules 2021, 26, 1516 12 of 13 References E2S UPPA Partnership Chair MANTA (Marine Materials) supported by the ‘Investissements d’Avenir’ French programme managed by the French National Research Agency (ANR-16-IDEX-0002), by the Region Nouvelle-Aquitaine and by the Communaute d’Agglomeration du Pays Basque, France. Conflicts of Interest: The authors declare no conflict of interest. Sample Availability: Samples of the compounds are not available from the authors. 1. Mishra, R.; Gupta, A.K.; Lal, R.K.; Jhang, T.; Banerjee, N. Genetic variability, analysis of genetic parameters, character associations and contribution for agronomical traits in turmeric (Curcuma longa L.). Ind. Crop. Prod. 2015, 76, 204–208. [CrossRef] 2. Shirsath, S.; Sable, S.; Gaikwad, S.; Sonawane, S.; Saini, D.; Gogate, P. Intensification of extraction of curcumin from Curcuma amada using ultrasound assisted approach: Effect of different operating parameters. Ultrason. Sonochem. 2017, 38, 437–445. [CrossRef] [PubMed] 3. Zhang, L.; Yang, Z.; Chen, F.; Su, P.; Chen, D.; Pan, W.; Fang, Y.; Dong, C.; Zheng, X.; Du, Z. Composition and bioactivity assessment of essential oils of Curcuma longa L. collected in China. Ind. Crop. Prod. 2017, 109, 60–73. [CrossRef] 4. Gupta, S.C.; Sung, B.; Kim, J.H.; Prasad, S.; Li, S.; Aggarwal, B.B. Multitargeting by turmeric, the golden spice: From kitchen to clinic. Mol. Nutr. Food Res. 2012, 57, 1510–1528. [CrossRef] [PubMed] 5. Chaaban, A.; Gomes, E.N.; Richardi, V.S.; Martins, C.E.N.; Brum, J.S.; Navarro-Silva, M.A.; Deschamps, C.; Molento, M.B. Essential oil from Curcuma longa leaves: Can an overlooked by-product from turmeric industry be effective for myiasis control? Ind. Crop. Prod. 2019, 132, 352–364. [CrossRef] 6. Kiamahalleh, M.V.; Najafpour-Darzi, G.; Rahimnejad, M.; Moghadamnia, A.A.; Kiamahalleh, M.V. High performance curcumin subcritical water extraction from turmeric (Curcuma longa L.). J. Chromatogr. B Anal. Technol. Biomed. Life Sci. 2016, 1022, 191–198. [CrossRef] [PubMed] 7. Park, S.-Y.; Kim, D.S.H.L. Discovery of Natural Products from Curcuma longa that Protect Cells from Beta-Amyloid Insult: A Drug Discovery Effort against Alzheimer’s Disease. J. Nat. Prod. 2002, 65, 1227–1231. [CrossRef] [PubMed] 8. Hamaguchi, T.; Ono, K.; Yamada, M. REVIEW: Curcumin and Alzheimer’s Disease. CNS Neurosci. Ther. 2010, 16, 285–297. [CrossRef] 9. Braga, M.E.M.; Leal, P.F.; Carvalho, J.E.; Meireles, M.A.A. Comparison of Yield, Composition, and Antioxidant Activity of Turmeric (Curcuma longa L.) Extracts Obtained Using Various Techniques. J. Agric. Food Chem. 2003, 51, 6604–6611. [CrossRef] 10. Dao, T.T.; Nguyen, P.H.; Won, H.K.; Kim, E.H.; Park, J.; Won, B.Y.; Oh, W.K. Curcuminoids from Curcuma longa and their inhibitory activities on influenza A neuraminidases. Food Chem. 2012, 134, 21–28. [CrossRef] 11. Das, N.; Dhiman, S.; Talukdar, P.; Rabha, B.; Goswami, D.; Veer, V. Synergistic mosquito-repellent activity of Curcuma longa, Pogostemon heyneanus and Zanthoxylum limonella essential oils. J. Infect. Public Health 2015, 8, 323–328. [CrossRef] 12. Da Silva, M.R.M.; Ricci-Júnior, E. An approach to natural insect repellent formulations: From basic research to technological development. Acta Trop. 2020, 212, 105419. [CrossRef] 13. Gopalan, B.; Goto, M.; Kodama, A.; Hirose, T. Supercritical carbon dioxide extraction of turmeric (Curcuma longa). J. Agric. Food Chem. 2000, 48, 2189–2192. [CrossRef] [PubMed] 14. Sahne, F.; Mohammadi, M.; Najafpour, G.D.; Moghadamnia, A.A. Enzyme-assisted ionic liquid extraction of bioactive compound from turmeric (Curcuma longa L.): Isolation, purification and analysis of curcumin. Ind. Crop. Prod. 2017, 95, 686–694. [CrossRef] 15. Chang, L.-H.; Jong, T.-T.; Huang, H.-S.; Nien, Y.-F.; Chang, C.-M.J. Supercritical carbon dioxide extraction of turmeric oil from Curcuma longa Linn and purification of turmerones. Sep. Purif. 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Optimization of solvent extraction of antioxidants from Eucalyptus globulus leaves by response surface methodology: Characterization and assessment of their bioactive properties. Ind. Crop. Prod. 2017, 108, 649–659. [CrossRef]

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