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Relationship Analysis Between Flavonoids Structure and Subcritical Water Extraction (SWE)

Min-Jung Ko, Chan-Ick Cheigh, Myong-Soo Chung

Food Chem. 2014 Jan 15;143:147-55.

PMID: 24054224

Abstract:

Subcritical water (about 10MPa) is an excellent solvent for extracting non-polar flavonoids by varying the temperature-dependent dielectric constant. This study determined the optimum conditions for subcritical water extraction (SWE), such as the time and temperature, for extracting flavonoids from eight plants, and their dependence on the chemical structure of flavonoids (polarity of side chains and the presence of sugar, and double bonds). Flavonoids having an OH side chain (quercetin at 170°C/10min) were optimally extracted at lower temperatures than O-CH3 (isorhamnetin at 190°C/15min) and H (kaempferol at 190°C/15min) side chains. The optimal temperatures of the glycoside forms including sugar, such as quercitrin (110°C/5min), spiraeoside (150°C/15min), and isoquercitrin (150°C/15min), were lower than of the less-polar aglycones (170°C/10min and 190°C/15min). Apigenin, having double bonds, was extracted well at a higher temperature (190°C/15min) than naringenin (170°C/15min) in SWE.

Chemicals Related in the Paper:

Catalog Number Product Name Structure CAS Number Price
AP20229565-A Spiraeoside Spiraeoside 20229-56-5 Price
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