| Literature DB >> 28271704 |
Seung-Hee Nam, Young-Min Kim, Marie K Walsh1, Young-Jung Wee2, Kwang-Yeol Yang, Jin-A Ko, Songhee Han, Thi Thanh Hanh Nguyen, Ji Young Kim, Doman Kim.
Abstract
Caffeic acid was modified via transglucosylation using sucrose and dextransucrase from Leuconostoc mesenteroides B-512FMCM. Following enzymatic modification, a caffeic acid glucoside was isolated by butanol separation, silica gel chromatography, and preparative HPLC. The synthesized caffeic acid glucoside had a molecular mass-to-charge ratio of 365 m/z, and its structure was identified as caffeic acid-3-O-α-d-glucopyranoside. The production of this caffeic acid-3-O-α-d-glucopyranoside at a concentration of 153 mM was optimized using 325 mM caffeic acid, 355 mM sucrose, and 650 mU mL-1 dextransucrase in the synthesis reaction. In comparison with the caffeic acid, the caffeic acid-3-O-α-d-glucopyranoside displayed 3-fold higher water solubility, 1.66-fold higher antilipid peroxidation effect, 15% stronger inhibition of colon cancer cell growth, and 11.5-fold higher browning resistance. These results indicate that this caffeic acid-3-O-α-d-glucopyranoside may be a suitable functional component of food and pharmaceutical products.Entities:
Keywords: Leuconostoc mesenteroides; caffeic acid; dextransucrase; transglucosylation
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Year: 2017 PMID: 28271704 DOI: 10.1021/acs.jafc.7b00344
Source DB: PubMed Journal: J Agric Food Chem ISSN: 0021-8561 Impact factor: 5.279