Optimization of Supercritical Fluid Extraction of Tea Flower Polysaccharides by Using Response Surface Method

被引:1
作者
XingHai Zhang [1 ,2 ]
Fei Que [2 ]
JinWei Xu [2 ]
PeiLi Yu [2 ]
YouYing Tu [2 ]
机构
[1] Department of Tea Science,Zhejiang University
[2] The Department of Applied Engineering,Zhejiang Economic and Trade Polytechnic
关键词
Tea flower polysaccharides; supercritical fluid extraction; response surface methodology; monosaccharide composition;
D O I
暂无
中图分类号
TS272.5 [各种茶];
学科分类号
090203 ;
摘要
Polysaccharide production from tea flower(TFPS) was carried out using supercritical fluid extraction(SFE).Response surface methodology(RSM),based on a five level,four variable small central composite design,was employed to obtain the best possible combination of extraction time,pressure,temperature and ethanol content of modifier for maximum production.The optimum conditions were as follows:extraction time of 170 min,pressure of45 MPa,temperature of 75 ℃,and 50% aqueous ethanol solution as modifier.Under these conditions,the experimental yield was 6.56 ± 0.37%,which was similar to the value predicted by the model.Monosaccharide composition of TFPS was fucose,rhamnose,arabinose,xylose,galactose,glucose,mannose,fructose,ribose,galacturonic acid and glucuronic acid in a molar percent of 31.69,0.21,0.49,1.29,35.82,0.97,1.63,18.34,7.88,1.06 and 0.63.Compared to other extraction methods,SFE could achieve higher yield and gain more types of monosaccharide.
引用
收藏
页码:442 / 451
页数:10
相关论文
共 26 条
[1]   响应面法优化超临界CO2提取茶籽多糖的工艺研究 [J].
李博 ;
屠幼英 ;
梅鑫 ;
蔡晓红 ;
王奕 ;
李伟 .
高校化学工程学报, 2010, 24 (05) :897-902
[2]   茶树花多糖免疫调节与抗肿瘤活性的研究(英文) [J].
韩铨 ;
凌泽杰 ;
何普明 ;
熊昌云 .
生物化学与生物物理进展, 2010, 37 (06) :646-653
[3]  
Hypoglycemic effect of oral crude tea flower polysaccharides on alloxan modeling Sprague–Dawley rats and the possible mechanism[J] . Xinlin Wei,Xuan Cai,Shuangli Xiong,Yuanfeng Wang.CyTA - Journal of Food . 2012 (4)
[4]  
Anti-Inflammatory Effects of a Polyphenols-Rich Extract from Tea ( Camellia sinensis ) Flowers in Acute and Chronic Mice Models[J] . Bang-Tian Chen,Wei-Xi Li,Rong-Rong He,Yi-Fang Li,Bun Tsoi,Yu-Jia Zhai,Hiroshi Kurihara,Felipe Dal-Pizzol.Oxidative Medicine and Cellular Longevity . 2012
[5]  
Preparation, preliminary characterization, antioxidant, hepatoprotective and antitumor activities of polysaccharides from the flower of tea plant ( Camellia sinensis )[J] . Renjie Xu,Hong Ye,Yi Sun,Youying Tu,Xiaoxiong Zeng.Food and Chemical Toxicology . 2011 (7)
[6]  
ISOLATION, CHEMICAL CHARACTERIZATION AND ANTIOXIDANT ACTIVITIES OF A WATER‐SOLUBLE POLYSACCHARIDE FRACTION OF TEA (CAMELLIA SINENSIS) FLOWER[J] . QUANHAN,CHANG‐YUNXIONG,JIANGSHI,YINGGAO,YI‐SICHEN,ZE‐JIELING,PU‐MINGHE.Journal of Food Biochemistry . 2012 (1)
[7]   Monosaccharide composition and bioactivity of tea flower polysaccharides obtained by ethanol fractional precipitation and stepwise precipitation [J].
Wang, Yuanfeng ;
Yu, Lan ;
Wei, Xinlin .
CYTA-JOURNAL OF FOOD, 2012, 10 (01) :1-4
[8]  
Supercritical Extraction Technology in Tea Polysaccharide Extracting Application[J] . Chen Ming,Xiong Lin Yuan.Advanced Materials Research . 2012 (347)
[9]   Molecular characterization and hypoglycemic activity of a novel water-soluble polysaccharide from tea (Camellia sinensis) flower [J].
Han Quan ;
Yu Qiong-yao ;
Shi Jiang ;
Xiong Chang-yun ;
Ling Ze-jie ;
He Pu-ming .
CARBOHYDRATE POLYMERS, 2011, 86 (02) :797-805
[10]   Biochemical attributes of tea flowers (Camellia sinensis) at different developmental stages in the Kangra region of India [J].
Joshi, Robin ;
Poonam ;
Gulati, Ashu .
SCIENTIA HORTICULTURAE, 2011, 130 (01) :266-274