Contents of Extractable and Non-extractable Polyphenols in the Leaves of Blueberry

文献类型: 外文期刊

第一作者: Cheng, Anwei

作者: Cheng, Anwei;Chen, Xiangyan;Wang, Wenliang;Gong, Zhiqing;Liu, Lina

作者机构:

关键词: leaves of blueberry;extractable polyphenols;non-extractable polyphenols;proanthocyanidins;anthocyanidins

期刊名称:CZECH JOURNAL OF FOOD SCIENCES ( 影响因子:1.279; 五年影响因子:1.829 )

ISSN: 1212-1800

年卷期: 2013 年 31 卷 3 期

页码:

收录情况: SCI

摘要: The contents of extractable polyphenols (EPP), non-extractable polyphenols (NEPP), extractable proanthocyanidins (EPAC), non-extractable proanthocyanidins (NEPAC) and extractable anthocyanidins (EAC) in blueberry leaves were investigated. An experiment was conducted to analyse the effect of solvent types (methanol and ethanol), concentration (50 and 70%) and pH (2 and 6) on the extraction of bioactive compounds. Total extractable polyphenols (TEPP), total extractable proanthocyanidins (TEPAC), and total extractable anthocyanidins (TEAC) were analysed in methanol/ethanol/water extracts, NEPP were determined in acidic hydrolysates and NEPAC were quantified by depolymerisation in HCl/butanol. The results showed that ethanol and methanol did not affect the extraction of TEPP, while methanol was better for TEPAC and TEAC. The contents of TEPP and TEAC in 50% solvent were higher than those in 70% solvent. When solvent pH dropped to 2, the contents of EPP and EPAC were increased, while the EAC content was decreased.

分类号:

  • 相关文献

[1]Extractable and non-extractable polyphenols from blueberries modulate LPS-induced expression of iNOS and COX-2 in RAW264.7 macrophages via the NF-kappa B signalling pathway. Cheng, Anwei,Han, Caijing,Sun, Jinyue,Chen, Xiangyan,Fang, Xixiu,Wan, Fachun,Cheng, Anwei,Han, Caijing,Sun, Jinyue,Chen, Xiangyan.

[2]Survey of antioxidant capacity and phenolic composition of blueberry, blackberry, and strawberry in Nanjing. Huang, Wu-yang,Li, Chun-yang,Zhang, Hong-cheng,Liu, Wen-xu. 2012

[3]Protective effect of proanthocyanidin against oxidative ovarian damage induced by 3-nitropropionic acid in mice. Zhang, J. Q.,Zhu, C. C.,Shen, M.,Yu, F. X.,Liu, H. L.,Zhang, J. Q.,Xing, B. S.. 2015

[4]The accumulation of pigment in fiber related to proanthocyanidins synthesis for brown cotton. Li, Tingchun,Fan, Honghong,Li, Zhengpeng,Wei, Jun,Lin, Yi,Cai, Yongping,Li, Tingchun. 2012

[5]Protective Effect of Proanthocyanidins from Sea Buckthorn (Hippophae Rhamnoides L.) Seed against Visible Light-Induced Retinal Degeneration in Vivo. Wang, Yong,Zhao, Liang,Huo, Yazhen,Zhou, Feng,Lu, Feng,Yang, Xue,Guo, Xiaoxuan,Ji, Baoping,Wu, Wei,Chen, Peng,Deng, Qianchun,Chen, Peng,Deng, Qianchun. 2016

[6]Phenolic acids, anthocyanins, proanthocyanidins, antioxidant activity, minerals and their correlations in non-pigmented, red, and black rice. Shao, Yafang,Hu, Zhanqiang,Yu, Yonghong,Mou, Renxiang,Zhu, Zhiwei,Beta, Trust. 2018

[7]Polyphenolic antioxidant profiles of yellow camellia. Huang, Dejian,Song, Lixia,Wang, Xiangshe,Zheng, Xueqin.

作者其他论文 更多>>