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Jingjing Tian
Fujian Agriculture and Forestry University
3Publications
2H-index
9Citations
Publications 3
Newest
Published on Feb 1, 2018in Food Chemistry 5.40
Jicheng Chen2
Estimated H-index: 2
(Fujian Agriculture and Forestry University),
Yazhen Chen2
Estimated H-index: 2
(Fujian Agriculture and Forestry University)
+ 4 AuthorsHetong Lin17
Estimated H-index: 17
(Fujian Agriculture and Forestry University)
Abstract A simple, accurate and specific high-performance liquid chromatography (HPLC) method has been developed and validated for simultaneous determination of sesamol, sesamin, asarinin and sesamolin in Monascus aged vinegar. The effects of acid hydrolysis and four heating treatments on the components content in Monascus aged vinegar were discussed. The results showed that the isomerisation of sesamin to asarinin, and decomposition of sesamolin to sesamol significantly increased, regardless of...
Published on Dec 1, 2017in Food and Chemical Toxicology 3.77
Huifang Ge2
Estimated H-index: 2
(Fujian Agriculture and Forestry University),
Yazhen Chen2
Estimated H-index: 2
(Fujian Agriculture and Forestry University)
+ 3 AuthorsLei Chen9
Estimated H-index: 9
(Fujian Agriculture and Forestry University)
Abstract The Rhizome of Ligusticum chuanxiong Hort, a traditional Chinese medicine, is widely used to treat cardiovascular diseases and attenuate oxidative stress. The main bioactive compounds including tetramethylpyrazine (TMP), polyphenols, ferulic acid have been reported to be responsible for these effects. This study was to evaluate the influence of Ligusticum chuanxiong extraction (LCE) in mimic gastrointestinal tract on antioxidant activity. The effects of gastric digestion group metabolic...
Published on Nov 1, 2017in Food and Chemical Toxicology 3.77
Jicheng Chen1
Estimated H-index: 1
(Cornell University),
Jingjing Tian2
Estimated H-index: 2
+ 2 AuthorsJianbo Xiao33
Estimated H-index: 33
(UM: University of Macau)
Abstract Tetramethylpyrazine is a bioactive compound found in Chinese black vinegar. This work is to investigate the potential effects of tetramethylpyrazine on intracellular cholesterol modulation in HepG2 cells. The results demonstrated that tetramethylpyrazine can induce intracellular cholesterol efflux. Tetramethylpyrazine may also improve endothelial function through its antioxidant effects by inhibiting reactive oxygen species levels and increasing the antioxidant enzymes superoxide dismut...
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