[1] |
LOU Haiwei, ZHAO Yu, ZHAO Yi, LIN Junfang, ZHAO Renyong, YE Zhiwei, GUO Liqiong.
Transcriptomic Analysis of Cordyceps militaris and Mining of Genes Involved in Carotenoid Biosynthesis
[J]. FOOD SCIENCE, 2021, 42(6): 150-156.
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[2] |
HUANG Dongwei, GU Guizhang, HU Kena, GAO Xingjie, ZHANG Jinjie, YANG Wenge, XU Dalun.
Detection of Guanine in Fish Flesh by Protein Adsorption onto Macroporous Resin Combined with Surface-Enhanced Raman Spectroscopy
[J]. FOOD SCIENCE, 2021, 42(18): 298-305.
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[3] |
LI Huixing, ZHOU Yongkang, FANG Peiqi, ZHENG Lilin, HA Haiyang, XU Bin.
Enhancement of Antioxidant Activity of Chinese Yam by Fermentation with Cordyceps militaris
[J]. FOOD SCIENCE, 2021, 42(13): 51-56.
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[4] |
HAN Yuwei, LIU Yangyang, CHEN Wei.
Synergistic Protective Effects of Cordyceps militaris Polysaccharide Supplemented Yogurt on Alcoholic Liver Injury in Kunming Mice
[J]. FOOD SCIENCE, 2020, 41(1): 209-214.
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[5] |
MIAO Yue, REN Guihong, ZHEN Dong, ZHAO Fei, SONG Hui.
Molecular Mechanism of Cordyceps militaris Polysaccharides in Regulating the Immune Function of Macrophage RAW264.7 Cells
[J]. FOOD SCIENCE, 2019, 40(9): 188-194.
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[6] |
CHEN Lin, Lü Yangjun, ZHANG Haihua, ZHU Yuejin, WANG Yuefei, ZHANG Shikang.
Use of Macroporous Resin LP-8 for Preparing Tea Polyphenols Rich in Esterified Catechins
[J]. FOOD SCIENCE, 2019, 40(7): 68-73.
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[7] |
TANG Hongbiao, CHEN Chuxin, LIN Junfang,, LOU Haiwei, YE Zhiwei, GUO Liqiong,.
New Yellow Pigment from Cordyceps militaris: Structural Identification and Optimization of Extraction by Response Surface Methodology
[J]. FOOD SCIENCE, 2019, 40(22): 299-305.
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[8] |
YU Ge, WANG Li, HU Xinlei, SUN Yanan, ZHANG Xin, LI Ming, LI Wenxiang.
Optimization of Simultaneous Extraction of Cordycepin and Adenosine Produced by Solid-State Fermentation with Cordyceps militaris by Response Surface Methodology
[J]. FOOD SCIENCE, 2018, 39(6): 270-275.
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[9] |
SHUI Longlong, CAO Lili, PANG Min, PAN Lijun, BAO Sai, LI Jinhong, JIANG Shaotong.
Optimization of Process Parameters for Immobilization of Phospholipase A1 onto Macroporous Resin and Its Application for Degumming Rapeseed Oil
[J]. FOOD SCIENCE, 2018, 39(4): 241-247.
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[10] |
ZHAO Ziying, PIAO Chunhong, WANG Yuhua, LIU Junmei, YU Hansong, DAI Weichang, TANG Yufang, WANG Jing, LIU Dailin.
Isolation and Anti-Diabetic Activity in Vitro of Flavonoids from Buckwheat Hull
[J]. FOOD SCIENCE, 2018, 39(3): 21-27.
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[11] |
QIAO Yuchen, LIU Guijun, WANG Ping, ZHOU Sijing, ZHENG Jie, SHANG Hongzhong.
Recent Advances in Molecular Biological Research on Cordyceps militaris (L.) Link
[J]. FOOD SCIENCE, 2018, 39(23): 321-328.
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[12] |
ZUO Jinhui, GONG Xiaoyan, DONG Yinmao, LI Li.
Research Achievements in Bioactive Components, Pharmacological Effects and Applications of Cordyceps militaris
[J]. FOOD SCIENCE, 2018, 39(21): 330-339.
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[13] |
LI Xia, ZANG Xueli, XU Yibo, WANG Dawei.
Optimization of Purification of Flavonoids from Mung Bean Coat by AB-8 Macroporous Resin and Comparison of Antioxidant Capacity of crude and purified Flavonoids
[J]. FOOD SCIENCE, 2018, 39(10): 283-290.
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[14] |
YU Zeyuan, ZHAO Jianhui, LI Xingguo, XU Yaqin, TANG Xue, YANG Yu.
Isolation and Purification of Anthocyanin from Blueberry by Sequential Medium Pressure Column Chromatography on Macroporous Resin and Sephadex LH-20
[J]. FOOD SCIENCE, 2018, 39(1): 118-123.
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[15] |
ZHANG Wei, ZHANG Yong, YIN Zhenhua, KANG Wenyi.
Determination of the Active Ingredients in Cultured Cordyceps militaris by Ultrasound-Assisted Ionic Liquid Microextraction Coupled with Reversed Phase Liquid Chromatography
[J]. FOOD SCIENCE, 2017, 38(8): 179-183.
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