Search research articles
Contact Us
Filters
Showing results (11-20 of 161) with videos related to
Page
of 17
Sort By:
Marine Drugs
|
August 25, 2022
Exopolysaccharides from Marine Microbes: Source, Structure and Application
Mingxing Qi, Caijuan Zheng, Wenhui Wu, et al.
Journal of the Science of Food and Agriculture
|
May 12, 2012
Preparation of immunomodulatory hydrolysates from Alaska pollock frame
Hu Hou, Yan Fan, Bafang Li, et al.
Microbiome
|
February 28, 2024
Bacteroides salyersiae is a potent chondroitin sulfate-degrading species in the human gut microbiota
Yamin Wang, Mingfeng Ma, Wei Dai, et al.
Carbohydrate Research
|
May 15, 2012
Synthesis of glycoglycerolipid of 1,2-dipalmitoyl-3-(N-palmitoyl-6'-amino-6'-deoxy-α-D-glucosyl)-sn-glycerol and its analogues, inhibitors of human Myt1-kinase
Yihua Sun, Jun Zhang, Chunxia Li, et al.
Carbohydrate Research
|
April 16, 2013
Preparation and characterization of guluronic acid oligosaccharides degraded by a rapid microwave irradiation method
Ting Hu, Chunxia Li, Xia Zhao, et al.
Carbohydrate Polymers
|
November 8, 2017
Gut microbiota fermentation of marine polysaccharides and its effects on intestinal ecology: An overview
Qingsen Shang, Hao Jiang, Chao Cai, et al.
Food & Function
|
June 24, 2016
Dietary fucoidan modulates the gut microbiota in mice by increasing the abundance of Lactobacillus and Ruminococcaceae
Qingsen Shang, Xindi Shan, Chao Cai, et al.
The FEBS Journal
|
March 19, 2009
Mechanism of mild acid hydrolysis of galactan polysaccharides with highly ordered disaccharide repeats leading to a complete series of exclusively odd-numbered oligosaccharides
Bo Yang, Guangli Yu, Xia Zhao, et al.
International Journal of Biological Macromolecules
|
January 24, 2016
Degradation of chondroitin sulfate by the gut microbiota of Chinese individuals
Qingsen Shang, Yeshi Yin, Liying Zhu, et al.
Food & Function
|
December 16, 2017
Correction: Dietary fucoidan modulates the gut microbiota in mice by increasing the abundance of Lactobacillus and Ruminococcaceae
Qingsen Shang, Xindi Shan, Chao Cai, et al.
Page
of 17
Search research articles
Search
Showing results (11-20 of 161) with videos related to
Sort By:
Page
of 17
Marine Drugs
|
August 25, 2022
Exopolysaccharides from Marine Microbes: Source, Structure and Application
Mingxing Qi, Caijuan Zheng, Wenhui Wu, et al.
Journal of the Science of Food and Agriculture
|
May 12, 2012
Preparation of immunomodulatory hydrolysates from Alaska pollock frame
Hu Hou, Yan Fan, Bafang Li, et al.
Microbiome
|
February 28, 2024
Bacteroides salyersiae is a potent chondroitin sulfate-degrading species in the human gut microbiota
Yamin Wang, Mingfeng Ma, Wei Dai, et al.
Carbohydrate Research
|
May 15, 2012
Synthesis of glycoglycerolipid of 1,2-dipalmitoyl-3-(N-palmitoyl-6'-amino-6'-deoxy-α-D-glucosyl)-sn-glycerol and its analogues, inhibitors of human Myt1-kinase
Yihua Sun, Jun Zhang, Chunxia Li, et al.
Carbohydrate Research
|
April 16, 2013
Preparation and characterization of guluronic acid oligosaccharides degraded by a rapid microwave irradiation method
Ting Hu, Chunxia Li, Xia Zhao, et al.
Carbohydrate Polymers
|
November 8, 2017
Gut microbiota fermentation of marine polysaccharides and its effects on intestinal ecology: An overview
Qingsen Shang, Hao Jiang, Chao Cai, et al.
Food & Function
|
June 24, 2016
Dietary fucoidan modulates the gut microbiota in mice by increasing the abundance of Lactobacillus and Ruminococcaceae
Qingsen Shang, Xindi Shan, Chao Cai, et al.
The FEBS Journal
|
March 19, 2009
Mechanism of mild acid hydrolysis of galactan polysaccharides with highly ordered disaccharide repeats leading to a complete series of exclusively odd-numbered oligosaccharides
Bo Yang, Guangli Yu, Xia Zhao, et al.
International Journal of Biological Macromolecules
|
January 24, 2016
Degradation of chondroitin sulfate by the gut microbiota of Chinese individuals
Qingsen Shang, Yeshi Yin, Liying Zhu, et al.
Food & Function
|
December 16, 2017
Correction: Dietary fucoidan modulates the gut microbiota in mice by increasing the abundance of Lactobacillus and Ruminococcaceae
Qingsen Shang, Xindi Shan, Chao Cai, et al.
Page
of 17