首页
热心肠日报
文献库
产业库
榜单
关于日报
《肠·道》演讲
往期精彩
《肠·道》2024
《肠·道》2023
《肠·道》2022
《肠·道》2021
《肠·道》2020
《肠·道》2019
《肠·道》2018
《肠·道》2017
关于《肠·道》
肠道大会
热心肠大会
热心肠智库
智库专家
专家动态
智库新闻
关于智库
奖学金
年度人物奖
更多
HOPE
会议信息
科学与艺术
学术专刊
R·AI
周刊
热心肠先生
研究院动态
关于我们
搜索
登录
关闭
手机邮箱登录
扫码登录
微信扫描二维码快捷登录
验证成功,将在
3
秒钟后跳转
已超时,请
重试
关闭
二维码登录
手机登录
邮箱登录
+86
+1
+852
+886
+81
+65
+61
+44
获取验证码
登录 / 注册
关闭
二维码登录
手机登录
邮箱登录
获取验证码
登录 / 注册
热心肠智库
专家文章 | 尚庆森
2024
CA
Bacteroides salyersiae is a potent chondroitin sulfate-degrading species in the human gut microbiota
Microbiome, 10.1186/s40168-024-01768-2
2023
CA
Polyguluronate alleviates ulcerative colitis by targeting the gut commensal Lactobacillus murinus and its anti-inflammatory metabolites
INT J BIOL MACROMOL, 10.1016/j.ijbiomac.2023.128592
CA
Discovery of Bacteroides uniformis F18-22 as a Safe and Novel Probiotic Bacterium for the Treatment of Ulcerative Colitis from the Healthy Human Colon
IJMS, 10.3390/ijms241914669
CA
In Vitro Fermentation of Polysaccharide from Edible Alga Enteromorpha clathrata by the Gut Microbiota of Patients with Ulcerative Colitis
Nutrients, 10.3390/nu15194122
CA
Isolation of Alginate-Degrading Bacteria from the Human Gut Microbiota and Discovery of Bacteroides xylanisolvens AY11-1 as a Novel Anti-Colitis Probiotic Bacterium
Nutrients, 10.3390/nu15061352
CA
Isolation of Alginate-Degrading Bacteria from the Human Gut Microbiota and Discovery of Bacteroides xylanisolvens AY11-1 as a Novel Anti-Colitis Probiotic Bacterium
Nutrients, 10.3390/nu15061352
CA
Isolation of Alginate-Degrading Bacteria from the Human Gut Microbiota and Discovery of Bacteroides xylanisolvens AY11-1 as a Novel Anti-Colitis Probiotic Bacterium
Nutrients, 10.3390/nu15061352
2022
CA
Polysaccharide from Edible Alga Enteromorpha clathrata Improves Ulcerative Colitis in Association with Increased Abundance of Parabacteroides spp. in the Gut Microbiota of Dextran Sulfate Sodium-Fed Mice
Mar Drugs, 10.3390/md20120764
CA
Polysaccharide from Edible Alga Enteromorpha clathrata Improves Ulcerative Colitis in Association with Increased Abundance of Parabacteroides spp. in the Gut Microbiota of Dextran Sulfate Sodium-Fed Mice
Mar Drugs, 10.3390/md20120764
CA
Polysaccharide from Edible Alga Enteromorpha clathrata Improves Ulcerative Colitis in Association with Increased Abundance of Parabacteroides spp. in the Gut Microbiota of Dextran Sulfate Sodium-Fed Mice
Mar Drugs, 10.3390/md20120764
CA
Polysaccharide from Edible Alga Enteromorpha clathrata Improves Ulcerative Colitis in Association with Increased Abundance of Parabacteroides spp. in the Gut Microbiota of Dextran Sulfate Sodium-Fed Mice
Mar Drugs, 10.3390/md20120764
CA
Polysaccharide from Edible Alga Enteromorpha clathrata Improves Ulcerative Colitis in Association with Increased Abundance of Parabacteroides spp. in the Gut Microbiota of Dextran Sulfate Sodium-Fed Mice
Mar Drugs, 10.3390/md20120764
CA
Enterotype-Specific Effect of Human Gut Microbiota on the Fermentation of Marine Algae Oligosaccharides: A Preliminary Proof-of-Concept In Vitro Study
POLYMERS, 10.3390/polym14040770
2021
CA
Polysaccharide from edible alga Gloiopeltis furcata attenuates intestinal mucosal damage by therapeutically remodeling the interactions between gut microbiota and mucin O-glycans
CARBOHYD POLYM, 10.1016/j.carbpol.2021.118921
点击查看热心肠日报解读
CA
Dietary Polysaccharide from Enteromorpha clathrata Attenuates Obesity and Increases the Intestinal Abundance of Butyrate-Producing Bacterium, Eubacterium xylanophilum, in Mice Fed a High-Fat Diet
POLYMERS, 10.3390/polym13193286
CA
Dietary Polysaccharide from Enteromorpha clathrata Attenuates Obesity and Increases the Intestinal Abundance of Butyrate-Producing Bacterium, Eubacterium xylanophilum, in Mice Fed a High-Fat Diet
POLYMERS, 10.3390/polym13193286
CA
Dietary Polysaccharide from Enteromorpha clathrata Attenuates Obesity and Increases the Intestinal Abundance of Butyrate-Producing Bacterium, Eubacterium xylanophilum, in Mice Fed a High-Fat Diet
POLYMERS, 10.3390/polym13193286
CA
Dietary Polysaccharide from Enteromorpha clathrata Attenuates Obesity and Increases the Intestinal Abundance of Butyrate-Producing Bacterium, Eubacterium xylanophilum, in Mice Fed a High-Fat Diet
POLYMERS, 10.3390/polym13193286
CA
Dietary Polysaccharide from Enteromorpha clathrata Attenuates Obesity and Increases the Intestinal Abundance of Butyrate-Producing Bacterium, Eubacterium xylanophilum, in Mice Fed a High-Fat Diet
POLYMERS, 10.3390/polym13193286
CA
Dietary Polysaccharide from Enteromorpha clathrata Attenuates Obesity and Increases the Intestinal Abundance of Butyrate-Producing Bacterium, Eubacterium xylanophilum, in Mice Fed a High-Fat Diet
POLYMERS, 10.3390/polym13193286