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热心肠智库
专家文章 | 王军军
2024
CA
Molecular Mechanisms Underlying the Effects of Small Intestinal Fermentation on Enhancement of Prebiotic Characteristics of Cellulose in the Large Intestine
J AGR FOOD CHEM, 10.1021/acs.jafc.3c09146
2023
CA
Lactobacillus amylovorus Promotes Lactose Utilization in Small Intestine and Enhances Intestinal Barrier Function in Intrauterine Growth Restricted Piglets
J Nutr, 10.1016/j.tjnut.2023.12.004
CA
Polyphenol-rich diet mediates interplay between macrophage-neutrophil and gut microbiota to alleviate intestinal inflammation
CELL DEATH DIS, 10.1038/s41419-023-06190-4
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CA
Gut microbiota bridges dietary nutrients and host immunity
Sci China Life Sci, 10.1007/s11427-023-2346-1
CA
Amylopectin Partially Substituted by Cellulose in the Hindgut Was Beneficial to Short-Chain Fatty Acid Production and Probiotic Colonization
Microbiol Spectr, 10.1128/spectrum.03815-22
CA
Strain specificity of lactobacilli with promoted colonization by galactooligosaccharides administration in protecting intestinal barriers during Salmonella infection
J Adv Res, 10.1016/j.jare.2023.03.001
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CA
Gut microbiota-derived ursodeoxycholic acid alleviates low birth weight-induced colonic inflammation by enhancing M2 macrophage polarization
Microbiome, 10.1186/s40168-022-01458-x
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2022
CA
Small extracellular vesicles from Ptpn1-deficient macrophages alleviate intestinal inflammation by reprogramming macrophage polarization via lactadherin enrichment
REDOX BIOL, 10.1016/j.redox.2022.102558
CA
Consumption of Dietary Fiber with Different Physicochemical Properties during Late Pregnancy Alters the Gut Microbiota and Relieves Constipation in Sow Model
Nutrients, 10.3390/nu14122511
CA
Protein Digestion Kinetics Influence Maternal Protein Loss, Litter Growth, and Nitrogen Utilization in Lactating Sows
Front Nutr, 10.3389/fnut.2022.862823
CA
Sources of Dietary Fiber Affect the SCFA Production and Absorption in the Hindgut of Growing Pigs
Front Nutr, 10.3389/fnut.2021.719935
2021
CA
Xylan alleviates dietary fiber deprivation-induced dysbiosis by selectively promoting Bifidobacterium pseudocatenulatum in pigs
Microbiome, 10.1186/s40168-021-01175-x
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CA
Xylo-oligosaccharide alleviates Salmonella induced inflammation by stimulating Bifidobacterium animalis and inhibiting Salmonella colonization
FASEB J, 10.1096/fj.202100919RR
CA
Gut microbiota from green tea polyphenol-dosed mice improves intestinal epithelial homeostasis and ameliorates experimental colitis
Microbiome, 10.1186/s40168-021-01115-9
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CA
Ingestion of xylooligosaccharides during the suckling period improve the feed efficiency and hindgut fermentation capacity of piglets after weaning
Food Funct, 10.1039/d1fo02275j
CA
Maternal galactooligosaccharides supplementation programmed immune defense, microbial colonization and intestinal development in piglets
Food Funct, 10.1039/d1fo00084e
CA
In Vitro Fermentation Characteristics and Fiber-Degrading Enzyme Kinetics of Cellulose, Arabinoxylan, β-Glucan and Glucomannan by Pig Fecal Microbiota
Microorganisms, 10.3390/microorganisms9051071
CA
In Vitro Fermentation Characteristics and Fiber-Degrading Enzyme Kinetics of Cellulose, Arabinoxylan, β-Glucan and Glucomannan by Pig Fecal Microbiota
Microorganisms, 10.3390/microorganisms9051071
CA
In Vitro Fermentation Characteristics and Fiber-Degrading Enzyme Kinetics of Cellulose, Arabinoxylan, β-Glucan and Glucomannan by Pig Fecal Microbiota
Microorganisms, 10.3390/microorganisms9051071
CA
In Vitro Fermentation Characteristics and Fiber-Degrading Enzyme Kinetics of Cellulose, Arabinoxylan, β-Glucan and Glucomannan by Pig Fecal Microbiota
Microorganisms, 10.3390/microorganisms9051071