Butyrate (BioDeep_00000840355)
代谢物信息卡片
化学式: C4H7O2- (87.0446022)
中文名称:
谱图信息:
最多检出来源 Homo sapiens(blood) 20%
分子结构信息
SMILES: CCCC(=O)[O-]
InChI: InChI=1S/C4H8O2/c1-2-3-4(5)6/h2-3H2,1H3,(H,5,6)/p-1
描述信息
A short-chain fatty acid anion that is the conjugate base of butyric acid, obtained by deprotonation of the carboxy group.
同义名列表
1 个代谢物同义名
数据库引用编号
6 个数据库交叉引用编号
- ChEBI: CHEBI:17968
- PubChem: 104775
- ChEMBL: CHEMBL62381
- MeSH: Butyrates
- CAS: 461-55-2
- MetaboLights: MTBLC17968
分类词条
相关代谢途径
Reactome(10)
- Metabolism
- Biological oxidations
- Sensory Perception
- Phase II - Conjugation of compounds
- Cytosolic sulfonation of small molecules
- Metabolism of lipids
- Fatty acid metabolism
- Mitochondrial Fatty Acid Beta-Oxidation
- mitochondrial fatty acid beta-oxidation of saturated fatty acids
- Olfactory Signaling Pathway
BioCyc(12)
- gallate degradation III (anaerobic)
- superpathway of L-lysine degradation
- L-lysine fermentation to acetate and butanoate
- superpathway of Clostridium acetobutylicum acidogenic and solventogenic fermentation
- pyruvate fermentation to acetone
- superpathway of Clostridium acetobutylicum solventogenic fermentation
- glutamate degradation V (via hydroxyglutarate)
- lysine fermentation to acetate and butyrate
- glutamate degradation VII (to butanoate)
- 4-aminobutyrate degradation V
- superpathway of Clostridium acetobutylicum acidogenic fermentation
- L-glutamate degradation VII (to butanoate)
PlantCyc(0)
代谢反应
120 个相关的代谢反应过程信息。
Reactome(47)
- Olfactory Signaling Pathway:
GTP + odorant:Olfactory Receptor:GNAL:GDP:GNB1:GNG13 ⟶ GDP + odorant:Olfactory Receptor:GNAL:GTP:GNB1:GNG13
- Sensory Perception:
GTP + odorant:Olfactory Receptor:GNAL:GDP:GNB1:GNG13 ⟶ GDP + odorant:Olfactory Receptor:GNAL:GTP:GNB1:GNG13
- Metabolism:
3alpha,7alpha,12alpha-trihydroxy-5beta-cholest-24-one-CoA + CoA-SH ⟶ choloyl-CoA + propionyl CoA
- Biological oxidations:
11DCORT + H+ + Oxygen + TPNH ⟶ CORT + H2O + TPN
- Phase II - Conjugation of compounds:
H2O + PNPB ⟶ BUT + PNP
- Cytosolic sulfonation of small molecules:
H2O + PNPB ⟶ BUT + PNP
- Metabolism:
3alpha,7alpha,12alpha-trihydroxy-5beta-cholest-24-one-CoA + CoA-SH ⟶ choloyl-CoA + propionyl CoA
- Biological oxidations:
H+ + Oxygen + TPNH + aflatoxin B1 ⟶ AFXBO + H2O + TPN
- Phase II - Conjugation of compounds:
H2O + SAH ⟶ Ade-Rib + HCYS
- Cytosolic sulfonation of small molecules:
PAPS + beta-estradiol ⟶ E2-SO4 + PAP
- Metabolism:
1-3-oxo-THA-CoA + CoA-SH ⟶ DHA-CoA + propionyl CoA
- Biological oxidations:
11DCORT + H+ + Oxygen + TPNH ⟶ CORT + H2O + TPN
- Phase II - Conjugation of compounds:
H2O + PNPB ⟶ BUT + PNP
- Cytosolic sulfonation of small molecules:
H2O + PNPB ⟶ BUT + PNP
- Metabolism:
1-3-oxo-THA-CoA + CoA-SH ⟶ DHA-CoA + propionyl CoA
- Biological oxidations:
11DCORT + H+ + Oxygen + TPNH ⟶ CORT + H2O + TPN
- Phase II - Conjugation of compounds:
H2O + PNPB ⟶ BUT + PNP
- Cytosolic sulfonation of small molecules:
H2O + PNPB ⟶ BUT + PNP
- Metabolism:
2MACA-CoA + CoA ⟶ Ac-CoA + PROP-CoA
- Biological oxidations:
H+ + Oxygen + TPNH + progesterone ⟶ 11DCORST + H2O + TPN
- Phase II - Conjugation of compounds:
H2O + PNPB ⟶ BUT + PNP
- Cytosolic sulfonation of small molecules:
H2O + PNPB ⟶ BUT + PNP
- Metabolism:
3alpha,7alpha,12alpha-trihydroxy-5beta-cholest-24-one-CoA + CoA-SH ⟶ choloyl-CoA + propionyl CoA
- Metabolism of lipids:
1-3-oxo-THA-CoA + CoA-SH ⟶ DHA-CoA + propionyl CoA
- Fatty acid metabolism:
ATP + PROP-CoA + carbon dioxide ⟶ ADP + MEMA-CoA + Pi
- Mitochondrial Fatty Acid Beta-Oxidation:
ATP + PROP-CoA + carbon dioxide ⟶ ADP + MEMA-CoA + Pi
- mitochondrial fatty acid beta-oxidation of saturated fatty acids:
ATP + BUT ⟶ AMP + BT-CoA + PPi
- Beta oxidation of butanoyl-CoA to acetyl-CoA:
ATP + BUT ⟶ AMP + BT-CoA + PPi
- Biological oxidations:
11DCORT + H+ + Oxygen + TPNH ⟶ CORT + H2O + TPN
- Phase II - Conjugation of compounds:
H2O + PNPB ⟶ BUT + PNP
- Cytosolic sulfonation of small molecules:
H2O + PNPB ⟶ BUT + PNP
- Metabolism:
1-3-oxo-THA-CoA + CoA-SH ⟶ DHA-CoA + propionyl CoA
- Biological oxidations:
11DCORT + H+ + Oxygen + TPNH ⟶ CORT + H2O + TPN
- Phase II - Conjugation of compounds:
H2O + PNPB ⟶ BUT + PNP
- Cytosolic sulfonation of small molecules:
H2O + PNPB ⟶ BUT + PNP
- Metabolism:
2MACA-CoA + CoA ⟶ Ac-CoA + PROP-CoA
- Biological oxidations:
11DCORT + H+ + Oxygen + TPNH ⟶ CORT + H2O + TPN
- Phase II - Conjugation of compounds:
H2O + PNPB ⟶ BUT + PNP
- Cytosolic sulfonation of small molecules:
H2O + PNPB ⟶ BUT + PNP
- Metabolism:
ATP + PROP-CoA + carbon dioxide ⟶ ADP + MEMA-CoA + Pi
- Biological oxidations:
11DCORT + H+ + Oxygen + TPNH ⟶ CORT + H2O + TPN
- Phase II - Conjugation of compounds:
PAPS + beta-estradiol ⟶ E2-SO4 + PAP
- Cytosolic sulfonation of small molecules:
PAPS + beta-estradiol ⟶ E2-SO4 + PAP
- Metabolism:
1-3-oxo-THA-CoA + CoA-SH ⟶ DHA-CoA + propionyl CoA
- Biological oxidations:
11DCORT + H+ + Oxygen + TPNH ⟶ CORT + H2O + TPN
- Phase II - Conjugation of compounds:
H2O + PNPB ⟶ BUT + PNP
- Cytosolic sulfonation of small molecules:
H2O + PNPB ⟶ BUT + PNP
BioCyc(70)
- butane degradation:
NADH + O2 + butan-1-al ⟶ H2O + NAD+ + butanoate
- succinate fermentation to butanoate:
acetate + butanoyl-CoA ⟶ acetyl-CoA + butanoate
- L-glutamate degradation VII (to butanoate):
(2S, 3S)-3-methylaspartate ⟶ ammonium + mesaconate
- acetyl-CoA fermentation to butanoate II:
acetate + butanoyl-CoA ⟶ acetyl-CoA + butanoate
- superpathway of L-lysine degradation:
acetoacetate + butanoyl-CoA ⟶ acetoacetyl-CoA + butanoate
- superpathway of Clostridium acetobutylicum acidogenic and solventogenic fermentation:
H+ + acetoacetate ⟶ CO2 + acetone
- pyruvate fermentation to acetone:
H+ + acetoacetate ⟶ CO2 + acetone
- superpathway of Clostridium acetobutylicum acidogenic fermentation:
ATP + butanoate ⟶ ADP + butanoyl phosphate
- superpathway of Clostridium acetobutylicum solventogenic fermentation:
H+ + acetoacetate ⟶ CO2 + acetone
- pyruvate fermentation to butanoate:
ATP + butanoate ⟶ ADP + butanoyl phosphate
- L-glutamate degradation V (via hydroxyglutarate):
acetate + butanoyl-CoA ⟶ acetyl-CoA + butanoate
- 2-propylphenol degradation:
2-propylphenol + H+ + NADH + O2 ⟶ 3-propylcatechol + H2O + NAD+
- L-lysine fermentation to acetate and butanoate:
acetoacetate + butanoyl-CoA ⟶ acetoacetyl-CoA + butanoate
- 4-aminobutanoate degradation V:
acetate + butanoyl-CoA ⟶ acetyl-CoA + butanoate
- gallate degradation III (anaerobic):
acetate + butanoyl-CoA ⟶ acetyl-CoA + butanoate
- acetyl-CoA fermentation to butyrate II:
acetate + butanoyl-CoA ⟶ acetyl-CoA + butanoate
- glutamate degradation V (via hydroxyglutarate):
H2O + NAD+ + glt ⟶ 2-oxoglutarate + H+ + NADH + ammonia
- ethanol fermentation to acetate:
NAD+ + ethanol ⟶ H+ + NADH + acetaldehyde
- lysine fermentation to acetate and butyrate:
L-3-aminobutyryl-CoA ⟶ H+ + ammonia + crotonyl-CoA
- pyruvate fermentation to butanoate:
an oxidized ferredoxin [iron-sulfur] cluster + coenzyme A + pyruvate ⟶ CO2 + a reduced ferredoxin [iron-sulfur] cluster + acetyl-CoA
- glutamate degradation VII (to butanoate):
(2S, 3S)-3-methylaspartate ⟶ ammonia + mesaconate
- 4-aminobutyrate degradation V:
H2O + NAD+ + glt ⟶ 2-oxoglutarate + H+ + NADH + ammonia
- acetyl-CoA fermentation to butanoate II:
ATP + acetate ⟶ ADP + acetyl phosphate
- glycerol degradation to butanol:
NAD+ + glycerol ⟶ H+ + NADH + dihydroxyacetone
- glutamate degradation VII (to butanoate):
ATP + acetate + coenzyme A ⟶ AMP + acetyl-CoA + diphosphate
- acetyl-CoA fermentation to butyrate II:
acetate + butanoyl-CoA ⟶ acetyl-CoA + n-butanoate
- superpathway of Clostridium acetobutylicum acidogenic fermentation:
ATP + acetate ⟶ ADP + acetyl phosphate
- pyruvate fermentation to butanoate:
an oxidized ferredoxin [iron-sulfur] cluster + coenzyme A + pyruvate ⟶ CO2 + H+ + a reduced ferredoxin [iron-sulfur] cluster + acetyl-CoA
- acetyl-CoA fermentation to butyrate II:
acetate + butanoyl-CoA ⟶ acetyl-CoA + n-butanoate
- pyruvate fermentation to butanoate:
an oxidized ferredoxin [iron-sulfur] cluster + coenzyme A + pyruvate ⟶ CO2 + H+ + a reduced ferredoxin [iron-sulfur] cluster + acetyl-CoA
- lysine fermentation to acetate and butyrate:
ATP + acetate ⟶ ADP + acetyl phosphate
- pyruvate fermentation to butanoate:
an oxidized ferredoxin [iron-sulfur] cluster + coenzyme A + pyruvate ⟶ CO2 + H+ + a reduced ferredoxin [iron-sulfur] cluster + acetyl-CoA
- acetyl-CoA fermentation to butanoate II:
acetate + butanoyl-CoA ⟶ acetyl-CoA + butanoate
- superpathway of Clostridium acetobutylicum acidogenic fermentation:
ATP + acetate ⟶ ADP + acetyl phosphate
- pyruvate fermentation to butanoate:
an oxidized ferredoxin [iron-sulfur] cluster + coenzyme A + pyruvate ⟶ CO2 + H+ + a reduced ferredoxin [iron-sulfur] cluster + acetyl-CoA
- gallate degradation III (anaerobic):
3-hydroxy-5-oxohexanoate + acetyl-CoA ⟶ 3-hydroxy-5- oxohexanoyl-CoA + acetate
- L-lysine fermentation to acetate and butanoate:
ATP + acetate ⟶ ADP + acetyl phosphate
- gallate degradation III (anaerobic):
acetate + butanoyl-CoA ⟶ acetyl-CoA + butanoate
- ethanol fermentation to acetate:
NAD+ + ethanol ⟶ H+ + NADH + acetaldehyde
- pyruvate fermentation to butanoate:
an oxidized ferredoxin [iron-sulfur] cluster + coenzyme A + pyruvate ⟶ CO2 + H+ + a reduced ferredoxin [iron-sulfur] cluster + acetyl-CoA
- acetyl-CoA fermentation to butanoate II:
acetate + butanoyl-CoA ⟶ acetyl-CoA + butanoate
- pyruvate fermentation to butanoate:
an oxidized ferredoxin [iron-sulfur] cluster + coenzyme A + pyruvate ⟶ CO2 + H+ + a reduced ferredoxin [iron-sulfur] cluster + acetyl-CoA
- L-glutamate degradation VII (to butanoate):
(S)-citramalate ⟶ acetate + pyruvate
- lysine fermentation to acetate and butyrate:
(3S,5S)-3,5-diaminohexanoate + H2O + NAD+ ⟶ (S)-5-amino-3-oxohexanoate + H+ + NADH + ammonia
- pyruvate fermentation to butanoate:
ATP + n-butanoate ⟶ ADP + butanoyl phosphate
- pyruvate fermentation to butanoate:
an oxidized ferredoxin [iron-sulfur] cluster + coenzyme A + pyruvate ⟶ CO2 + H+ + a reduced ferredoxin [iron-sulfur] cluster + acetyl-CoA
- glycerol degradation to butanol:
NAD+ + glycerol ⟶ H+ + NADH + dihydroxyacetone
- superpathway of Clostridium acetobutylicum acidogenic fermentation:
ATP + acetate ⟶ ADP + acetylphosphate
- acetyl-CoA fermentation to butyrate II:
acetate + butanoyl-CoA ⟶ acetyl-CoA + n-butanoate
- lysine fermentation to acetate and butyrate:
L-3-aminobutyryl-CoA ⟶ H+ + ammonia + crotonyl-CoA
- 4-aminobutyrate degradation V:
H2O + NAD+ + glt ⟶ 2-oxoglutarate + H+ + NADH + ammonia
- pyruvate fermentation to acetone:
acetoacetate + acetyl-CoA ⟶ acetate + acetoacetyl-CoA
- gallate degradation III (anaerobic):
3-hydroxy-5-oxohexanoate + acetyl-CoA ⟶ 3-hydroxy-5- oxohexanoyl-CoA + acetate
- glycerol degradation to butanol:
NAD+ + glycerol ⟶ H+ + NADH + dihydroxyacetone
- acetyl-CoA fermentation to butyrate II:
acetate + butanoyl-CoA ⟶ acetyl-CoA + n-butanoate
- glutamate degradation V (via hydroxyglutarate):
H2O + NAD+ + glt ⟶ 2-oxoglutarate + H+ + NADH + ammonia
- pyruvate fermentation to butanoate:
an oxidized ferredoxin [iron-sulfur] cluster + coenzyme A + pyruvate ⟶ CO2 + H+ + a reduced ferredoxin [iron-sulfur] cluster + acetyl-CoA
- glutamate degradation VII (to butanoate):
(2S, 3S)-3-methylaspartate ⟶ ammonia + mesaconate
- 4-aminobutyrate degradation V:
H2O + NAD+ + glt ⟶ 2-oxoglutarate + H+ + NADH + ammonia
- 4-aminobutanoate degradation V:
Glu + H2O + NAD+ ⟶ 2-oxoglutarate + H+ + NADH + ammonium
- succinate fermentation to butanoate:
acetate + butanoyl-CoA ⟶ acetyl-CoA + butanoate
- pyruvate fermentation to butanoate:
an oxidized ferredoxin [iron-sulfur] cluster + coenzyme A + pyruvate ⟶ CO2 + H+ + a reduced ferredoxin [iron-sulfur] cluster + acetyl-CoA
- gallate degradation III (anaerobic):
3-hydroxy-5- oxohexanoyl-CoA + acetate ⟶ 3-hydroxy-5-oxohexanoate + acetyl-CoA
- acetyl-CoA fermentation to butanoate II:
acetate + butanoyl-CoA ⟶ acetyl-CoA + butanoate
- succinate fermentation to butanoate:
acetate + succinyl-CoA ⟶ acetyl-CoA + succinate
- L-glutamate degradation V (via hydroxyglutarate):
(R)-2-hydroxyglutarate + NAD+ ⟶ 2-oxoglutarate + H+ + NADH
- 4-aminobutanoate degradation V:
Glu + H2O + NAD+ ⟶ 2-oxoglutarate + H+ + NADH + ammonium
- acetyl-CoA fermentation to butanoate II:
acetate + butanoyl-CoA ⟶ acetyl-CoA + butanoate
- acetyl-CoA fermentation to butanoate II:
ATP + acetate ⟶ ADP + acetyl phosphate
- acetyl-CoA fermentation to butanoate II:
ATP + acetate ⟶ ADP + acetyl phosphate
WikiPathways(2)
- Butyrate-induced histone acetylation:
Butyrate ⟶ Acetyl CoA
- Butyrate-induced histone acetylation:
Butyrate ⟶ Acetyl CoA
Plant Reactome(0)
INOH(0)
PlantCyc(1)
- fatty acid β-oxidation II (peroxisome):
O2 + a 2,3,4-saturated fatty acyl CoA ⟶ a trans-2-enoyl-CoA + hydrogen peroxide
COVID-19 Disease Map(0)
PathBank(0)
PharmGKB(0)
0 个相关的物种来源信息
在这里通过桑基图来展示出与当前的这个代谢物在我们的BioDeep知识库中具有相关联信息的其他代谢物。在这里进行关联的信息来源主要有:
- PubMed: 来源于PubMed文献库中的文献信息,我们通过自然语言数据挖掘得到的在同一篇文献中被同时提及的相关代谢物列表,这个列表按照代谢物同时出现的文献数量降序排序,取前10个代谢物作为相关研究中关联性很高的代谢物集合展示在桑基图中。
- NCBI Taxonomy: 通过文献数据挖掘,得到的代谢物物种来源信息关联。这个关联信息同样按照出现的次数降序排序,取前10个代谢物作为高关联度的代谢物集合展示在桑吉图上。
- Chemical Taxonomy: 在物质分类上处于同一个分类集合中的其他代谢物
- Chemical Reaction: 在化学反应过程中,存在为当前代谢物相关联的生化反应过程中的反应底物或者反应产物的关联代谢物信息。
点击图上的相关代谢物的名称,可以跳转到相关代谢物的信息页面。
文献列表
- Malihe Keramat, Mohammad-Taghi Golmakani. Antioxidant potency and inhibitory mechanism of curcumin and its derivatives in oleogel and emulgel produced by linseed oil.
Food chemistry.
2024 Jul; 445(?):138754. doi:
10.1016/j.foodchem.2024.138754
. [PMID: 38364496] - Akihiro Nakamura, Yuta Kagaya, Hiroki Saito, Masanori Kanazawa, Kenjiro Sato, Masanobu Miura, Masateru Kondo, Hideaki Endo. Impact of pemafibrate on lipid profile and insulin resistance in hypertriglyceridemic patients with coronary artery disease and metabolic syndrome.
Heart and vessels.
2024 Jun; 39(6):486-495. doi:
10.1007/s00380-024-02363-z
. [PMID: 38393377] - Rikard Fristedt, Vanessa Ruppert, Tania Trower, Janine Cooney, Rikard Landberg. Quantitation of circulating short-chain fatty acids in small volume blood samples from animals and humans.
Talanta.
2024 May; 272(?):125743. doi:
10.1016/j.talanta.2024.125743
. [PMID: 38382298] - Yuanyuan Rong, Meili Xu, Tao Hu, Shasha Zhang, Jianfeng Fu, Huaqin Liu. Effects of butyrate on intestinal ischemia-reperfusion injury via the HMGB1-TLR4-MyD88 signaling pathway.
Aging.
2024 May; 16(9):7961-7978. doi:
10.18632/aging.205797
. [PMID: 38709282] - Rimi Izumihara, Hiroshi Nomoto, Kenichi Kito, Yuki Yamauchi, Kazuno Omori, Yui Shibayama, Shingo Yanagiya, Aika Miya, Hiraku Kameda, Kyu Yong Cho, So Nagai, Ichiro Sakuma, Akinobu Nakamura, Tatsuya Atsumi. Switching from Conventional Fibrates to Pemafibrate Has Beneficial Effects on the Renal Function of Diabetic Subjects with Chronic Kidney Disease.
Diabetes & metabolism journal.
2024 May; 48(3):473-481. doi:
10.4093/dmj.2023.0370
. [PMID: 38419467] - Seita Chudan, Takuto Kurakawa, Miyu Nishikawa, Yoshinori Nagai, Yoshiaki Tabuchi, Shinichi Ikushiro, Yukihiro Furusawa. Beneficial Effects of Dietary Fiber in Young Barley Leaf on Gut Microbiota and Immunity in Mice.
Molecules (Basel, Switzerland).
2024 Apr; 29(8):. doi:
10.3390/molecules29081897
. [PMID: 38675716] - J W Zwolschen, A P Vos, R M C Ariëns, H A Schols. In vitro batch fermentation of (un)saturated homogalacturonan oligosaccharides.
Carbohydrate polymers.
2024 Apr; 329(?):121789. doi:
10.1016/j.carbpol.2024.121789
. [PMID: 38286556] - Xiaowei Zhang, Xueer Yi, Wenwen Yu, Tingting Chen, Boyan Gao, Robert G Gilbert, Cheng Li. Subtle structural variations of resistant starch from whole cooked rice significantly impact metabolic outputs of gut microbiota.
Carbohydrate polymers.
2024 Apr; 329(?):121779. doi:
10.1016/j.carbpol.2024.121779
. [PMID: 38286529] - Ting Li, Xiaolong Ma, Ting Wang, Wenyan Tian, Jian Liu, Wenke Shen, Yuanyuan Liu, Yiwei Li, Xiaoxu Zhang, Junbai Ma, Xiaoxia Zhang, Jinhai Ma, Hao Wang. Clostridium butyricum inhibits the inflammation in children with primary nephrotic syndrome by regulating Th17/Tregs balance via gut-kidney axis.
BMC microbiology.
2024 Mar; 24(1):97. doi:
10.1186/s12866-024-03242-3
. [PMID: 38521894] - Fu-Xiang Lin, Zhan-Ping Xu. Deficient butyrate metabolism in the gut microbiome: an emerging risk factor for recurrent kidney stone disease.
Urolithiasis.
2024 03; 52(1):47. doi:
10.1007/s00240-024-01558-3
. [PMID: 38520555] - Alcir L Dafre, Saadia Zahid, Jessica Jorge Probst, Antonio Currais, Jingting Yu, David Schubert, Pamela Maher. CMS121: a novel approach to mitigate aging-related obesity and metabolic dysfunction.
Aging.
2024 Mar; 16(6):4980-4999. doi:
10.18632/aging.205673
. [PMID: 38517358] - Rachel Jackson, Tianming Yao, Nuseybe Bulut, Thaisa M Cantu-Jungles, Bruce R Hamaker. Protein combined with certain dietary fibers increases butyrate production in gut microbiota fermentation.
Food & function.
2024 Mar; 15(6):3186-3198. doi:
10.1039/d3fo04187e
. [PMID: 38441170] - Zhuqing Xie, Weiwei He, Alex Gobbi, Hanne Christine Bertram, Dennis Sandris Nielsen. The effect of in vitro simulated colonic pH gradients on microbial activity and metabolite production using common prebiotics as substrates.
BMC microbiology.
2024 Mar; 24(1):83. doi:
10.1186/s12866-024-03235-2
. [PMID: 38468200] - Jacob Lessard-Lord, Charlène Roussel, Joseph Lupien-Meilleur, Pamela Généreux, Véronique Richard, Valérie Guay, Denis Roy, Yves Desjardins. Short term supplementation with cranberry extract modulates gut microbiota in human and displays a bifidogenic effect.
NPJ biofilms and microbiomes.
2024 Mar; 10(1):18. doi:
10.1038/s41522-024-00493-w
. [PMID: 38448452] - Mengjun Wu, Yuxin Lyu, Hangying Xu, Hanqi Luo, Xiaoli Yin, Hong Zheng. Raspberry polysaccharides attenuate hepatic inflammation and oxidative stress in diet-induced obese mice by enhancing butyrate-mediated intestinal barrier function.
International journal of biological macromolecules.
2024 Mar; 262(Pt 2):130007. doi:
10.1016/j.ijbiomac.2024.130007
. [PMID: 38340928] - Miaomiao An, Ruina Liang, Yanjuan Lu, Xiaoxu Li, Guozhu Zhao. Thiopseudomonas acetoxidans sp. nov., an aerobic acetic and butyric acids oxidizer isolated from anaerobic fermentation liquid of food waste.
Antonie van Leeuwenhoek.
2024 Feb; 117(1):35. doi:
10.1007/s10482-024-01932-6
. [PMID: 38351143] - Yibo Guo, Ke Shen, Xinshuai Zhang, Hua Huang. In vitro characterization of alternative l-threonate and d-erythronate catabolic pathways.
Biochemical and biophysical research communications.
2024 Feb; 695(?):149440. doi:
10.1016/j.bbrc.2023.149440
. [PMID: 38157628] - Rui Bi, Rui Hu, Lianyong Jiang, Bohan Wen, Zhaolei Jiang, Hongtao Liu, Ju Mei. Butyrate enhances erastin-induced ferroptosis of lung cancer cells via modulating the ATF3/SLC7A11 pathway.
Environmental toxicology.
2024 Feb; 39(2):529-538. doi:
10.1002/tox.23857
. [PMID: 37341073] - Xiuqiao Zhou, Guohui Yi, Yiming Qian, Xiaorong Yang, Guangying Chen, Yang Hui, Wenhao Chen. Design, Synthesis, and Anti-Hepatocellular Carcinoma Evaluation of Sesquiterpene Lactone Epimers Trilobolide-6-O-isobutyrate Analogs.
Molecules (Basel, Switzerland).
2024 Jan; 29(2):. doi:
10.3390/molecules29020393
. [PMID: 38257306] - Jiao Wei, Zongmei Zheng, Xinxin Hou, Fengjing Jia, Yuan Yuan, Fuwen Yuan, Feng He, Liang Hu, Ling Zhao. Echinacoside inhibits colorectal cancer metastasis via modulating the gut microbiota and suppressing the PI3K/AKT signaling pathway.
Journal of ethnopharmacology.
2024 Jan; 318(Pt A):116866. doi:
10.1016/j.jep.2023.116866
. [PMID: 37429503] - Xi Fan, Zhuangzhuang Zhang, Wenxia Gao, Qingqing Pan, Kui Luo, Bin He, Yuji Pu. An Engineered Butyrate-Derived Polymer Nanoplatform as a Mucosa-Healing Enhancer Potentiates the Therapeutic Effect of Magnolol in Inflammatory Bowel Disease.
ACS nano.
2024 Jan; 18(1):229-244. doi:
10.1021/acsnano.3c05732
. [PMID: 38112525] - Chunping Xu, Jin Feng, Hang Sun, Mingli Yan, Qian Yang, Xiaonan Zhou, Jianguang Yang, Fangyan He, Qing Lin. Pharmacokinetics of 4-Hydroxybenzaldehyde in Normal and Cerebral Ischemia-Reperfusion Injury Rats Based on Microdialysis Technique.
European journal of drug metabolism and pharmacokinetics.
2024 Jan; 49(1):23-32. doi:
10.1007/s13318-023-00863-3
. [PMID: 38001303] - Jie Zheng, Yu An, Yage Du, Ying Song, Qian Zhao, Yanhui Lu. Effects of short-chain fatty acids on blood glucose and lipid levels in mouse models of diabetes mellitus: A systematic review and network meta-analysis.
Pharmacological research.
2024 Jan; 199(?):107041. doi:
10.1016/j.phrs.2023.107041
. [PMID: 38128856] - Hao-Ran Shen, Zhi-Yu Wang, Zhen Shen, Tong-Tong Liu, Yun-Dan Guo, Tian-Le Gao, Hui-Hui Guo, Yan-Xing Han, Jian-Dong Jiang. Bacterial butyrate mediates the anti-atherosclerotic effect of silybin.
Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
2023 Dec; 169(?):115916. doi:
10.1016/j.biopha.2023.115916
. [PMID: 38000354] - Zhichao Li, Mengjuan Chen, Ran Zhang, Zhitong Wang, Hui He, Zhiyi Wan, Hengjian Li, Hanfang Cai, Zhi Chen, Ming Li, Huifen Xu. Clostridium butyricum Ameliorates the Effect of Coprophagy Prevention on Hepatic Lipid Synthesis in Rabbits via the Gut-Liver Axis.
International journal of molecular sciences.
2023 Dec; 24(24):. doi:
10.3390/ijms242417554
. [PMID: 38139382] - Xiaotong Yang, Zhengyan Zhang, Xuqing Shen, Junyi Xu, Yawen Weng, Wei Wang, Jing Xue. Clostridium butyricum and its metabolite butyrate promote ferroptosis susceptibility in pancreatic ductal adenocarcinoma.
Cellular oncology (Dordrecht).
2023 Dec; 46(6):1645-1658. doi:
10.1007/s13402-023-00831-8
. [PMID: 37261698] - Lucas Ghedin Ghizzi, Tiago Antônio Del Valle, Elissandra Maiara de Castro Zilio, Mauro Sérgio da Silva Dias, Alanne Tenório Nunes, Larissa Schneider Gheller, Tássia Barrera de Paula E Silva, Júlia Avansi Marques, Nathalia Trevisan Scognamiglio Grigoletto, Caio Seiti Takiya, Francisco Palma Rennó. Influence of different growing stages of whole-plant soybeans on their nutrient content and silage quality for cattle.
Archives of animal nutrition.
2023 Dec; 77(6):437-451. doi:
10.1080/1745039x.2023.2282277
. [PMID: 38012071] - Hang Zhou, Meiling Liu, Fengyan Meng, Dianfeng Zheng, Naijie Feng. Transcriptomics and physiology reveal the mechanism of potassium indole-3-butyrate (IBAK) mediating rice resistance to salt stress.
BMC plant biology.
2023 Nov; 23(1):569. doi:
10.1186/s12870-023-04531-1
. [PMID: 37968598] - Xiuqi Sun, Anbang Zhang, Bo Pang, Yuanhua Wu, Jingyu Shi, Ning Zhang, Tao Ye. Electroacupuncture pretreatment alleviates spasticity after stroke in rats by inducing the NF-κB/NLRP3 signaling pathway and the gut-brain axis.
Brain research.
2023 Oct; 1822(?):148643. doi:
10.1016/j.brainres.2023.148643
. [PMID: 37884180] - Peng Jia, Li-Feng Dong, Yan Tu, Qi-Yu Diao. Bacillus subtilis and Macleaya cordata extract regulate the rumen microbiota associated with enteric methane emission in dairy cows.
Microbiome.
2023 10; 11(1):229. doi:
10.1186/s40168-023-01654-3
. [PMID: 37858227] - Rachel A Kaminsky, Peter M Reid, Eric Altermann, Nikki Kenters, William J Kelly, Samantha J Noel, Graeme T Attwood, Peter H Janssen. Rumen Lachnospiraceae isolate NK3A20 exhibits metabolic flexibility in response to substrate and coculture with a methanogen.
Applied and environmental microbiology.
2023 Oct; ?(?):e0063423. doi:
10.1128/aem.00634-23
. [PMID: 37800930] - Al-Amin M Bashir, Kehinde S Olaniyi. Butyrate alleviates renal inflammation and fibrosis in a rat model of polycystic ovarian syndrome by suppression of SDF-1.
BMC pharmacology & toxicology.
2023 10; 24(1):48. doi:
10.1186/s40360-023-00692-9
. [PMID: 37789355] - Canhua Xiao, Veronika Fedirko, Henry Claussen, H Richard Johnston, Gang Peng, Sudeshna Paul, Kristal M Maner-Smith, Kristin A Higgins, Dong M Shin, Nabil F Saba, Evanthia C Wommack, Deborah W Bruner, Andrew H Miller. Circulating short chain fatty acids and fatigue in patients with head and neck cancer: A longitudinal prospective study.
Brain, behavior, and immunity.
2023 10; 113(?):432-443. doi:
10.1016/j.bbi.2023.07.025
. [PMID: 37543249] - Peng Yuan, Sheng Li, Situ Xiong, Fucun Zheng, Lin Yang, Ming Jiang, Jiahao Liu, Xiaoqiang Liu, Jun Deng, Jin Zeng, Bin Fu. Development of a butyrate metabolism-related gene-based molecular subtypes and scoring system for predicting prognosis and immunotherapy response in bladder cancer.
Journal of cancer research and clinical oncology.
2023 Oct; 149(13):12489-12505. doi:
10.1007/s00432-023-05067-5
. [PMID: 37450031] - Ruixin Kou, Jin Wang, Ang Li, Yuanyifei Wang, Bowei Zhang, Jingmin Liu, Yi Sun, Shuo Wang. Ameliorating Effects of Bifidobacterium longum subsp. infantis FB3-14 against High-Fat-Diet-Induced Obesity and Gut Microbiota Disorder.
Nutrients.
2023 Sep; 15(19):. doi:
10.3390/nu15194104
. [PMID: 37836387] - Yan Jiang, Chunli Xiu, Hongsheng Pan, Xiaoning Liu. Recruitment of Hippodamia variegata by active volatiles from Glycyrrhiza uralensis and Alhagi sparsifolia plants infested with Aphis atrata.
Pest management science.
2023 Sep; ?(?):. doi:
10.1002/ps.7765
. [PMID: 37691614] - Jacob Lessard-Lord, Charlène Roussel, Valérie Guay, Yves Desjardins. Characterization of the Interindividual Variability Associated with the Microbial Metabolism of (-)-Epicatechin.
Journal of agricultural and food chemistry.
2023 Sep; ?(?):. doi:
10.1021/acs.jafc.3c05491
. [PMID: 37683128] - Magdy El-Salhy. Intestinal bacteria associated with irritable bowel syndrome and chronic fatigue.
Neurogastroenterology and motility.
2023 09; 35(9):e14621. doi:
10.1111/nmo.14621
. [PMID: 37246923] - Jiangbo Nie, Yuhang Ling, Mingchao Jin, Zhuo Chen, Wei Liu, Weiyun Shen, Tianshun Fang, Jianyou Li, Ying He. Butyrate enhances erastin-induced ferroptosis of osteosarcoma cells via regulating ATF3/SLC7A11 pathway.
European journal of pharmacology.
2023 Aug; ?(?):176009. doi:
10.1016/j.ejphar.2023.176009
. [PMID: 37619784] - Dan Zhang, Yong-Ping Jian, Yu-Ning Zhang, Yao Li, Li-Ting Gu, Hui-Hui Sun, Ming-Di Liu, Hong-Lan Zhou, Yi-Shu Wang, Zhi-Xiang Xu. Short-chain fatty acids in diseases.
Cell communication and signaling : CCS.
2023 08; 21(1):212. doi:
10.1186/s12964-023-01219-9
. [PMID: 37596634] - Honggang Guo, Xia Shi, Jie Han, Qianhui Ren, Zhangtai Gao, Aihuan Zhang, Haixiang Wang, Yanli Du. VOCs from fungi infected-apples attract and increase the oviposition of yellow peach moth Conogethes punctiferalis.
Pest management science.
2023 Aug; ?(?):. doi:
10.1002/ps.7727
. [PMID: 37591815] - Raphael R Fagundes, Saskia C Belt, Barbara M Bakker, Gerard Dijkstra, Hermie J M Harmsen, Klaas Nico Faber. Beyond butyrate: microbial fiber metabolism supporting colonic epithelial homeostasis.
Trends in microbiology.
2023 Aug; ?(?):. doi:
10.1016/j.tim.2023.07.014
. [PMID: 37596118] - Muhammad Shayan Khan, Ghulam Mujtaba Ghumman, Abdul Baqi, Jay Shah, Muhammad Aziz, Tanveer Mir, Ayesha Tahir, Srinivas Katragadda, Hemindermeet Singh, Mohammed Taleb, Syed Sohail Ali. Efficacy of Pemafibrate Versus Fenofibrate Administration on Serum Lipid Levels in Patients with Dyslipidemia: Network Meta-Analysis and Systematic Review.
American journal of cardiovascular drugs : drugs, devices, and other interventions.
2023 Jul; ?(?):. doi:
10.1007/s40256-023-00593-6
. [PMID: 37524955] - Xintong Wei, Jiayun Xin, Wei Chen, Jie Wang, Yanhui Lv, Yanping Wei, Zhanhong Li, Qianqian Ding, Yunheng Shen, Xike Xu, Xiuyun Zhang, Weidong Zhang, Xianpeng Zu. Astragalus polysaccharide ameliorated complex factor-induced chronic fatigue syndrome by modulating the gut microbiota and metabolites in mice.
Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
2023 Jul; 163(?):114862. doi:
10.1016/j.biopha.2023.114862
. [PMID: 37167729] - Yaluan Bi, Xuan Zhang, Xuefei Chang, Jiaxin Li, Shan Xiao, Bo Zhang, Cong Dang, Linlin Sun, Hongwei Yao, Qi Fang, Fang Wang, Gongyin Ye. Olfactory behavioral responses of two Drosophila species and their pupal parasitoid to volatiles from bananas.
Pest management science.
2023 Jun; ?(?):. doi:
10.1002/ps.7628
. [PMID: 37357260] - Austin Campbell, Kristi Gdanetz, Alexander W Schmidt, Thomas M Schmidt. H2 generated by fermentation in the human gut microbiome influences metabolism and competitive fitness of gut butyrate producers.
Microbiome.
2023 Jun; 11(1):133. doi:
10.1186/s40168-023-01565-3
. [PMID: 37322527] - Katharina Ardanareswari, Webiana Lowisia, Bernadeta Soedarini, Jiunn-Wang Liao, Yun-Chin Chung. Jaboticaba (Myrciaria cauliflora) Fruit Extract Suppressed Aberrant Crypt Formation in 1,2-Dimetylhydrazine-Induced Rats.
Plant foods for human nutrition (Dordrecht, Netherlands).
2023 Jun; 78(2):286-291. doi:
10.1007/s11130-023-01051-z
. [PMID: 36820999] - Justin George, Gadi V P Reddy, Nathan Little, Sarah E J Arnold, David R Hall. Combining visual cues and pheromone blends for monitoring and management of the tarnished plant bug Lygus lineolaris (Hemiptera: Miridae).
Pest management science.
2023 Jun; 79(6):2163-2171. doi:
10.1002/ps.7395
. [PMID: 36730090] - Min Jiang, Zhiwei Li, Fengbo Zhang, Zheng Li, Dan Xu, Jing Jing, Fengsen Li, Jing Wang, Jianbing Ding. Butyrate inhibits iILC2-mediated lung inflammation via lung-gut axis in chronic obstructive pulmonary disease (COPD).
BMC pulmonary medicine.
2023 May; 23(1):163. doi:
10.1186/s12890-023-02438-z
. [PMID: 37173731] - Thidathip Wongsurawat, Sawannee Sutheeworapong, Piroon Jenjaroenpun, Suvimol Charoensiddhi, Ahmad Nuruddin Khoiri, Supachai Topanurak, Chantira Sutthikornchai, Pornrutsami Jintaridth. Microbiome analysis of thai traditional fermented soybeans reveals short-chain fatty acid-associated bacterial taxa.
Scientific reports.
2023 May; 13(1):7573. doi:
10.1038/s41598-023-34818-0
. [PMID: 37165206] - Yinglan Yu, Xinran Shen, Xin Xiao, Lian Li, Yuan Huang. Butyrate Modification Promotes Intestinal Absorption and Hepatic Cancer Cells Targeting of Ferroptosis Inducer Loaded Nanoparticle for Enhanced Hepatocellular Carcinoma Therapy.
Small (Weinheim an der Bergstrasse, Germany).
2023 May; ?(?):e2301149. doi:
10.1002/smll.202301149
. [PMID: 37165608] - Xiao-Qin Gao, Jin-di Xu, Shi-Kang Zhou, Yi Zhang, Li Zhang. [Jujubae Fructus alleviates intestinal injury caused by toxic medicinals in Shizao Decoction based on correlation between intestinal flora and host metabolism].
Zhongguo Zhong yao za zhi = Zhongguo zhongyao zazhi = China journal of Chinese materia medica.
2023 May; 48(10):2792-2802. doi:
10.19540/j.cnki.cjcmm.20230111.401
. [PMID: 37282939] - Daniel Cuervo-Zanatta, Tauqeerunnisa Syeda, Vicente Sánchez-Valle, Mariangel Irene-Fierro, Pablo Torres-Aguilar, Mónica Adriana Torres-Ramos, Mineko Shibayama-Salas, Angélica Silva-Olivares, Lilia G Noriega, Nimbe Torres, Armando R Tovar, Iván Ruminot, L Felipe Barros, Jaime García-Mena, Claudia Perez-Cruz. Dietary Fiber Modulates the Release of Gut Bacterial Products Preventing Cognitive Decline in an Alzheimer's Mouse Model.
Cellular and molecular neurobiology.
2023 May; 43(4):1595-1618. doi:
10.1007/s10571-022-01268-7
. [PMID: 35953741] - Thomas M Barber, Stefan Kabisch, Andreas F H Pfeiffer, Martin O Weickert. The Effects of the Mediterranean Diet on Health and Gut Microbiota.
Nutrients.
2023 Apr; 15(9):. doi:
10.3390/nu15092150
. [PMID: 37432307] - Maria Louise Leth, Michael Jakob Pichler, Maher Abou Hachem. Butyrate-producing colonic clostridia: picky glycan utilization specialists.
Essays in biochemistry.
2023 04; 67(3):415-428. doi:
10.1042/ebc20220125
. [PMID: 36350044] - Linlin Xiong, Yanning Wu, Qinglong Shu, Wei Xiong. The pharmacological mechanism of Xiaoyaosan polysaccharide reveals improvement of CUMS-induced depression-like behavior by carbon source-triggered butyrate-producing bacteria.
Journal of applied microbiology.
2023 Apr; 134(4):. doi:
10.1093/jambio/lxad052
. [PMID: 36914210] - Zhan-Ming Li, Chao-Yue Kong, Yu-Qin Mao, Jia-Ting Huang, Hui-Ling Chen, Bing Han, Li-Shun Wang. Ampicillin exacerbates acetaminophen-induced acute liver injury by inducing intestinal microbiota imbalance and butyrate reduction.
Liver international : official journal of the International Association for the Study of the Liver.
2023 04; 43(4):865-877. doi:
10.1111/liv.15512
. [PMID: 36627827] - Marta Ávila, Javier Calzada, Nuria Muñoz-Tébar, Carmen Sánchez, Gonzalo Ortiz de Elguea-Culebras, Manuel Carmona, Ana Molina, M Isabel Berruga, Sonia Garde. Inhibitory activity of aromatic plant extracts against dairy-related Clostridium species and their use to prevent the late blowing defect of cheese.
Food microbiology.
2023 Apr; 110(?):104185. doi:
10.1016/j.fm.2022.104185
. [PMID: 36462831] - Qinghua Luo, Ping Zhou, Shuangqing Chang, Zhifang Huang, Xuebo Zeng. Characterization of butyrate-metabolism in colorectal cancer to guide clinical treatment.
Scientific reports.
2023 Mar; 13(1):5106. doi:
10.1038/s41598-023-32457-z
. [PMID: 36991138] - Meiting Cui, Yanli Hong, Jingyu Huang, Kailu Liu, Juan Chen, Yong Tan, Xiaowei Nie. Efficiency of Chinese medicine Bushen Huatan formula for treatment of polycystic ovary syndrome in mice via regulating gut microbiota and PPARγ pathway.
Zhejiang da xue xue bao. Yi xue ban = Journal of Zhejiang University. Medical sciences.
2023 Feb; 52(1):33-45. doi:
10.3724/zdxbyxb-2022-0456
. [PMID: 37283116] - Signe Schultz Pedersen, Michala Prause, Christina Sørensen, Joachim Størling, Thomas Moritz, Eliana Mariño, Nils Billestrup. Targeted Delivery of Butyrate Improves Glucose Homeostasis, Reduces Hepatic Lipid Accumulation and Inflammation in db/db Mice.
International journal of molecular sciences.
2023 Feb; 24(5):. doi:
10.3390/ijms24054533
. [PMID: 36901964] - Xing Ge, Mingxuan Zheng, Minmin Hu, Xiaoli Fang, Deqin Geng, Sha Liu, Li Wang, Jun Zhang, Li Guan, Peng Zheng, Yuanyi Xie, Wei Pan, Menglu Zhou, Limian Zhou, Renxian Tang, Kuiyang Zheng, Yinghua Yu, Xu-Feng Huang. Butyrate ameliorates quinolinic acid-induced cognitive decline in obesity models.
The Journal of clinical investigation.
2023 Feb; 133(4):. doi:
10.1172/jci154612
. [PMID: 36787221] - Jennifer L Brown, Matthew A Perisin, Candice L Swift, Marcus Benyamin, Sanchao Liu, Vasanth Singan, Yu Zhang, Emily Savage, Christa Pennacchio, Igor V Grigoriev, Michelle A O'Malley. Co‑cultivation of anaerobic fungi with Clostridium acetobutylicum bolsters butyrate and butanol production from cellulose and lignocellulose.
Journal of industrial microbiology & biotechnology.
2023 Feb; 49(6):. doi:
10.1093/jimb/kuac024
. [PMID: 36367297] - Nuseybe Bulut, Thaisa M Cantu-Jungles, Xiaowei Zhang, Zeynep Mutlu, Mukerrem Cakmak, Bruce R Hamaker. Matrix-entrapped fibers create ecological niches for gut bacterial growth.
Scientific reports.
2023 02; 13(1):1884. doi:
10.1038/s41598-023-27907-7
. [PMID: 36732599] - Ting Ge, Chen Yang, Bo Li, Xiaoyu Huang, Leiyun Zhao, Xiaoqiang Zhang, Lintao Tian, Enping Zhang. High-energy diet modify rumen microbial composition and microbial energy metabolism pattern in fattening sheep.
BMC veterinary research.
2023 Feb; 19(1):32. doi:
10.1186/s12917-023-03592-6
. [PMID: 36732756] - Simeng Qin, Keying Zhang, Xuemei Ding, Shiping Bai, Jianping Wang, Gang Tian, Yue Xuan, Zhuowei Su, Quifeng Zeng. Microbiome-metabolomics analysis insight into the effects of dietary resistant starch on intestinal integrity.
Food chemistry.
2023 Feb; 401(?):134148. doi:
10.1016/j.foodchem.2022.134148
. [PMID: 36099823] - Jing Li, Elaine M Richards, Eileen M Handberg, Carl J Pepine, Eyad Alakrad, Chris E Forsmark, Mohan K Raizada. Influence of Butyrate on Impaired Gene Expression in Colon from Patients with High Blood Pressure.
International journal of molecular sciences.
2023 Jan; 24(3):. doi:
10.3390/ijms24032650
. [PMID: 36768972] - You-Lin Tain, Chih-Yao Hou, Guo-Ping Chang-Chien, Sufan Lin, Chien-Ning Hsu. Resveratrol Butyrate Ester Supplementation Blunts the Development of Offspring Hypertension in a Maternal Di-2-ethylhexyl Phthalate Exposure Rat Model.
Nutrients.
2023 Jan; 15(3):. doi:
10.3390/nu15030697
. [PMID: 36771404] - Yan Zhao, Chang Liu, Jin Niu, Zixu Cui, Xinyu Zhao, Wenxin Li, Yanwei Zhang, Yang Yang, Pengfei Gao, Xiaohong Guo, Bugao Li, Sung Woo Kim, Guoqing Cao. Impacts of dietary fiber level on growth performance, apparent digestibility, intestinal development, and colonic microbiota and metabolome of pigs.
Journal of animal science.
2023 Jan; 101(?):. doi:
10.1093/jas/skad174
. [PMID: 37235640] - Dalton A Holt, Isabella Corsato Alvarenga, Renan A Donadelli, Charles G Aldrich. Substrate degradation and postbiotic analysis of alternative fiber ingredients fermented using an in vitro canine fecal inoculum model.
Journal of animal science.
2023 Jan; 101(?):. doi:
10.1093/jas/skad078
. [PMID: 36943140] - Mingxuan Zheng, Xiaoying Yang, Qingyuan Wu, Yuying Gong, Ning Pang, Xing Ge, Nathan Nagaratnam, Pengfei Jiang, Menglu Zhou, Tao Hu, Hui Hua, Kuiyang Zheng, Xu-Feng Huang, Yinghua Yu. Butyrate Attenuates Hepatic Steatosis Induced by a High-Fat and Fiber-Deficient Diet via the Hepatic GPR41/43-CaMKII/HDAC1-CREB Pathway.
Molecular nutrition & food research.
2023 01; 67(1):e2200597. doi:
10.1002/mnfr.202200597
. [PMID: 36382553] - Chongrong Shen, Yanru Chen, Qiaoling Wang, Yingkai Sun, Huibin Lin, Mengshan Ni, Yufei Chen, Ling Zhang, Jiabin Jin, Xiayang Ying, Yuyao Zou, Xiaolin Wang, Yaorui Ye, Miaomiao Yuan, Nan Yin, Zhiwen Cao, Yifei Zhang, Weiqiong Gu, Weiqing Wang, Guang Ning, Jiqiu Wang, Shaoqian Zhao, Jie Hong, Ruixin Liu. Fecal short chain fatty acids modify therapeutic effects of sleeve gastrectomy.
Frontiers in endocrinology.
2023; 14(?):1277035. doi:
10.3389/fendo.2023.1277035
. [PMID: 38027127] - Yan Zhang, Yuan Tao, Yuqing Gu, Qiujie Ma. Butyrate facilitates immune clearance of colorectal cancer cells by suppressing STAT1-mediated PD-L1 expression.
Clinics (Sao Paulo, Brazil).
2023; 78(?):100303. doi:
10.1016/j.clinsp.2023.100303
. [PMID: 37931529] - Alice C Creedon, Eirini Dimidi, Estella S Hung, Megan Rossi, Christopher Probert, Terri Grassby, Jesus Miguens-Blanco, Julian R Marchesi, S Mark Scott, Sarah E Berry, Kevin Whelan. The impact of almonds and almond processing on gastrointestinal physiology, luminal microbiology, and gastrointestinal symptoms: a randomized controlled trial and mastication study.
The American journal of clinical nutrition.
2022 12; 116(6):1790-1804. doi:
10.1093/ajcn/nqac265
. [PMID: 36130222] - Urvi A Shah, Kylee H Maclachlan, Andriy Derkach, Meghan Salcedo, Kelly Barnett, Julia Caple, Jenna Blaslov, Linh Tran, Amanda Ciardiello, Miranda Burge, Tala Shekarkhand, Peter Adintori, Justin Cross, Matthew J Pianko, Kinga Hosszu, Devin McAvoy, Sham Mailankody, Neha Korde, Malin Hultcrantz, Hani Hassoun, Carlyn R Tan, Sydney X Lu, Dhwani Patel, Benjamin Diamond, Gunjan Shah, Michael Scordo, Oscar Lahoud, David J Chung, Heather Landau, Saad Z Usmani, Sergio Giralt, Ying Taur, C Ola Landgren, Gladys Block, Torin Block, Jonathan U Peled, Marcel R M van den Brink, Alexander M Lesokhin. Sustained Minimal Residual Disease Negativity in Multiple Myeloma is Associated with Stool Butyrate and Healthier Plant-Based Diets.
Clinical cancer research : an official journal of the American Association for Cancer Research.
2022 12; 28(23):5149-5155. doi:
10.1158/1078-0432.ccr-22-0723
. [PMID: 36170461] - Hye-Young Youn, Kun-Ho Seo, Hyeon-Jin Kim, Young-Seon Kim, Hyunsook Kim. Effect of postbiotics derived from kefir lactic acid bacteria-mediated bioconversion of citrus pomace extract and whey on high-fat diet-induced obesity and gut dysbiosis.
Food research international (Ottawa, Ont.).
2022 12; 162(Pt A):111930. doi:
10.1016/j.foodres.2022.111930
. [PMID: 36461189] - David A Fraser, Stephen A Harrison, Detlef Schuppan. Icosabutate: targeting metabolic and inflammatory pathways for the treatment of NASH.
Expert opinion on investigational drugs.
2022 Dec; 31(12):1269-1278. doi:
10.1080/13543784.2022.2159804
. [PMID: 36527256] - Mei Deng, Shuai Zhang, Lihong Dong, Fei Huang, Xuchao Jia, Dongxiao Su, Jianwei Chi, Zafarullah Muhammad, Qin Ma, Dong Zhao, Mingwei Zhang, Ruifen Zhang. Shatianyu (Citrus grandis L. Osbeck) Flavonoids and Dietary Fiber in Combination Are More Effective Than Individually in Alleviating High-Fat-Diet-Induced Hyperlipidemia in Mice by Altering Gut Microbiota.
Journal of agricultural and food chemistry.
2022 Nov; 70(46):14654-14664. doi:
10.1021/acs.jafc.2c03797
. [PMID: 36322531] - Jing Duan, Jingkai Pan, Meichen Sun, Yulin Fang. Comparative multiomics study of the effects of Ellagic acid on the gut environment in young and adult mice.
Food research international (Ottawa, Ont.).
2022 11; 161(?):111819. doi:
10.1016/j.foodres.2022.111819
. [PMID: 36192956] - Jiaqi Fan, Lianzhu Lin, Mouming Zhao. Construction of in vitro fermentation model using gut microbiota relating to glucose and lipid metabolism: a supplementary method for initial screening of polysaccharides with hypoglycemic potentials.
Journal of the science of food and agriculture.
2022 Nov; 102(14):6328-6339. doi:
10.1002/jsfa.11983
. [PMID: 35531881] - Hong-Xia Wu, Wei-Jie Li, Le Zhang, Nan-Nan Zhou, Zi-Hang Ye, Xue Wang, Wen-Bing Zhang, Fang Qiao, Zhen-Yu Du, Mei-Ling Zhang. Microbiota derived butyrate affected the muscle texture of Nile tilapia (Oreochromis niloticus) fed with different protein sources.
Food chemistry.
2022 Nov; 393(?):133392. doi:
10.1016/j.foodchem.2022.133392
. [PMID: 35679706] - Kunyang Su, Xue Li, Tianxiang Lu, Yiwen Mou, Na Liu, Mingming Song, Ze Yu. Screening of the heterotrophic microalgae strain for the reclamation of acid producing wastewater.
Chemosphere.
2022 Nov; 307(Pt 3):136047. doi:
10.1016/j.chemosphere.2022.136047
. [PMID: 35977579] - Abdur Rauf Khalid, Talat Bilal Yasoob, Zhen Zhang, Xiaofeng Zhu, Suqin Hang. Dietary Moringa oleifera leaf powder improves jejunal permeability and digestive function by modulating the microbiota composition and mucosal immunity in heat stressed rabbits.
Environmental science and pollution research international.
2022 Nov; 29(53):80952-80967. doi:
10.1007/s11356-022-20737-6
. [PMID: 35725877] - Melanie Le Sayec, Yifan Xu, Manolo Laiola, Fabiola Alvarez Gallego, Daphne Katsikioti, Chandler Durbidge, Uku Kivisild, Sarah Armes, Manon Lecomte, Pascale Fança-Berthon, Emilie Fromentin, Florian Plaza Oñate, J Kennedy Cruickshank, Ana Rodriguez-Mateos. The effects of Aronia berry (poly)phenol supplementation on arterial function and the gut microbiome in middle aged men and women: Results from a randomized controlled trial.
Clinical nutrition (Edinburgh, Scotland).
2022 11; 41(11):2549-2561. doi:
10.1016/j.clnu.2022.08.024
. [PMID: 36228567] - Ya-Nan Yang, Qing-Chun Wang, Wenyi Xu, Jiaqi Yu, Huricha Zhang, Chongming Wu. The berberine-enriched gut commensal Blautia producta ameliorates high-fat diet (HFD)-induced hyperlipidemia and stimulates liver LDLR expression.
Biomedicine & pharmacotherapy = Biomedecine & pharmacotherapie.
2022 Nov; 155(?):113749. doi:
10.1016/j.biopha.2022.113749
. [PMID: 36174380] - Xiaoxiao Yuan, Ruirui Wang, Bing Han, ChengJun Sun, Ruimin Chen, Haiyan Wei, Linqi Chen, Hongwei Du, Guimei Li, Yu Yang, Xiaojuan Chen, Lanwei Cui, Zhenran Xu, Junfen Fu, Jin Wu, Wei Gu, Zhihong Chen, Xin Fang, Hongxiu Yang, Zhe Su, Jing Wu, Qiuyue Li, Miaoying Zhang, Yufeng Zhou, Lei Zhang, Guang Ji, Feihong Luo. Functional and metabolic alterations of gut microbiota in children with new-onset type 1 diabetes.
Nature communications.
2022 10; 13(1):6356. doi:
10.1038/s41467-022-33656-4
. [PMID: 36289225] - Massimiliano Cazzaniga, Giordano Bruno Zonzini, Francesco Di Pierro, Sara Moricoli, Alexander Bertuccioli. Gut Microbiota, Metabolic Disorders and Breast Cancer: Could Berberine Turn Out to Be a Transversal Nutraceutical Tool? A Narrative Analysis.
International journal of molecular sciences.
2022 Oct; 23(20):. doi:
10.3390/ijms232012538
. [PMID: 36293390] - Zhenyu Tian, Yun Zhang, Zhijian Zheng, Meng Zhang, Tao Zhang, Jiajia Jin, Xinjie Zhang, Guixiang Yao, Danxia Kong, Cheng Zhang, Zhe Wang, Qunye Zhang. Gut microbiome dysbiosis contributes to abdominal aortic aneurysm by promoting neutrophil extracellular trap formation.
Cell host & microbe.
2022 10; 30(10):1450-1463.e8. doi:
10.1016/j.chom.2022.09.004
. [PMID: 36228585] - Qianqian Yao, Yanan Gao, Linlin Fan, Jiaqi Wang, Nan Zheng. 2'-Fucosyllactose Remits Colitis-Induced Liver Oxygen Stress through the Gut-Liver-Metabolites Axis.
Nutrients.
2022 Oct; 14(19):. doi:
10.3390/nu14194186
. [PMID: 36235838] - Alma Toledo-Cervantes, Hugo Oscar Méndez-Acosta, Jorge Arreola-Vargas, José Eduardo Gabriel-Barajas, Mariana Nohely Aguilar-Mota, Raúl Snell-Castro. New insights into microbial interactions and putative competitive mechanisms during the hydrogen production from tequila vinasses.
Applied microbiology and biotechnology.
2022 Oct; 106(19-20):6861-6876. doi:
10.1007/s00253-022-12143-2
. [PMID: 36071291] - L L Xiong, M L Mao, Q L Shu. A preliminary study on the diversity of butyrate-producing bacteria in response to the treatment of depression with Xiaoyaosan.
Letters in applied microbiology.
2022 Oct; 75(4):844-856. doi:
10.1111/lam.13737
. [PMID: 35575477] - Renye Que, Mengxing Cao, Yancheng Dai, Yi Zhou, Yirong Chen, Liubing Lin. Decursin ameliorates carbon-tetrachloride-induced liver fibrosis by facilitating ferroptosis of hepatic stellate cells.
Biochemistry and cell biology = Biochimie et biologie cellulaire.
2022 Oct; 100(5):378-386. doi:
10.1139/bcb-2022-0027
. [PMID: 35785548] - Kenichi Kito, Hiroshi Nomoto, Ichiro Sakuma, Akinobu Nakamura, Kyu Yong Cho, Hiraku Kameda, Aika Miya, Kazuno Omori, Shingo Yanagiya, Takahisa Handa, Shinji Taneda, Jun Takeuchi, So Nagai, Kumiko Yamashita, Yoshio Kurihara, Tatsuya Atsumi, Hideaki Miyoshi. Effects of pemafibrate on lipid metabolism in patients with type 2 diabetes and hypertriglyceridemia: A multi-center prospective observational study, the PARM-T2D study.
Diabetes research and clinical practice.
2022 Oct; 192(?):110091. doi:
10.1016/j.diabres.2022.110091
. [PMID: 36174777] - Seyed Hamid Mustafavi, Amin Abbasi, Mohammad Reza Morshedloo, Mirian Pateiro, Jose M Lorenzo. Essential Oil Variability in Iranian Populations of Heracleum persicum Desf. ex Fischer: A Rich Source of Hexyl Butyrate and Octyl Acetate.
Molecules (Basel, Switzerland).
2022 Sep; 27(19):. doi:
10.3390/molecules27196296
. [PMID: 36234832] - Rurong Jiang, Fang Ren, Jinhua Yao. Alkyl polyglycosides enhanced the dark fermentation of excess sludge and plant waste to produce hydrogen: performance and mechanism.
Environmental science and pollution research international.
2022 Sep; 29(45):68087-68095. doi:
10.1007/s11356-022-20619-x
. [PMID: 35527308] - Dong-Xue Lu, Feng Liu, Hua Wu, Hai-Xia Liu, Bing-Yu Chen, Jing Yan, Yin Lu, Zhi-Guang Sun. Wumei pills attenuates 5-fluorouracil-induced intestinal mucositis through Toll-like receptor 4/myeloid differentiation factor 88/nuclear factor-κB pathway and microbiota regulation.
World journal of gastroenterology.
2022 Aug; 28(32):4574-4599. doi:
10.3748/wjg.v28.i32.4574
. [PMID: 36157934] - Lin Tong, Qisheng Feng, Qing Lu, Jing Zhang, Zhili Xiong. Combined 1H NMR fecal metabolomics and 16S rRNA gene sequencing to reveal the protective effects of Gushudan on kidney-yang-deficiency-syndrome rats via gut-kidney axis.
Journal of pharmaceutical and biomedical analysis.
2022 Aug; 217(?):114843. doi:
10.1016/j.jpba.2022.114843
. [PMID: 35623116] - Robin M Voigt, Zeneng Wang, J Mark Brown, Phillip A Engen, Ankur Naqib, Christopher G Goetz, Deborah A Hall, Leo Verhagen Metman, Maliha Shaikh, Christopher B Forsyth, Ali Keshavarzian. Gut microbial metabolites in Parkinson's disease: Association with lifestyle, disease characteristics, and treatment status.
Neurobiology of disease.
2022 08; 170(?):105780. doi:
10.1016/j.nbd.2022.105780
. [PMID: 35654277] - Ziqing Yan, Miaomiao Zhang, Mengjie Xu, Jinglin Yu, Les Copeland, Yongchun Huang, Shujun Wang. Effect of Debranching and Differential Ethanol Precipitation on the Formation and Fermentation Properties of Maize Starch-Lipid Complexes.
Journal of agricultural and food chemistry.
2022 Jul; 70(29):9132-9142. doi:
10.1021/acs.jafc.2c03081
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