Copyright
©The Author(s) 2019.
World J Hepatol. Aug 27, 2019; 11(8): 619-637
Published online Aug 27, 2019. doi: 10.4254/wjh.v11.i8.619
Published online Aug 27, 2019. doi: 10.4254/wjh.v11.i8.619
Study | Subjects | Family | Genus |
Zhu et al[14], 2012 | 3HC, BMI = 20 kg/m2 | ↑ Prevotellaceae | ↑ Prevotella |
↑ Enterobacteriaceae1 | ↑ Escherichia1 | ||
3Obese, BMI > 30 kg/m2 | ↓ Rikenellaceae | ↓ Alistipes | |
↓ Actinobacteria | ↓ Bifidobacterium | ||
3NASH, BMI > 30 kg/m2 | ↓ Lachnospiraceae | ↓ Blautia | |
↓ Ruminococcaceae | ↓ Faecalibacterium | ||
Mouzaki et al[64], 2013 | HC, BMI = 26 kg/m2 | ↑ Enterobacteriaceae | ↑ Clostridium coccoides2 |
↓ Lachnospiraceae2 | |||
SS, BMI = 29 kg/m2 | |||
NASH, BMI > 30 kg/m2 | |||
Raman et al[17], 2013 | HC, BMI < 25 kg/m2 | ↑ Kiloniellaceae | ↑ Lactobacillus |
↑ Pasteurellaceae | ↑ Robinsoniella | ||
NAFLD, BMI > 30 kg/m2 | ↑ Lactobacillaceae | ↑ Roseburia | |
↑ Lachnospiraceae | ↑ Dorea | ||
↑ Veillonellaceae | ↓ Oscillibacter | ||
↓ Ruminococcaceae | |||
↓ Porphyromonadaceae | |||
Clostridiales | ↓ Anaerosporobacter | ||
Wong et al[18], 2013 | HC, BMI = 22 kg/m2 | ↑ Succinivibronaceae | ↑ Parabacteriodes |
↑ Porphyromonadaceae | ↑ Allisonella | ||
NASH, BMI > 30 kg/m2 | ↓ Unclassified | ↓ Faecalibacterium | |
Jiang et al[62], 2015 | HC, BMI = 23 kg/m2 | ↑ Peptostreptococcaceae | ↑ Anaerobacter |
↓ Ruminococcaceae | ↑ Streptococcus | ||
NAFLD, BMI = 26 kg/m2 | ↑ Lactobacillus | ||
↑Escherichia | |||
↑ Clostridium XI | |||
↓ Oscillibacter | |||
↓ Odoribater | |||
↓ Alistipes | |||
↓ Flavonifractor | |||
Boursier et al[19], 2016 | HC, BMI > 30 kg/m2 | ↑ Bacteroidaceae | ↑ Bacteroides |
↓ Prevotellaceae | ↑ Ruminoccocus | ||
NASH, BMI > 30 kg/m2 | |||
↓Erysipelotrichaceae | ↓ Prevotella | ||
Mouzaki et al[67], 2016 | HC, BMI = 27 kg/m2 | ↓ Clostridium leptum | |
NASH, BMI > 30 kg/m2 | |||
Del Chierico et al[65], 2017 | 3HC, BMI = 18 kg/m2 | ↓ Rikenellaceae4 | ↑ Bradyrhizobium4 |
↑ Anaerococcus4 | |||
3Obese, BMI = 26 kg/m2 | ↑ Peptoniphilus4 | ||
↑ Propionibacterium acnes4 | |||
3NAFLD, BMI = 26 kg/m2 | |||
↑ Dorea4 | |||
3NASH, BMI = 27 kg/m2 | |||
↑ Ruminococcus4 | |||
↓ Oscillospira4 | |||
Nobili et al[68], | 3HC, BMI = 18 kg/m2 | ↑ Lactobacillus mucosae *12 | |
2018 | 3Obese, BMI = 26 kg/m2 | ||
3NAFLD, BMI = 26 kg/m2 | |||
3NASH, BMI = 27 kg/m2 | |||
Da Silva et al[63], 2018 | HC, BMI = 27 kg/m2 | ↓Bacteroidaceae | ↓ Alistipes |
↓ Lachnospiraceae | ↓ Anaerostipes | ||
NAFLD, BMI > 30 kg/m2 | ↓ Lactobacillaceae | ↓ Bacteroides | |
↓ Porphyromonadaceae | ↓Blautia | ||
↓ Rikenellaceae | ↓ Coprococcus | ||
↓ Dorea | |||
↓ Faecalibacterium | |||
↓ Lactobacillus | |||
↓Parabacteroides | |||
↓ Roseburia | |||
↓ Ruminococcus |
- Citation: Velázquez KT, Enos RT, Bader JE, Sougiannis AT, Carson MS, Chatzistamou I, Carson JA, Nagarkatti PS, Nagarkatti M, Murphy EA. Prolonged high-fat-diet feeding promotes non-alcoholic fatty liver disease and alters gut microbiota in mice. World J Hepatol 2019; 11(8): 619-637
- URL: https://www.wjgnet.com/1948-5182/full/v11/i8/619.htm
- DOI: https://dx.doi.org/10.4254/wjh.v11.i8.619