期刊文献+

Visceral hypersensitive rats share common dysbiosis features with irritable bowel syndrome patients 被引量:10

Visceral hypersensitive rats share common dysbiosis features with irritable bowel syndrome patients
下载PDF
导出
摘要 AIM: To evaluate gut microbial dysbiosis in two visceral hypersensitive models in comparison with irritable bowel syndrome(IBS) patients and to explore the extent to which these models capture the dysbiosis of IBS patients. METHODS: Visceral hypersensitivity was developed using the maternal separation(MS) rat model and post-inflammatory rat model. The visceral sensitivity of the model groups and control group was evaluated using the abdominal withdraw reflex score and electromyography in response to graded colorectal distention. The 16 S ribosomal RNA gene from fecal samples was pyrosequenced and analyzed. The correlation between dysbiosis in the microbiota and visceral hypersensitivity was calculated. Positive findings were compared to sequencing data from a published human IBS cohort.RESULTS: Dysbiosis triggered by neonatal maternal separation was lasting but not static. Both MS and postinflammatory rat fecal microbiota deviated from that of the control rats to an extent that was larger than the co-housing effect. Two short chain fatty acid producing genera, Fusobacterium and Clostridium XI, were shared by the human IBS cohort and by the maternal separation rats and post-inflammatory rats, respectively, to different extents. Fusobacterium was significantly increased in the MS group, and its abundance positively correlated with the degree of visceral hypersensitivity. Porphyromonadaceae was a protective biomarker for both the rat control group and healthy human controls. CONCLUSION: The dysbiosis MS rat model and the post-inflammatory rat model captured some of the dysbiosis features of IBS patients. Fusobacterium, Clostridium XI and Porphyromonadaceae were identified as targets for future mechanistic research. AIM: To evaluate gut microbial dysbiosis in two visceral hypersensitive models in comparison with irritable bowel syndrome (IBS) patients and to explore the extent to which these models capture the dysbiosis of IBS patients. METHODS: Visceral hypersensitivity was developed using the maternal separation (MS) rat model and post-inflammatory rat model. The visceral sensitivity of the model groups and control group was evaluated using the abdominal withdraw reflex score and electromyography in response to graded colorectal distention. The 16S ribosomal RNA gene from fecal samples was pyrosequenced and analyzed. The correlation between dysbiosis in the microbiota and visceral hypersensitivity was calculated. Positive findings were compared to sequencing data from a published human IBS cohort. RESULTS: Dysbiosis triggered by neonatal maternal separation was lasting but not static. Both MS and post-inflammatory rat fecal microbiota deviated from that of the control rats to an extent that was larger than the co-housing effect. Two short chain fatty acid producing genera, Fusobacterium and Clostridium XI, were shared by the human IBS cohort and by the maternal separation rats and post-inflammatory rats, respectively, to different extents. Fusobacterium was significantly increased in the MS group, and its abundance positively correlated with the degree of visceral hypersensitivity. Porphyromonadaceae was a protective biomarker for both the rat control group and healthy human controls. CONCLUSION: The dysbiosis MS rat model and the post-inflammatory rat model captured some of the dysbiosis features of IBS patients. Fusobacterium, Clostridium XI and Porphyromonadaceae were identified as targets for future mechanistic research.
出处 《World Journal of Gastroenterology》 SCIE CAS 2016年第22期5211-5227,共17页 世界胃肠病学杂志(英文版)
基金 Supported by National Natural Science Foundation of China,No.81330012 and No.81170352
关键词 Animal model IRRITABLE bowel syndrome MICROBIOTA PYROSEQUENCING 16S rRNA gene Animal model Irritable bowel syndrome Microbiota Pyrosequencing 16S rRNA gene
  • 相关文献

参考文献38

  • 1Halmos EP,Christophersen CT,Bird AR,Shepherd SJ,Gibson PR,Muir JG.Diets that differ in their FODMAP content alter the colonic luminal microenvironment. Gut . 2015
  • 2Xu D,Wu X,Grabauskas G,et al.Butyrate-induced colonic hypersensitivity is mediated by mitogen-activated protein kinase activation in rat dorsal root ganglia. Gut . 2013
  • 3JALANKA-TUOVINEN J,SALOJ RVI J,SALONEN A,et al.Faecal microbiota composition and host-microbe crosstalk following gastroenteritis and in postinfectious irritable bowel syndrome. Gut . 2013
  • 4Simrén M,Barbara G,Flint HJ,Spiegel BM,Spiller RC,Vanner S,Verdu EF,Whorwell PJ,Zoetendal EG.Intestinal microbiota in functional bowel disorders:a Rome foundation report. Gut . 2013
  • 5Magge S,Lembo A.Low-FODMAP diet for treatment of irritable bowel syndrome. Gastroenterology and Hepatology . 2012
  • 6Qin J,Li R,Raes J,Arumugam M,Burgdorf KS,Manichanh C,Nielsen T,Pons N,Levenez F,Yamada T,Mende DR,Li J,Xu J,Li S,Li D,Cao J,Wang B,Liang H,Zheng H,Xie Y,Tap J,Lepage P,Bertalan M,Batto JM,Hansen T,Le Paslier D,Linneberg A,Nielsen HB,Pelletier E,Renault P.A human gut microbial gene catalogue established by metagenomic sequencing. Nature . 2010
  • 7Valentina Taverniti,Simone Guglielmetti.Methodological issues in the study of intestinal microbiota in irritable bowel syndrome[J].World Journal of Gastroenterology,2014,20(27):8821-8836. 被引量:10
  • 8Emma Allen-Vercoe,Christian Jobin.??Fusobacterium and Enterobacteriaceae: Important players for CRC?(J)Immunology Letters . 2014 (2)
  • 9谭琰,邹开芳,钱伟,陈胜,侯晓华.Expression and Implication of Toll-like Receptors TLR2,TLR4 and TLR9 in Colonic Mucosa of Patients with Ulcerative Colitis[J].Journal of Huazhong University of Science and Technology(Medical Sciences),2014,34(5):785-790. 被引量:18
  • 10Rosa LS Soares.Irritable bowel syndrome:A clinical review[J].World Journal of Gastroenterology,2014,20(34):12144-12160. 被引量:16

二级参考文献109

共引文献82

同被引文献80

引证文献10

二级引证文献78

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部