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Original Article
Exploring the link between celiac disease and obesity: a potential role of gut microbiome
Sunaina Addanki, Anastasia Mashukova, Arkene Levy
Received April 3, 2024  Accepted August 22, 2024  Published online November 8, 2024  
DOI: https://doi.org/10.5217/ir.2024.00049    [Epub ahead of print]
AbstractAbstract PDFPubReaderePub
Background/Aims
In today’s age, celiac disease (CD) is no longer solely characterized by chronic diarrhea in a malnourished child. Obesity is gradually being acknowledged as part of CD’s clinical course. Both conditions have been linked to alterations of gut microbiome. Given the difficulty of strict gluten-free diet adherence, there is a need for less restrictive adjunctive therapies. We aimed to investigate the prevalence of obesity in patients diagnosed with CD with the goal of developing new therapeutic approaches.
Methods
Baseline data from the National Institute of Health’s All of Us Research Program, was used to evaluate the relationship between CD and obesity. A retrospective cohort study was conducted where groups of individuals with CD and without CD were matched by age range and health surveys. Statistical analysis with odds ratios (OR) with 95% confidence intervals (CI) were reported.
Results
The prevalence of obesity was 32.6% in the CD group compared to 18.4% in the control group (OR, 2.111; 95% CI, 1.914–2.328; P< 0.0001). Women accounted for a greater population of patients with CD and obesity. The largest percentage of patients with CD and obesity were older than 65 years. The highest percentage of individuals in both the experimental and control groups were white, followed by African Americans.
Conclusions
Our data shows a significant association between CD and increased prevalence of obesity. These results warrant further investigation into microbial changes and dietary exposures that affect the pathogenesis of both diseases.

Citations

Citations to this article as recorded by  
  • Celiac Disease and Metabolic Diseases: A Review of Emerging Connections
    Deirdre Reidy, Christopher Cao, Alexandra Rosenstock, Melissa Stoffels, Sonal Kumar, Haley M. Zylberberg
    Current Treatment Options in Gastroenterology.2025;[Epub]     CrossRef
  • 1,310 View
  • 119 Download
  • 1 Crossref
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Reviews
IBD
The practice of fecal microbiota transplantation in inflammatory bowel disease
Umang Arora, Saurabh Kedia, Vineet Ahuja
Intest Res 2024;22(1):44-64.   Published online November 21, 2023
DOI: https://doi.org/10.5217/ir.2023.00085
AbstractAbstract PDFPubReaderePub
Current evidence posits a central role for gut microbiota and the metabolome in the pathogenesis and progression of inflammatory bowel disease (IBD). Fecal microbiota transplantation (FMT) has been established as a means to manipulate this microbiome safely and sustainably. Several aspects of the technical improvement including pretreatment with antibiotics, use of frozen stool samples as well as short donor-to-recipient time are proposed to improve its response rates. Its efficacy in ulcerative colitis has been proven in clinical trials while data is emerging for Crohn’s disease. This review describes briefly the biology behind FMT, the available evidence for its use in IBD, and the host, recipient and procedural factors which determine the clinical outcomes.

Citations

Citations to this article as recorded by  
  • Advances in Fecal Microbiota Transplantation for Gut Dysbiosis‐Related Diseases
    Shuna Hou, Jiachen Yu, Yongshuang Li, Duoyi Zhao, Zhiyu Zhang
    Advanced Science.2025;[Epub]     CrossRef
  • Gut Microbial Targets in Inflammatory Bowel Disease: Current Position and Future Developments
    Naveen Sivakumar, Ashwin Krishnamoorthy, Harshita Ryali, Ramesh P. Arasaradnam
    Biomedicines.2025; 13(3): 716.     CrossRef
  • Medical management of acute severe ulcerative colitis in the hospitalized patient
    Loren G Rabinowitz, Ajay Gade, Joseph D. Feuerstein
    Expert Review of Gastroenterology & Hepatology.2025; : 1.     CrossRef
  • Perception of fecal microbiota transplantation in patients with ulcerative colitis in Korea: a KASID multicenter study
    Jebyung Park, Sung Noh Hong, Hong Sub Lee, Jongbeom Shin, Eun Hye Oh, Kwangwoo Nam, Gyeol Seong, Hyun Gun Kim, Jin-Oh Kim, Seong Ran Jeon
    The Korean Journal of Internal Medicine.2024; 39(5): 783.     CrossRef
  • Microbiome-based therapeutics for Parkinson's disease
    Adam M. Hamilton, Ian N. Krout, Alexandria C. White, Timothy R. Sampson
    Neurotherapeutics.2024; 21(6): e00462.     CrossRef
  • 5,739 View
  • 342 Download
  • 5 Crossref
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Microbiota
Gut microbiome on immune checkpoint inhibitor therapy and consequent immune-related colitis: a review
Sung Wook Hwang, Min Kyu Kim, Mi-Na Kweon
Intest Res 2023;21(4):433-442.   Published online August 29, 2023
DOI: https://doi.org/10.5217/ir.2023.00019
AbstractAbstract PDFPubReaderePub
Immune checkpoint inhibitors have dramatically revolutionized the therapeutic landscape for patients with advanced malignancies. Recently, convincing evidence has shown meaningful influence of gut microbiome on human immune system. With the complex link between gut microbiome, host immunity and cancer, the variations in the gut microbiota may influence the efficacy of immune checkpoint inhibitors. Indeed, some bacterial species have been reported to be predictive for cancer outcome in patients treated with immune checkpoint inhibitors. Although immune checkpoint inhibitors are currently proven to be an effective anti-tumor treatment, they can induce a distinct form of toxicity, termed immune-related adverse events. Immune-related colitis is one of the common toxicities from immune checkpoint inhibitors, and it might preclude the cancer therapy in severe or refractory cases. The manipulation of gut microbiome by fecal microbiota transplantation or probiotics administration has been suggested as one of the methods to enhance anti-tumor effects and decrease the risk of immune-related colitis. Here we review the role of gut microbiome on immune checkpoint inhibitor therapy and consequent immune-related colitis to provide a new insight for better anti-cancer therapy.

Citations

Citations to this article as recorded by  
  • Incidence and risk factors of immune checkpoint inhibitor-induced colitis in Korean patients with cancer
    Tae Kyun Kim, Hyun Seok Lee, Eun Soo Kim
    The Korean Journal of Internal Medicine.2025; 40(1): 49.     CrossRef
  • Hidden Partner of Immunity: Microbiome as an Innovative Companion in Immunotherapy
    Pyoseung Kim, Sunggeun Joe, Heeyoung Kim, Hyejeong Jeong, Sunghwan Park, Jihwan Song, Wondong Kim, Yong Gu Lee
    International Journal of Molecular Sciences.2025; 26(2): 856.     CrossRef
  • Effect of Probiotics on Improving Intestinal Mucosal Permeability and Inflammation after Surgery
    Min-Jae Kim, Young Ju Lee, Zahid Hussain, Hyojin Park
    Gut and Liver.2025; 19(2): 207.     CrossRef
  • Date yogurt supplemented with Lactobacillus rhamnosus (ATCC 53103) encapsulated in wild sage (Salvia macrosiphon) mucilage and sodium alginate by extrusion: The survival and viability against the gastrointestinal condition, cold storage, heat, and salt wi
    Mahsa Abbasi Saadi, Seyed Saeed Sekhavatizadeh, Hassan Barzegar, Behrooz Alizadeh Behbahani, Mohammad Amin Mehrnia
    Food Science & Nutrition.2024; 12(10): 7630.     CrossRef
  • Toxicity in the era of immune checkpoint inhibitor therapy
    Synat Keam, Naimah Turner, Fernanda G. Kugeratski, Rene Rico, Jocelynn Colunga-Minutti, Rayansh Poojary, Sayan Alekseev, Anisha B. Patel, Yuanteng Jeff Li, Ajay Sheshadri, Monica E. Loghin, Karin Woodman, Ashley E. Aaroe, Sarah Hamidi, Priyanka Chandrasek
    Frontiers in Immunology.2024;[Epub]     CrossRef
  • Endoscopic findings of immune checkpoint inhibitor-related gastrointestinal adverse events
    Min Kyu Kim, Sung Wook Hwang
    Clinical Endoscopy.2024; 57(6): 725.     CrossRef
  • Causality between gut microbiota, immune cells, and breast cancer: Mendelian randomization analysis
    Rui Lv, Danyan Wang, Tengyue Wang, Rongqun Li, Aiwen Zhuang
    Medicine.2024; 103(49): e40815.     CrossRef
  • 4,915 View
  • 316 Download
  • 9 Web of Science
  • 7 Crossref
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Microbiota
The role of microbiome in colorectal carcinogenesis and its clinical potential as a target for cancer treatment
Sang Hoon Kim, Yun Jeong Lim
Intest Res 2022;20(1):31-42.   Published online May 21, 2021
DOI: https://doi.org/10.5217/ir.2021.00034
AbstractAbstract PDFPubReaderePub
The role of gut microbiome-intestinal immune complex in the development of colorectal cancer and its progression is well recognized. Accordingly, certain microbial strains tend to colonize or vanish in patients with colorectal cancer. Probiotics, prebiotics, and synbiotics are expected to exhibit both anti-tumor effects and chemopreventive effects during cancer treatment through mechanisms such as xenometabolism, immune interactions, and altered eco-community. Microbial modulation can also be safely used to prevent complications during peri-operational periods of colorectal surgery. A deeper understanding of the role of intestinal microbiota as a target for colorectal cancer treatment will lead the way to a better prognosis for colorectal cancer patients.

Citations

Citations to this article as recorded by  
  • Effect of Probiotics on Improving Intestinal Mucosal Permeability and Inflammation after Surgery
    Min-Jae Kim, Young Ju Lee, Zahid Hussain, Hyojin Park
    Gut and Liver.2025; 19(2): 207.     CrossRef
  • Omega-3 fatty acids and the gut microbiome: a new frontier in cardiovascular disease prevention
    Vikram Kumar, Alka Rohilla, Jayesh J. Ahire
    Discover Medicine.2025;[Epub]     CrossRef
  • Preliminary data on cytotoxicity and functional group assessment of a herb–mineral combination against colorectal carcinoma cell line
    Remya Jayakumar, Manoj Kumar Dash, Saumya Gulati, Akanksha Pandey, Surendra Kumar Trigun, Namrata Joshi
    Journal of Complementary and Integrative Medicine.2024; 21(1): 61.     CrossRef
  • Forces at play: exploring factors affecting the cancer metastasis
    Farooq Riaz, Jing Zhang, Fan Pan
    Frontiers in Immunology.2024;[Epub]     CrossRef
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    Aref Yarahmadi, Hamed Afkhami
    Frontiers in Oncology.2024;[Epub]     CrossRef
  • Insomnia and Gut Microbiota
    Nazime Mercan Doğan, Naime Nur Bozbeyoğlu Kart
    Journal of Turkish Sleep Medicine.2024; 11(1): 1.     CrossRef
  • Species-level identification of enterotype-specific microbial markers for colorectal cancer and adenoma
    Ünzile Güven Gülhan, Emrah Nikerel, Tunahan Çakır, Fatih Erdoğan Sevilgen, Saliha Durmuş
    Molecular Omics.2024; 20(6): 397.     CrossRef
  • Fermented African Locust Bean (Iru), a Potential Dietary Prebiotic and Probiotic
    Paulina Adeniyi
    International Journal of Nutrition and Food Sciences.2024; 13(3): 114.     CrossRef
  • Gut microbiota and epigenetic choreography: Implications for human health: A review
    Bailee Kim, Angel Song, Andrew Son, Yonghwan Shin
    Medicine.2024; 103(29): e39051.     CrossRef
  • Immunomodulation aspects of gut microbiome-related interventional strategies in colorectal cancer
    Makan Cheraghpour, Nayeralsadat Fatemi, Mahdi Shadnoush, Ghazaleh Talebi, Sascha Tierling, Luis G. Bermúdez-Humarán
    Medical Oncology.2024;[Epub]     CrossRef
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    Yefeng Wang, Jing Guo, Yu Fu, Yuying Li, Chongming Wu
    Diseases & Research.2024; 4(1): 14.     CrossRef
  • A New Combination of Bifidobacterium bifidum and Lactococcus lactis Strains with Synergistic Effects Alleviates Colitis-Associated Colorectal Cancer
    Jiacui Shang, Lijun Liu, Shuo Yang, Bofan Duan, Shuiqi Xie, Xiangchen Meng
    Foods.2024; 13(19): 3054.     CrossRef
  • THE PROTECTIVE ROLE OF INTESTINAL MICROBIOTA IN COLORECTAL CANCER TREATMENT: A SCOPING REVIEW
    Jéssica Rosa Thiesen Cunha, Elissandra Maria Faiz, Elizete Maria de Souza Bueno, Eliana Rosa da Fonseca, Thais Ortiz Hammes, Adriana Serdotte Freitas Cardoso, Leticia Becker Vieira, Isabel Cristina Echer
    Texto & Contexto - Enfermagem.2024;[Epub]     CrossRef
  • O PAPEL PROTETIVO DA MICROBIOTA INTESTINAL NO TRATAMENTO DO CÂNCER COLORRETAL: REVISÃO DE ESCOPO
    Jéssica Rosa Thiesen Cunha, Elissandra Maria Faiz, Elizete Maria de Souza Bueno, Eliana Rosa da Fonseca, Thais Ortiz Hammes, Adriana Serdotte Freitas Cardoso, Leticia Becker Vieira, Isabel Cristina Echer
    Texto & Contexto - Enfermagem.2024;[Epub]     CrossRef
  • Comment on " Positive fecal immunochemical test results are associated with non-colorectal cancer mortality"
    Yong Eun Park
    The Korean Journal of Internal Medicine.2023; 38(2): 264.     CrossRef
  • Olfactomedin 4 produces dysplasia but suppresses metastasis of colon cancer
    Hyun Woo Ma, Jung Min Kim, Da Hye Kim, I Seul Park, Ji Hyung Kim, Ki Cheong Park, Dong Hyuk Seo, Jae Hyeon Kim, Xiumei Che, Tae Il Kim, Jae Hee Cheon, Seung Won Kim
    Cancer Gene Therapy.2023; 30(5): 694.     CrossRef
  • Pterostilbene and Probiotic Complex in Chemoprevention of Putative Precursor Lesions for Colorectal Cancer in an Experimental Model of Intestinal Carcinogenesis with 1,2-Dimethylhydrazine
    Márcio Alencar Barreira, Márcio Wilker Soares Campelo, Conceição da Silva Martins Rebouças, Antoniella Souza Gomes Duarte, Maria Lucianny Lima Barbosa, Said Gonçalves da Cruz Fonseca, Raphaela Ribeiro Queiroz, Érica Uchoa Holanda, Ana Beatriz Aragão de Va
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    Christina Thoda, Maria Touraki
    Microorganisms.2023; 11(8): 1898.     CrossRef
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    Sang Hoon Kim, Dong Hwan Park, Yun Jeong Lim
    The Korean Journal of Gastroenterology.2023; 82(2): 73.     CrossRef
  • Gut Microbiome and Colorectal Cancer
    Tae-Geun Gweon
    The Korean Journal of Gastroenterology.2023; 82(2): 56.     CrossRef
  • Calcium, Vitamin D, and Colorectal Cancer
    Young-Jo Wi, Soo-Young Na
    The Korean Journal of Gastroenterology.2023; 82(2): 47.     CrossRef
  • Comments on Efficacy of a Synbiotic Containing Lactobacillus paracasei DKGF1 and Opuntia humifusa in Elderly Patients with Irritable Bowel Syndrome: A Randomized, Double-Blind, Placebo-Controlled Trial
    Kwang Woo Kim
    Gut and Liver.2023; 17(6): 954.     CrossRef
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    Yeuni Yu, Donghyun Han, Hyomin Kim, Yun Hak Kim, Dongjun Lee
    Journal of Genetic Medicine.2023; 20(2): 52.     CrossRef
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    Yongbo Kang, Xing Kang, Yue Cai
    Clinics and Research in Hepatology and Gastroenterology.2022; 46(1): 101834.     CrossRef
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    Anna Zawistowska-Rojek, Stefan Tyski
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    Na Yuan, Xiaoyan Li, Meng Wang, Zhilin Zhang, Lu Qiao, Yamei Gao, Xinjian Xu, Jie Zhi, Yang Li, Zhongxin Li, Yitao Jia
    Gut and Liver.2022; 16(4): 575.     CrossRef
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    Namjoo Kim, Jeong-An Gim, Beom Jae Lee, Byung il Choi, Hee Sook Yoon, Seung Han Kim, Moon Kyung Joo, Jong-Jae Park, Chungyeul Kim
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    Jie Zhang, Kanghui Wu, Cuicui Shi, Guangming Li
    Current Treatment Options in Oncology.2022; 23(12): 1777.     CrossRef
  • The microbiome of diverticulitis
    Nimalan Arjun Jeganathan, Emily R Davenport, Gregory S Yochum, Walter A Koltun
    Current Opinion in Physiology.2021; 22: 100452.     CrossRef
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    Yawen Zong, Yujie Zhou, Binyou Liao, Min Liao, Yangyang Shi, Yu Wei, Yuyao Huang, Xuedong Zhou, Lei Cheng, Biao Ren
    Frontiers in Cellular and Infection Microbiology.2021;[Epub]     CrossRef
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    Jihye Park, Da Hye Kim, Soochan Kim, Hyun Woo Ma, I Seul Park, Mijeong Son, Ji Hyung Kim, Yoojin Shin, Seung Won Kim, Jae Hee Cheon
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  • Microbial-Driven Immunological Memory and Its Potential Role in Microbiome Editing for the Prevention of Colorectal Cancer
    Laure Campillo-Gimenez, David Rios-Covian, Jesus Rivera-Nieves, Hiroshi Kiyono, Hiutung Chu, Peter B. Ernst
    Frontiers in Cellular and Infection Microbiology.2021;[Epub]     CrossRef
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  • 468 Download
  • 29 Web of Science
  • 32 Crossref
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Original Article
Miscellaneous
Melatonin in the colon modulates intestinal microbiota in response to stress and sleep deprivation
Young Sook Park, Soo Hyung Kim, Jong Won Park, Younglim Kho, Pu Rum Seok, Jae-Ho Shin, Yoon Ji Choi, Jin-Hyun Jun, Hee Chan Jung, Eun Kyung Kim
Intest Res 2020;18(3):325-336.   Published online June 23, 2020
DOI: https://doi.org/10.5217/ir.2019.00093
AbstractAbstract PDFPubReaderePub
Background/Aims
Stress is closely related to the deterioration of digestive disease. Melatonin has potent anti-inflammatory properties. The objective of this study was to determine the effect of water stress (WS) and sleep deprivation (SD) on intestinal microbiota and roles of melatonin in stressful condition.
Methods
We used C57BL/6 mice and specially designed water bath for stress and SD for 10 days. We measured melatonin concentrations in serum, feces, and colon tissues by high-performance liquid chromatography. Genomic DNA was extracted from feces and amplified using primers targeting V3 to V4 regions of bacterial 16S ribosomal RNA genes.
Results
Compared to the control, melatonin concentration was lower in the WS and SD. Fecal concentration was 0.132 pg/mL in control, 0.062 pg/mL in WS, and 0.068 pg/mL in SD. In colon tissue, it was 0.45 pg/mL in control, 0.007 pg/mL in WS, and 0.03 pg/mL in SD. After melatonin treatment, melatonin concentrations in feces and colon tissue were recovered to the level of control. Metagenomic analysis of microbiota showed abundance in colitogenic microbiota in WS and SD. Melatonin injection attenuated this harmful effect. WS and SD showed decreased Lactobacillales and increased Erysipelotrichales and Enterobacteriales. Melatonin treatment increased Akkermansia muciniphila and Lactobacillus and decreased Bacteroides massiliensis and Erysipelotrichaceae.
Conclusions
This study showed that stress and SD could affect intestinal dysbiosis and increase colitogenic microbiota, which could contribute to the aggravating digestive disease. Melatonin concentrations in feces and colon tissue decreased under WS and SD. Melatonin treatment brought recovery of melatonin concentration in colon tissue and modulating dysbiosis of intestinal microbiota.

Citations

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  • Advances in molecular mechanisms and therapeutic strategies for central nervous system diseases based on gut microbiota imbalance
    Wei Tao, Yanren Zhang, Bingbin Wang, Saiqun Nie, Li Fang, Jian Xiao, Yanqing Wu
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Focused Review
Microbiota
Importance of nutritional therapy in the management of intestinal diseases: beyond energy and nutrient supply
Seong-Eun Kim
Intest Res 2019;17(4):443-454.   Published online September 4, 2019
DOI: https://doi.org/10.5217/ir.2019.00075
AbstractAbstract PDFPubReaderePub
The gut is an immune-microbiome-epithelial complex. Gut microbiome-host interactions have widespread biological implications, and the role of this complex system extends beyond the digestion of food and nutrient absorption. Dietary nutrients can affect this complex and play a key role in determining gut homeostasis to maintain host health. In this article, we review various dietary nutrients and their contribution to the pathogenesis and treatment of various intestinal diseases including inflammatory bowel disease, irritable bowel syndrome, colorectal cancer, and diverticulitis, among other such disorders. A better understanding of diet-host-gut microbiome interactions is essential to provide beneficial nutrients for gut health and to limit nutritional hazards to ensure successful nutritional management of gastrointestinal conditions in clinical practice.

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Original Article
Functional bowel disorders
Is stool frequency associated with the richness and community composition of gut microbiota?
Hye Jung Kwon, Jong Hyun Lim, Dongmin Kang, Sanghyun Lim, Seun Ja Park, Jae Hyun Kim
Intest Res 2019;17(3):419-426.   Published online February 7, 2019
DOI: https://doi.org/10.5217/ir.2018.00149
AbstractAbstract PDFSupplementary MaterialPubReaderePub
Background/Aims
Recently, a number of studies have reported that the gut microbiota could contribute to human conditions, including obesity, inflammation, cancer development, and behavior. We hypothesized that the composition and distribution of gut microbiota are different according to stool frequency, and attempted to identify the association between gut microbiota and stool frequency.
Methods
We collected fecal samples from healthy individuals divided into 3 groups according to stool frequency: group 1, a small number of defecation (≤2 times/wk); group 2, normal defecation (1 time/day or 1 time/2 day); and group 3, a large number of defecation (≥2–3 times/day). We evaluated the composition and distribution of the gut microbiota in each group via 16S rRNA-based taxonomic profiling of the fecal samples.
Results
Fecal samples were collected from a total of 60 individuals (31 men and 29 women, aged 34.1±5.88 years), and each group comprised 20 individuals. The microbial richness of group 1 was significantly higher than that of group 3 and tended to decrease with increasing number of defecation (P<0.05). The biological community composition was fairly different according to the number of defecation, and Bacteroidetes to Firmicutes ratio was higher in group 1 than in the other groups. Moreover, we found specific strains at the family and genus levels in groups 1 and 3.
Conclusions
Bacteroidetes to Firmicutes ratio and the abundance of Bifidobacterium were different according to the stool frequency, and specific bacteria were identified in the subjects with large and small numbers of defecation, respectively. These findings suggest that stool frequency might be associated with the richness and community composition of the gut microbiota.

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Review
Pathogenic role of the gut microbiota in gastrointestinal diseases
Hiroko Nagao-Kitamoto, Sho Kitamoto, Peter Kuffa, Nobuhiko Kamada
Intest Res 2016;14(2):127-138.   Published online April 27, 2016
DOI: https://doi.org/10.5217/ir.2016.14.2.127
AbstractAbstract PDFPubReaderePub

The gastrointestinal (GI) tract is colonized by a dense community of commensal microorganisms referred to as the gut microbiota. The gut microbiota and the host have co-evolved, and they engage in a myriad of immunogenic and metabolic interactions. The gut microbiota contributes to the maintenance of host health. However, when healthy microbial structure is perturbed, a condition termed dysbiosis, the altered gut microbiota can trigger the development of various GI diseases including inflammatory bowel disease, colon cancer, celiac disease, and irritable bowel syndrome. There is a growing body of evidence suggesting that multiple intrinsic and extrinsic factors, such as genetic variations, diet, stress, and medication, can dramatically affect the balance of the gut microbiota. Therefore, these factors regulate the development and progression of GI diseases by inducing dysbiosis. Herein, we will review the recent advances in the field, focusing on the mechanisms through which intrinsic and extrinsic factors induce dysbiosis and the role a dysbiotic microbiota plays in the pathogenesis of GI diseases.

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    Yi Zhou, Xueqin Ni, Ling Duan, Lili Niu, Qian Liu, Yan Zeng, Qiang Wang, Jie Wang, Abdul Khalique, Kangcheng Pan, Bo Jing, Dong Zeng
    Probiotics and Antimicrobial Proteins.2021; 13(3): 664.     CrossRef
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    Immunobiology.2021; 226(1): 152028.     CrossRef
  • Are silver nanoparticles better than triclosan as a daily antimicrobial? Answers from the perspectives of gut microbiome disruption and pathogenicity
    Mingzhu Li, Chengdong Zhang
    Science of The Total Environment.2021; 756: 143983.     CrossRef
  • (Mögliche) Rolle des Mikrobioms in der Diagnostik, Therapie und Genese des Kolonkarzinoms
    Christian Schulz, Alexander Neuner, Christoph A. Jacobi
    Der Onkologe.2021; 27(3): 195.     CrossRef
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    Elena Fekete, Thibault Allain, Affan Siddiq, Olivia Sosnowski, Andre G. Buret
    Frontiers in Microbiology.2021;[Epub]     CrossRef
  • Astragalin Inhibits Nuclear Factor-κB Signaling in Human Colonic Epithelial Cells and Attenuates Experimental Colitis in Mice
    Yoo Min Han, Jaemoon Koh, Jee Hyun Kim, Jooyoung Lee, Jong Pil Im, Joo Sung Kim
    Gut and Liver.2021; 15(1): 100.     CrossRef
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    Toumi Ryma, Arezki Samer, Imene Soufli, Hayet Rafa, Chafia Touil-Boukoffa
    Gastroenterology Insights.2021; 12(1): 56.     CrossRef
  • Health risk assessment based on metal analysis of soil and crops in Al-Dakhla Oasis
    Hosam M. Saleh, Hazem H. Mahmoud, Mona I. Abdou, Samir B. Eskander
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    Yiming Yin, Mengge Wang, Wenjie Gu, Lili Chen
    Biochemical Pharmacology.2021; 186: 114430.     CrossRef
  • The microbiota is dispensable for the early stages of peripheral regulatory T cell induction within mesenteric lymph nodes
    Carolin Wiechers, Mangge Zou, Eric Galvez, Michael Beckstette, Maria Ebel, Till Strowig, Jochen Huehn, Joern Pezoldt
    Cellular & Molecular Immunology.2021; 18(5): 1211.     CrossRef
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    Hui-Fang Chiu, Kamesh Venkatakrishnan, Oksana Golovinskaia, Chin-Kun Wang
    Molecules.2021; 26(7): 2090.     CrossRef
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    Jinyuan Wu, Min Liu, Mengqing Zhou, Lin Wu, Hui Yang, Lusheng Huang, Congying Chen
    BMC Microbiology.2021;[Epub]     CrossRef
  • Impact of the Gut Microbiota Balance on the Health–Disease Relationship: The Importance of Consuming Probiotics and Prebiotics
    Laura-Berenice Olvera-Rosales, Alma-Elizabeth Cruz-Guerrero, Esther Ramírez-Moreno, Aurora Quintero-Lira, Elizabeth Contreras-López, Judith Jaimez-Ordaz, Araceli Castañeda-Ovando, Javier Añorve-Morga, Zuli-Guadalupe Calderón-Ramos, José Arias-Rico, Luis-G
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  • Septic arthritis caused by Desulfovibrio desulfuricans: A case report and review of the literature
    Timothy J. Marquis, Vincent J. Williams, David B. Banach
    Anaerobe.2021; : 102407.     CrossRef
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    G. R. Bicbavova, M. A. Livzan, M. Yu. Lozinskaya
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    Jae Hyun Kim, Youn Jung Choi, Hye Jung Kwon, Kyoungwon Jung, Sung Eun Kim, Won Moon, Moo In Park, Seun Ja Park
    Intestinal Research.2021; 19(3): 341.     CrossRef
  • Gut Microbiota Community Shift with Severity of Coronary Artery Disease
    Jia-Lu Hu, Zhi-Feng Yao, Min-Na Tang, Chun Tang, Xiao-Fan Zhao, Xi Su, Dan-Bo Lu, Qiu-Rong Li, Zhang-Sheng Wang, Yan Yan, Zeneng Wang
    Engineering.2021; 7(12): 1715.     CrossRef
  • Additional Candida albicans administration enhances the severity of dextran sulfate solution induced colitis mouse model through leaky gut-enhanced systemic inflammation and gut-dysbiosis but attenuated by Lactobacillus rhamnosus L34
    Wimonrat Panpetch, Pratsanee Hiengrach, Sumanee Nilgate, Somying Tumwasorn, Naraporn Somboonna, Alisa Wilantho, Piraya Chatthanathon, Piyapan Prueksapanich, Asada Leelahavanichkul
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    Frontiers in Immunology.2020;[Epub]     CrossRef
  • Adhesion and anti-inflammatory potential ofLactobacillus rhamnosusGG in a sea buckthorn based beverage matrix
    Srijita Sireswar, Sutapa Biswas, Gargi Dey
    Food & Function.2020; 11(3): 2555.     CrossRef
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    Vanessa D’Antongiovanni, Carolina Pellegrini, Matteo Fornai, Rocchina Colucci, Corrado Blandizzi, Luca Antonioli, Nunzia Bernardini
    World Journal of Gastroenterology.2020; 26(14): 1564.     CrossRef
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  • The relationship between the commensal microbiota levels and Crohn's disease activity
    Hagamenon de Alencar Junior, Ana Paula Ribeiro Paiotti, Humberto Bezerra de Araújo Filho, Celina Tizuko Fujiyama Oshima, Sender Jankiel Miszputen, Orlando Ambrogini‐Júnior
    JGH Open.2020; 4(5): 784.     CrossRef
  • Gut microbiota health closely associates with PCB153-derived risk of host diseases
    Lingli Min, Yulang Chi, Sijun Dong
    Ecotoxicology and Environmental Safety.2020; 203: 111041.     CrossRef
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    Qing Tong, Li-Yong Cui, Xiao-Peng Du, Zong-Fu Hu, Jia Bie, Jian-Hua Xiao, Hong-Bin Wang, Jian-Tao Zhang
    Frontiers in Microbiology.2020;[Epub]     CrossRef
  • Intestinal microbiocenosis in patients with recurrent Clostridium difficile infection, ulcerative colitis and irritable bowel syndrome after transplantation of fecal microflora
    E. V. Shrainer, A. I. Khavkin, V. V. Vlasov
    Experimental and Clinical Gastroenterology.2020; (7): 69.     CrossRef
  • Detection of Streptococcus gallolyticus in colorectal cancer and inflammatory bowel disease patients compared to control group in southwest of Iran
    Ahmad Farajzadeh Sheikh, Abdol Rahim Masjedi Zadeh, Morteza Saki, Parisa Khani, Seyed Jalal Hashemi, Sam Shahin Zadeh, Maryam Dastoorpoor
    Molecular Biology Reports.2020; 47(11): 8361.     CrossRef
  • An analysis of gut dysbiosis in obesity, diabetes, and chronic gut conditions
    Ahmed Haleem, Sama Anvari, Aisha Nazli, Mohamed Sager, Mahmood Akhtar
    Ibnosina Journal of Medicine and Biomedical Sciences.2020; 12(04): 264.     CrossRef
  • Dual and mutual interaction between microbiota and viral infections: a possible treat for COVID-19
    Taha Baghbani, Hossein Nikzad, Javid Azadbakht, Fatemeh Izadpanah, Hamed Haddad Kashani
    Microbial Cell Factories.2020;[Epub]     CrossRef
  • Fecal Microbiota of Toxigenic Clostridioides difficile-Associated Diarrhea
    Marta Hernández, Mónica de Frutos, David Rodríguez-Lázaro, Luis López-Urrutia, Narciso M. Quijada, Jose María Eiros
    Frontiers in Microbiology.2019;[Epub]     CrossRef
  • Hsp60 as a Novel Target in IBD Management: A Prospect
    Francesco Cappello, Margherita Mazzola, Abdo Jurjus, Marie-Noel Zeenny, Rosalyn Jurjus, Francesco Carini, Angelo Leone, Giuseppe Bonaventura, Giovanni Tomasello, Fabio Bucchieri, Everly Conway de Macario, Alberto J. L. Macario
    Frontiers in Pharmacology.2019;[Epub]     CrossRef
  • Intestinibaculum porci gen. nov., sp. nov., a new member of the family Erysipelotrichaceae isolated from the small intestine of a swine
    Ji-Sun Kim, Hanna Choe, Yu-Ri Lee, Kyung Mo Kim, Doo-Sang Park
    Journal of Microbiology.2019; 57(5): 381.     CrossRef
  • Risk of Anxiety and Depression in Patients with Inflammatory Bowel Disease: A Nationwide, Population-Based Study
    Kookhwan Choi, Jaeyoung Chun, Kyungdo Han, Seona Park, Hosim Soh, Jihye Kim, Jooyoung Lee, Hyun Lee, Jong Im, Joo Kim
    Journal of Clinical Medicine.2019; 8(5): 654.     CrossRef
  • Novel Selective Estrogen Receptor Modulator Ameliorates Murine Colitis
    Lauri Polari, Santeri Anttila, Terhi Helenius, Anu Wiklund, Tero Linnanen, Diana M. Toivola, Jorma Määttä
    International Journal of Molecular Sciences.2019; 20(12): 3007.     CrossRef
  • Microbiome, Autoimmune Diseases and HIV Infection: Friends or Foes?
    Chiara Pellicano, Giorgia Leodori, Giuseppe Pietro Innocenti, Antonietta Gigante, Edoardo Rosato
    Nutrients.2019; 11(11): 2629.     CrossRef
  • Impact of microbiota in colorectal carcinogenesis: lessons from experimental models
    Linda Chia-Hui Yu, Shu-Chen Wei, Yen-Hsuan Ni
    Intestinal Research.2018; 16(3): 346.     CrossRef
  • Partial to complete abrogation of the subepithelial macrophage barrier against the gut microbiota in patients with ulcerative colitis and Crohn's colitis
    Carlos A Rubio, Cord Langner, Peter T Schmidt
    Histopathology.2018; 72(4): 580.     CrossRef
  • Aspects of Gut Microbiota and Immune System Interactions in Infectious Diseases, Immunopathology, and Cancer
    Veronica Lazar, Lia-Mara Ditu, Gratiela Gradisteanu Pircalabioru, Irina Gheorghe, Carmen Curutiu, Alina Maria Holban, Ariana Picu, Laura Petcu, Mariana Carmen Chifiriuc
    Frontiers in Immunology.2018;[Epub]     CrossRef
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    Marco Gobbetti, Erica Pontonio, Pasquale Filannino, Carlo Giuseppe Rizzello, Maria De Angelis, Raffaella Di Cagno
    Food Research International.2018; 110: 22.     CrossRef
  • Irritable Bowel-like Symptoms in Ulcerative Colitis are as Common in Patients in Deep Remission as in Inflammation: Results From a Population-based Study [the IBSEN Study]
    Magne Henriksen, Marte Lie Høivik, Lars-Petter Jelsness-Jørgensen, Bjørn Moum
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  • Trace Element and Heavy Metal Levels in Colorectal Cancer: Comparison Between Cancerous and Non-cancerous Tissues
    Masoudreza Sohrabi, Ali Gholami, MohammadHossein Hosseini Azar, Mohammad Yaghoobi, Maryamosadat Mirasgari Shahi, Solmaz Shirmardi, Mehdi Nikkhah, Zahra Kohi, Delaram Salehpour, Mahmood Reza Khoonsari, Gholamrez Hemmasi, Farhad Zamani, Mahmoudreza Sohrabi,
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  • Endoscopic Transplantation of Mesenchymal Stem Cell Sheets in Experimental Colitis in Rats
    Sehyung Pak, Sung Wook Hwang, In Kyong Shim, Sang Mun Bae, Yeon- Mi Ryu, Han-Byul Kim, Eun-ju Do, Hye-Nam Son, Eun-ji Choi, Sun-ha Park, Sang-Yeob Kim, Sang Hyoung Park, Byong Duk Ye, Suk-Kyun Yang, Nobuo Kanai, Masanori Maeda, Teruo Okano, Dong-Hoon Yang
    Scientific Reports.2018;[Epub]     CrossRef
  • Advances in Probiotic Regulation of Bone and Mineral Metabolism
    Laura R. McCabe, Narayanan Parameswaran
    Calcified Tissue International.2018; 102(4): 480.     CrossRef
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    Giorgia Mori, Simone Rampelli, Beatrice Silvia Orena, Claudia Rengucci, Giulia De Maio, Giulia Barbieri, Alessandro Passardi, Andrea Casadei Gardini, Giovanni Luca Frassineti, Stefano Gaiarsa, Alessandra M. Albertini, Guglielmina Nadia Ranzani, Daniele Ca
    Scientific Reports.2018;[Epub]     CrossRef
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    Mohammed Faruk, Sani Ibrahim, Ahmed Adamu, Abdulmumini Hassan Rafindadi, Yahaya Ukwenya, Yawale Iliyasu, Abdullahi Adamu, Surajo Mohammed Aminu, Mohammed Sani Shehu, Danladi Amodu Ameh, Abdullahi Mohammed, Saad Aliyu Ahmed, John Idoko, Atara Ntekim, Aisha
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  • Disparate effects of antibiotics on hypertension
    S. Galla, S. Chakraborty, X. Cheng, J. Yeo, B. Mell, H. Zhang, A. V. Mathew, M. Vijay-Kumar, B. Joe
    Physiological Genomics.2018; 50(10): 837.     CrossRef
  • The Multifactorial Etiopathogeneses Interplay of Inflammatory Bowel Disease: An Overview
    Amosy E. M’Koma
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  • Seven days triple therapy for eradication of Helicobacter pylori does not alter the disease activity of patients with inflammatory bowel disease
    Shinichiro Shinzaki, Toshimitsu Fujii, Shigeki Bamba, Maiko Ogawa, Taku Kobayashi, Masahide Oshita, Hiroki Tanaka, Keiji Ozeki, Sakuma Takahashi, Hiroki Kitamoto, Kazuhito Kani, Sohachi Nanjo, Takeshi Sugaya, Yuko Sakakibara, Toshihiro Inokuchi, Kazuki Ka
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  • Microbiome, gut dysbiosis and inflammatory bowel disease: That moment when the function is more important than taxonomy
    S. I. Sitkin, T. Ya. Vakhitov, E. V. Demyanova
    Almanac of Clinical Medicine.2018; 46(5): 396.     CrossRef
  • Association of Perianal Fistulas with Clinical Features and Prognosis of Crohn's Disease in Korea: Results from the CONNECT Study
    Jaeyoung Chun, Jong Pil Im, Ji Won Kim, Kook Lae Lee, Chang Hwan Choi, Hyunsoo Kim, Jae Hee Cheon, Byong Duk Ye, Young-Ho Kim, You Sun Kim, Yoon Tae Jeen, Dong Soo Han, Won Ho Kim, Joo Sung Kim
    Gut and Liver.2018; 12(5): 544.     CrossRef
  • Single fecal microbiota transplantation failed to change intestinal microbiota and had limited effectiveness against ulcerative colitis in Japanese patients
    Shinta Mizuno, Kosaku Nanki, Katsuyoshi Matsuoka, Keiichiro Saigusa, Keiko Ono, Mari Arai, Shinya Sugimoto, Hiroki Kiyohara, Moeko Nakashima, Kozue Takeshita, Makoto Naganuma, Wataru Suda, Masahira Hattori, Takanori Kanai
    Intestinal Research.2017; 15(1): 68.     CrossRef
  • Small Intestinal Bacterial Overgrowth and Other Intestinal Disorders
    Uday C. Ghoshal, Ujjala Ghoshal
    Gastroenterology Clinics of North America.2017; 46(1): 103.     CrossRef
  • Ursodeoxycholic Acid and Its Taurine- or Glycine-Conjugated Species Reduce Colitogenic Dysbiosis and Equally Suppress Experimental Colitis in Mice
    Lien Van den Bossche, Pieter Hindryckx, Lindsey Devisscher, Sarah Devriese, Sophie Van Welden, Tom Holvoet, Ramiro Vilchez-Vargas, Marius Vital, Dietmar H. Pieper, Julie Vanden Bussche, Lynn Vanhaecke, Tom Van de Wiele, Martine De Vos, Debby Laukens, Chri
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  • Host-microbial Cross-talk in Inflammatory Bowel Disease
    Hiroko Nagao-Kitamoto, Nobuhiko Kamada
    Immune Network.2017; 17(1): 1.     CrossRef
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    Gretchen Irwin, Laura Mayans, Rick Kellerman
    Primary Care: Clinics in Office Practice.2017; 44(4): 733.     CrossRef
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    Ruggiero Francavilla, Maria De Angelis, Carlo Giuseppe Rizzello, Noemi Cavallo, Fabio Dal Bello, Marco Gobbetti, Johanna Björkroth
    Applied and Environmental Microbiology.2017;[Epub]     CrossRef
  • Stress and sleep quality in doctors working on-call shifts are associated with functional gastrointestinal disorders
    Soo-Kyung Lim, Seung Jin Yoo, Dae Lim Koo, Chae A Park, Han Jun Ryu, Yong Jin Jung, Ji Bong Jeong, Byeong Gwan Kim, Kook Lae Lee, Seong-Joon Koh
    World Journal of Gastroenterology.2017; 23(18): 3330.     CrossRef
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    Sarah Galla, Saroj Chakraborty, Blair Mell, Matam Vijay-Kumar, Bina Joe
    Physiology.2017; 32(3): 224.     CrossRef
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    Takeo Moriya, Yoshinori Satomi, Shumpei Murata, Hiroshi Sawada, Hiroyuki Kobayashi
    Metabolomics.2017;[Epub]     CrossRef
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    S.Y. Lam, J. Yu, S.H. Wong, M.P. Peppelenbosch, G.M. Fuhler
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    Inés Mármol, Cristina Sánchez-de-Diego, Alberto Pradilla Dieste, Elena Cerrada, María Rodriguez Yoldi
    International Journal of Molecular Sciences.2017; 18(1): 197.     CrossRef
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    Duk Hwan Kim, Jae Hee Cheon
    Immune Network.2017; 17(1): 25.     CrossRef
  • Duodenal endoluminal barrier sleeve alters gut microbiota of ZDF rats
    T Kim, C L Holleman, T Ptacek, C D Morrow, K M Habegger
    International Journal of Obesity.2017; 41(3): 381.     CrossRef
  • NF-kappa B activation correlates with disease phenotype in Crohn’s disease
    Yoo Min Han, Jaemoon Koh, Ji Won Kim, Changhyun Lee, Seong-Joon Koh, ByeongGwan Kim, Kook Lae Lee, Jong Pil Im, Joo Sung Kim, Gernot Sellge
    PLOS ONE.2017; 12(7): e0182071.     CrossRef
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    Wing Fei Wong, Marina Santiago
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    Anamaria Girbovan, Genel Sur, Gabriel Samasca, Iulia Lupan
    Medical Microbiology and Immunology.2017; 206(2): 83.     CrossRef
  • Nanosized Drug Delivery Systems in Gastrointestinal Targeting: Interactions with Microbiota
    Michail Karavolos, Alina Holban
    Pharmaceuticals.2016; 9(4): 62.     CrossRef
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