Gender Influences Gut Microbiota among Patients with Irritable Bowel Syndrome
Abstract
:1. Introduction
2. Results
2.1. There Are Differences in the Gut Microbiota between Females and Males with IBS
2.2. The type of IBS Does Not Influence Microbiota Diversity
2.3. The Presence of Clostridiales, Mogibacteriaceae, Coriobacteriaceae, Synergistaceae, Shuttleworthia spp., and Blautia spp. Had No Effect on Abdominal Pain in Patients with IBS
3. Discussion
3.1. Differences Regarding Gender
3.2. The Gut Microbiota Did Not Influence on Abdominal Pain Complaining by Patients with IBS
4. Materials and Methods
4.1. Microbial DNA Extraction and 16S Amplicon Sequencing
4.2. Data Analysis
Sequencing Data Workflow
4.3. Statistical Analyzes
5. Conclusions
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
- NIH HMP Working Group; Peterson, J.; Garges, S.; Giovanni, M.; McInnes, P.; Wang, L.; Schloss, J.A.; Bonazzi, V.; McEwen, J.E.; Wetterstrand, K.A.; et al. The NIH Human Microbiome Project. Genome Res. 2009, 19, 2317–2323. [Google Scholar] [CrossRef] [Green Version]
- Kumari, R.; Yadav, Y.; Misra, R.; Das, U.; Das Adhikari, U.; Malakar, P.; Dubey, G.P. Emerging Frontiers of Antibiotics Use and Their Impacts on the Human Gut Microbiome. Microbiol. Res. 2022, 263, 127127. [Google Scholar] [CrossRef]
- Lazar, V.; Ditu, L.-M.; Pircalabioru, G.G.; Gheorghe, I.; Curutiu, C.; Holban, A.M.; Picu, A.; Petcu, L.; Chifiriuc, M.C. Aspects of Gut Microbiota and Immune System Interactions in Infectious Diseases, Immunopathology, and Cancer. Front. Immunol. 2018, 9, 1830. [Google Scholar] [CrossRef] [Green Version]
- Zuccaro, V.; Ponziani, F.R.; Bruno, R. Editorial of Special Issues “Gut Microbiota–Host Interactions: From Symbiosis to Dysbiosis 2.0”. Int. J. Mol. Sci. 2023, 24, 8977. [Google Scholar] [CrossRef]
- Herndon, C.C.; Wang, Y.-P.; Lu, C.-L. Targeting the Gut Microbiota for the Treatment of Irritable Bowel Syndrome. Kaohsiung J. Med. Sci. 2020, 36, 160–170. [Google Scholar] [CrossRef] [PubMed]
- Schmulson, M.J.; Drossman, D.A. What Is New in Rome IV. J. Neurogastroenterol. Motil. 2017, 23, 151–163. [Google Scholar] [CrossRef] [Green Version]
- Mazzawi, T.; El-Salhy, M. Effect of Diet and Individual Dietary Guidance on Gastrointestinal Endocrine Cells in Patients with Irritable Bowel Syndrome (Review). Int. J. Mol. Med. 2017, 40, 943–952. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Ghoshal, U.C.; Ghoshal, U. Small Intestinal Bacterial Overgrowth and Other Intestinal Disorders. Gastroenterol. Clin. North Am. 2017, 46, 103–120. [Google Scholar] [CrossRef] [PubMed]
- Tap, J.; Derrien, M.; Törnblom, H.; Brazeilles, R.; Cools-Portier, S.; Doré, J.; Störsrud, S.; Le Nevé, B.; Öhman, L.; Simrén, M. Identification of an Intestinal Microbiota Signature Associated with Severity of Irritable Bowel Syndrome. Gastroenterology 2017, 152, 111–123.e8. [Google Scholar] [CrossRef] [Green Version]
- Ringel-Kulka, T.; Benson, A.K.; Carroll, I.M.; Kim, J.; Legge, R.M.; Ringel, Y. Molecular Characterization of the Intestinal Microbiota in Patients with and without Abdominal Bloating. Am. J. Physiol. Gastrointest. Liver Physiol. 2016, 310, G417–G426. [Google Scholar] [CrossRef] [Green Version]
- Kim, Y.S.; Unno, T.; Kim, B.-Y.; Park, M.-S. Sex Differences in Gut Microbiota. World J. Mens Health 2020, 38, 48–60. [Google Scholar] [CrossRef]
- Pimentel, M.; Lembo, A. Microbiome and Its Role in Irritable Bowel Syndrome. Dig. Dis. Sci. 2020, 65, 829–839. [Google Scholar] [CrossRef] [Green Version]
- Casén, C.; Vebø, H.C.; Sekelja, M.; Hegge, F.T.; Karlsson, M.K.; Ciemniejewska, E.; Dzankovic, S.; Frøyland, C.; Nestestog, R.; Engstrand, L.; et al. Deviations in Human Gut Microbiota: A Novel Diagnostic Test for Determining Dysbiosis in Patients with IBS or IBD. Aliment. Pharmacol. Ther. 2015, 42, 71–83. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Chen, S.; Wang, Y.; Liu, Y.; Li, F.; Chen, Y.; Fang, X.; Wen, T.; Xu, S.; Kermany, D.; Deng, S.; et al. Dysbiosis of Gut Microbiome Contributes to Glaucoma Pathogenesis. MedComm—Future Med. 2022, 1, e28. [Google Scholar] [CrossRef]
- Collins, S.M. A Role for the Gut Microbiota in IBS. Nat. Rev. Gastroenterol. Hepatol. 2014, 11, 497–505. [Google Scholar] [CrossRef]
- Rajilić-Stojanović, M.; Biagi, E.; Heilig, H.G.H.J.; Kajander, K.; Kekkonen, R.A.; Tims, S.; de Vos, W.M. Global and Deep Molecular Analysis of Microbiota Signatures in Fecal Samples from Patients with Irritable Bowel Syndrome. Gastroenterology 2011, 141, 1792–1801. [Google Scholar] [CrossRef] [PubMed]
- Kurina, I.; Popenko, A.; Klimenko, N.; Koshechkin, S.; Chuprikova, L.; Filipenko, M.; Tyakht, A.; Alexeev, D. Development of QPCR Platform with Probes for Quantifying Prevalent and Biomedically Relevant Human Gut Microbial Taxa. Mol. Cell. Probes 2020, 52, 101570. [Google Scholar] [CrossRef] [PubMed]
- Carroll, I.M.; Ringel-Kulka, T.; Siddle, J.P.; Ringel, Y. Alterations in Composition and Diversity of the Intestinal Microbiota in Patients with Diarrhea-Predominant Irritable Bowel Syndrome. Neurogastroenterol. Motil. 2012, 24, 521–530.e248. [Google Scholar] [CrossRef] [Green Version]
- Carroll, I.M.; Ringel-Kulka, T.; Keku, T.O.; Chang, Y.-H.; Packey, C.D.; Sartor, R.B.; Ringel, Y. Molecular Analysis of the Luminal- and Mucosal-Associated Intestinal Microbiota in Diarrhea-Predominant Irritable Bowel Syndrome. Am. J. Physiol. Gastrointest. Liver Physiol. 2011, 301, G799–G807. [Google Scholar] [CrossRef] [Green Version]
- Pickard, J.M.; Zeng, M.Y.; Caruso, R.; Núñez, G. Gut Microbiota: Role in Pathogen Colonization, Immune Responses, and Inflammatory Disease. Immunol. Rev. 2017, 279, 70–89. [Google Scholar] [CrossRef]
- Nagel, R.; Traub, R.J.; Allcock, R.J.N.; Kwan, M.M.S.; Bielefeldt-Ohmann, H. Comparison of Faecal Microbiota in Blastocystis-Positive and Blastocystis-Negative Irritable Bowel Syndrome Patients. Microbiome 2016, 4, 47. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Jeffery, I.B.; O’Toole, P.W.; Öhman, L.; Claesson, M.J.; Deane, J.; Quigley, E.M.M.; Simrén, M. An Irritable Bowel Syndrome Subtype Defined by Species-Specific Alterations in Faecal Microbiota. Gut 2012, 61, 997–1006. [Google Scholar] [CrossRef] [PubMed]
- Zhao, X.; Zhang, Z.; Hu, B.; Huang, W.; Yuan, C.; Zou, L. Response of Gut Microbiota to Metabolite Changes Induced by Endurance Exercise. Front. Microbiol. 2018, 9, 765. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Liu, H.; Zhang, H.; Wang, X.; Yu, X.; Hu, C.; Zhang, X. The Family Coriobacteriaceae Is a Potential Contributor to the Beneficial Effects of Roux-En-Y Gastric Bypass on Type 2 Diabetes. Surg. Obes. Relat. Dis. 2018, 14, 584–593. [Google Scholar] [CrossRef] [PubMed]
- Lo Presti, A.; Zorzi, F.; Del Chierico, F.; Altomare, A.; Cocca, S.; Avola, A.; De Biasio, F.; Russo, A.; Cella, E.; Reddel, S.; et al. Fecal and Mucosal Microbiota Profiling in Irritable Bowel Syndrome and Inflammatory Bowel Disease. Front. Microbiol. 2019, 10, 1655. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Chung, C.-S.; Chang, P.-F.; Liao, C.-H.; Lee, T.-H.; Chen, Y.; Lee, Y.-C.; Wu, M.-S.; Wang, H.-P.; Ni, Y.-H. Differences of Microbiota in Small Bowel and Faeces between Irritable Bowel Syndrome Patients and Healthy Subjects. Scand. J. Gastroenterol. 2016, 51, 410–419. [Google Scholar] [CrossRef]
- Ruohtula, T.; de Goffau, M.C.; Nieminen, J.K.; Honkanen, J.; Siljander, H.; Hämäläinen, A.-M.; Peet, A.; Tillmann, V.; Ilonen, J.; Niemelä, O.; et al. Maturation of Gut Microbiota and Circulating Regulatory T Cells and Development of IgE Sensitization in Early Life. Front. Immunol. 2019, 10, 2494. [Google Scholar] [CrossRef]
- Biagi, E.; Franceschi, C.; Rampelli, S.; Severgnini, M.; Ostan, R.; Turroni, S.; Consolandi, C.; Quercia, S.; Scurti, M.; Monti, D.; et al. Gut Microbiota and Extreme Longevity. Curr. Biol. 2016, 26, 1480–1485. [Google Scholar] [CrossRef] [Green Version]
- Abenavoli, L.; Scarpellini, E.; Colica, C.; Boccuto, L.; Salehi, B.; Sharifi-Rad, J.; Aiello, V.; Romano, B.; De Lorenzo, A.; Izzo, A.A.; et al. Gut Microbiota and Obesity: A Role for Probiotics. Nutrients 2019, 11, 2690. [Google Scholar] [CrossRef] [Green Version]
- Liu, X.; Mao, B.; Gu, J.; Wu, J.; Cui, S.; Wang, G.; Zhao, J.; Zhang, H.; Chen, W. Blautia—A New Functional Genus with Potential Probiotic Properties? Gut Microbes 2021, 13, 1875796. [Google Scholar] [CrossRef]
- Luu, T.H.; Michel, C.; Bard, J.-M.; Dravet, F.; Nazih, H.; Bobin-Dubigeon, C. Intestinal Proportion of Blautia Sp. Is Associated with Clinical Stage and Histoprognostic Grade in Patients with Early-Stage Breast Cancer. Nutr. Cancer 2017, 69, 267–275. [Google Scholar] [CrossRef] [PubMed]
- Liu, Y.; Zhang, L.; Wang, X.; Wang, Z.; Zhang, J.; Jiang, R.; Wang, X.; Wang, K.; Liu, Z.; Xia, Z.; et al. Similar Fecal Microbiota Signatures in Patients with Diarrhea-Predominant Irritable Bowel Syndrome and Patients with Depression. Clin. Gastroenterol. Hepatol. 2016, 14, 1602–1611.e5. [Google Scholar] [CrossRef]
- Rabot, S.; Membrez, M.; Blancher, F.; Berger, B.; Moine, D.; Krause, L.; Bibiloni, R.; Bruneau, A.; Gérard, P.; Siddharth, J.; et al. High Fat Diet Drives Obesity Regardless the Composition of Gut Microbiota in Mice. Sci. Rep. 2016, 6, 32484. [Google Scholar] [CrossRef] [Green Version]
- Liu, H.; Wang, J.; He, T.; Becker, S.; Zhang, G.; Li, D.; Ma, X. Butyrate: A Double-Edged Sword for Health? Adv. Nutr. 2018, 9, 21–29. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Mousa, W.K.; Chehadeh, F.; Husband, S. Recent Advances in Understanding the Structure and Function of the Human Microbiome. Front. Microbiol. 2022, 13, 825338. [Google Scholar] [CrossRef] [PubMed]
- Esquivel-Elizondo, S.; Ilhan, Z.E.; Garcia-Peña, E.I.; Krajmalnik-Brown, R. Insights into Butyrate Production in a Controlled Fermentation System via Gene Predictions. mSystems 2017, 2, e00051-17. [Google Scholar] [CrossRef] [Green Version]
- Parthasarathy, G.; Chen, J.; Chia, N.; O’Connor, H.M.; Gaskins, H.R.; Bharucha, A.E. Reproducibility of Assessing Fecal Microbiota in Chronic Constipation. Neurogastroenterol. Motil. 2017, 29, e13172. [Google Scholar] [CrossRef]
- Barandouzi, Z.A.; Lee, J.; Maas, K.; Starkweather, A.R.; Cong, X.S. Altered Gut Microbiota in Irritable Bowel Syndrome and Its Association with Food Components. J. Pers. Med. 2021, 11, 35. [Google Scholar] [CrossRef]
- Labus, J.S.; Hollister, E.B.; Jacobs, J.; Kirbach, K.; Oezguen, N.; Gupta, A.; Acosta, J.; Luna, R.A.; Aagaard, K.; Versalovic, J.; et al. Differences in Gut Microbial Composition Correlate with Regional Brain Volumes in Irritable Bowel Syndrome. Microbiome 2017, 5, 49. [Google Scholar] [CrossRef] [Green Version]
- Pozuelo, M.; Panda, S.; Santiago, A.; Mendez, S.; Accarino, A.; Santos, J.; Guarner, F.; Azpiroz, F.; Manichanh, C. Reduction of Butyrate- and Methane-Producing Microorganisms in Patients with Irritable Bowel Syndrome. Sci. Rep. 2015, 5, 12693. [Google Scholar] [CrossRef] [Green Version]
- Hugerth, L.W.; Andreasson, A.; Talley, N.J.; Forsberg, A.M.; Kjellström, L.; Schmidt, P.T.; Agreus, L.; Engstrand, L. No Distinct Microbiome Signature of Irritable Bowel Syndrome Found in a Swedish Random Population. Gut 2019, 69, 1076–1084. [Google Scholar] [CrossRef] [Green Version]
- Boeckxstaens, G.E.; Drug, V.; Dumitrascu, D.; Farmer, A.D.; Hammer, J.; Hausken, T.; Niesler, B.; Pohl, D.; Pojskic, L.; Polster, A.; et al. Phenotyping of Subjects for Large Scale Studies on Patients with IBS. Neurogastroenterol. Motil. 2016, 28, 1134–1147. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Sperber, A.D.; Dumitrascu, D.; Fukudo, S.; Gerson, C.; Ghoshal, U.C.; Gwee, K.A.; Hungin, A.P.S.; Kang, J.-Y.; Minhu, C.; Schmulson, M.; et al. The Global Prevalence of IBS in Adults Remains Elusive Due to the Heterogeneity of Studies: A Rome Foundation Working Team Literature Review. Gut 2017, 66, 1075–1082. [Google Scholar] [CrossRef] [Green Version]
- Narayanan, S.P.; Anderson, B.; Bharucha, A.E. Sex- and Gender-Related Differences in Common Functional Gastroenterologic Disorders. Mayo Clin. Proc. 2021, 96, 1071–1089. [Google Scholar] [CrossRef] [PubMed]
- Benedek, G.; Zhang, J.; Nguyen, H.; Kent, G.; Seifert, H.A.; Davin, S.; Stauffer, P.; Vandenbark, A.A.; Karstens, L.; Asquith, M.; et al. Estrogen Protection against EAE Modulates the Microbiota and Mucosal-Associated Regulatory Cells. J. Neuroimmunol. 2017, 310, 51–59. [Google Scholar] [CrossRef]
- Alcazar, M.; Escribano, J.; Ferré, N.; Closa-Monasterolo, R.; Selma-Royo, M.; Feliu, A.; Castillejo, G.; Luque, V.; Closa-Monasterolo, R.; Escribano, J.; et al. Gut Microbiota Is Associated with Metabolic Health in Children with Obesity. Clin. Nutr. 2022, 41, 1680–1688. [Google Scholar] [CrossRef] [PubMed]
- Ren, M.; Li, H.; Fu, Z.; Li, Q. Succession Analysis of Gut Microbiota Structure of Participants from Long-Lived Families in Hechi, Guangxi, China. Microorganisms 2021, 9, 2524. [Google Scholar] [CrossRef] [PubMed]
- Brill, B.; Amir, A.; Heller, R. Testing for Differential Abundance in Compositional Counts Data, with Application to Microbiome Studies. arXiv 2020, arXiv:1904.08937. [Google Scholar] [CrossRef]
- Zhuang, X.; Tian, Z.; Li, L.; Zeng, Z.; Chen, M.; Xiong, L. Fecal Microbiota Alterations Associated With Diarrhea-Predominant Irritable Bowel Syndrome. Front. Microbiol. 2018, 9, 1600. [Google Scholar] [CrossRef] [Green Version]
- Zeber-Lubecka, N.; Kulecka, M.; Ambrozkiewicz, F.; Paziewska, A.; Goryca, K.; Karczmarski, J.; Rubel, T.; Wojtowicz, W.; Mlynarz, P.; Marczak, L.; et al. Limited Prolonged Effects of Rifaximin Treatment on Irritable Bowel Syndrome-Related Differences in the Fecal Microbiome and Metabolome. Gut Microbes 2016, 7, 397–413. [Google Scholar] [CrossRef] [Green Version]
- Carco, C.; Young, W.; Gearry, R.B.; Talley, N.J.; McNabb, W.C.; Roy, N.C. Increasing Evidence That Irritable Bowel Syndrome and Functional Gastrointestinal Disorders Have a Microbial Pathogenesis. Front. Cell Infect. Microbiol. 2020, 10, 468. [Google Scholar] [CrossRef]
- Guo, R.; Chen, L.-H.; Xing, C.; Liu, T. Pain Regulation by Gut Microbiota: Molecular Mechanisms and Therapeutic Potential. Br. J. Anaesth. 2019, 123, 637–654. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Brunkwall, L.; Ericson, U.; Nilsson, P.M.; Orho-Melander, M.; Ohlsson, B. Self-Reported Bowel Symptoms Are Associated with Differences in Overall Gut Microbiota Composition and Enrichment of Blautia in a Population-Based Cohort. J. Gastroenterol. Hepatol. 2021, 36, 174–180. [Google Scholar] [CrossRef]
- Aziz, I.; Törnblom, H.; Palsson, O.S.; Whitehead, W.E.; Simrén, M. How the Change in IBS Criteria from Rome III to Rome IV Impacts on Clinical Characteristics and Key Pathophysiological Factors. Am. J. Gastroenterol. 2018, 113, 1017–1025. [Google Scholar] [CrossRef]
- 16S Metagenomic Sequencing Library Preparation. Available online: https://emea.support.illumina.com/downloads/16s_metagenomic_sequencing_library_preparation.html (accessed on 24 October 2021).
- Ewels, P.; Magnusson, M.; Lundin, S.; Käller, M. MultiQC: Summarize Analysis Results for Multiple Tools and Samples in a Single Report. Bioinformatics 2016, 32, 3047–3048. [Google Scholar] [CrossRef] [PubMed] [Green Version]
- Bolyen, E.; Rideout, J.R.; Dillon, M.R.; Bokulich, N.A.; Abnet, C.C.; Al-Ghalith, G.A.; Alexander, H.; Alm, E.J.; Arumugam, M.; Asnicar, F.; et al. Reproducible, Interactive, Scalable and Extensible Microbiome Data Science Using QIIME 2. Nat. Biotechnol. 2019, 37, 852–857. [Google Scholar] [CrossRef] [PubMed]
- Callahan, B.J.; McMurdie, P.J.; Rosen, M.J.; Han, A.W.; Johnson, A.J.A.; Holmes, S.P. DADA2: High-Resolution Sample Inference from Illumina Amplicon Data. Nat. Methods 2016, 13, 581–583. [Google Scholar] [CrossRef] [Green Version]
- Katoh, K.; Misawa, K.; Kuma, K.; Miyata, T. MAFFT: A Novel Method for Rapid Multiple Sequence Alignment Based on Fast Fourier Transform. Nucleic Acids Res. 2002, 30, 3059–3066. [Google Scholar] [CrossRef] [Green Version]
- Bokulich, N.A.; Kaehler, B.D.; Rideout, J.R.; Dillon, M.; Bolyen, E.; Knight, R.; Huttley, G.A.; Gregory Caporaso, J. Optimizing Taxonomic Classification of Marker-Gene Amplicon Sequences with QIIME 2’s Q2-Feature-Classifier Plugin. Microbiome 2018, 6, 90. [Google Scholar] [CrossRef]
- Price, M.N.; Dehal, P.S.; Arkin, A.P. FastTree 2—Approximately Maximum-Likelihood Trees for Large Alignments. PLoS ONE 2010, 5, e9490. [Google Scholar] [CrossRef]
- McDonald, D.; Price, M.N.; Goodrich, J.; Nawrocki, E.P.; DeSantis, T.Z.; Probst, A.; Andersen, G.L.; Knight, R.; Hugenholtz, P. An Improved Greengenes Taxonomy with Explicit Ranks for Ecological and Evolutionary Analyses of Bacteria and Archaea. ISME J. 2012, 6, 610–618. [Google Scholar] [CrossRef] [PubMed]
- Lin, H.; Peddada, S.D. Analysis of Compositions of Microbiomes with Bias Correction. Nat. Commun. 2020, 11, 3514. [Google Scholar] [CrossRef] [PubMed]
IBS Type | Age (Years) | BMI * | ||||||
---|---|---|---|---|---|---|---|---|
SD | Me | SD | Me | |||||
IBS | female (N = 70) | IBS-C (N= 14) | 41.6 | 13.9 | 38.8 | 23 | 2.4 | 23 |
IBS-D (N = 24) | 36.3 | 13.3 | 34 | 23.2 | 5 | 21.1 | ||
IBS-U (N = 1) | 62 | - | - | 24.2 | - | - | ||
IBS-M (N = 16) | 37.9 | 11 | 35.5 | 22.5 | 2.4 | 23 | ||
not classified (N = 15) | 40.5 | 10.5 | 38 | 22 | 2.2 | 21 | ||
male (N = 51) | IBS-C (N = 10) | 36.3 | 10.4 | 35.5 | 22.5 | 2 | 21.6 | |
IBS-D (N = 8) | 34.2 | 12.9 | 29 | 25.5 | 7.3 | 24.8 | ||
IBS-U (N = 7) | 33.1 | 8.3 | 32.5 | 23.9 | 2.3 | 23.5 | ||
IBS-M (N = 19) | 30.4 | 8.1 | 29 | 24.1 | 3.2 | 25.3 | ||
not classified (N = 7) | 44.2 | 9.4 | 40 | 26.4 | 3 | 26.5 | ||
Non-IBS control group | female (N = 40) | 32.21 | 10.91 | 30.5 | 24.25 | 5.04 | 24.3 | |
male (N = 30) | 29.5 | 13.39 | 27 | 25.06 | 3.32 | 24.2 |
Questionnaire Questions | Patients with IBS | |
---|---|---|
Females | Males | |
How often do you defecate? | ||
- several times a day | 45% | 42% |
- once a day | 37% | 42% |
- less often than once a day | 18% | 16% |
What is the form of your stool? | ||
- diarrhoea | 33% | 39% |
- constipation | 26% | 20% |
- diarrhea/constipation (alternating) | 9% | 4% |
- normal | 32% | 37% |
How often did you experience discomfort or pain in the lower abdomen in the last 3 months? | ||
- every day | 48% | 33% |
- more than once a week | 35% | 49% |
- 2–3 days per month | 10% | 18% |
- once a month | 3.5% | 0% |
- less than once a month | 3.5% | 0% |
How often did this discomfort or pain decrease or disappear after a defecation? | ||
- never | 4% | 10.5% |
- sometimes | 37% | 37.5% |
- often | 31.5% | 33% |
- frequently | 20% | 12.5% |
- always | 7.5% | 6.5% |
Were the bowel movements less frequent than the pain or discomfort? | ||
- never | 36% | 44% |
- sometimes | 24.5% | 27% |
- often | 24.5% | 19% |
- frequently | 13% | 4% |
- always | 4% | 6% |
Have you had trouble sleeping since the pain started? | ||
- yes | 20% | 27% |
- no | 80% | 73% |
Disclaimer/Publisher’s Note: The statements, opinions and data contained in all publications are solely those of the individual author(s) and contributor(s) and not of MDPI and/or the editor(s). MDPI and/or the editor(s) disclaim responsibility for any injury to people or property resulting from any ideas, methods, instructions or products referred to in the content. |
© 2023 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
Share and Cite
Pecyna, P.; Gabryel, M.; Mankowska-Wierzbicka, D.; Nowak-Malczewska, D.M.; Jaskiewicz, K.; Jaworska, M.M.; Tomczak, H.; Rydzanicz, M.; Ploski, R.; Grzymislawski, M.; et al. Gender Influences Gut Microbiota among Patients with Irritable Bowel Syndrome. Int. J. Mol. Sci. 2023, 24, 10424. https://doi.org/10.3390/ijms241310424
Pecyna P, Gabryel M, Mankowska-Wierzbicka D, Nowak-Malczewska DM, Jaskiewicz K, Jaworska MM, Tomczak H, Rydzanicz M, Ploski R, Grzymislawski M, et al. Gender Influences Gut Microbiota among Patients with Irritable Bowel Syndrome. International Journal of Molecular Sciences. 2023; 24(13):10424. https://doi.org/10.3390/ijms241310424
Chicago/Turabian StylePecyna, Paulina, Marcin Gabryel, Dorota Mankowska-Wierzbicka, Dorota M. Nowak-Malczewska, Katarzyna Jaskiewicz, Marcelina M. Jaworska, Hanna Tomczak, Malgorzata Rydzanicz, Rafal Ploski, Marian Grzymislawski, and et al. 2023. "Gender Influences Gut Microbiota among Patients with Irritable Bowel Syndrome" International Journal of Molecular Sciences 24, no. 13: 10424. https://doi.org/10.3390/ijms241310424
APA StylePecyna, P., Gabryel, M., Mankowska-Wierzbicka, D., Nowak-Malczewska, D. M., Jaskiewicz, K., Jaworska, M. M., Tomczak, H., Rydzanicz, M., Ploski, R., Grzymislawski, M., Dobrowolska, A., & Gajecka, M. (2023). Gender Influences Gut Microbiota among Patients with Irritable Bowel Syndrome. International Journal of Molecular Sciences, 24(13), 10424. https://doi.org/10.3390/ijms241310424