Clostridium sporogenes
Clostridium sporogenes is an anaerobic, spore-forming bacterium that is not a recognized probiotic. It is studied primarily in the context of food safety, as a surrogate organism for heat-resistance testing of sterilization processes, and in microbiology research on amino acid fermentation and sporulation mechanisms. Some strains are associated with opportunistic infections in clinical case reports. The available research treats it as a research organism and food-industry reference microbe rather than a supplement candidate. These are research topics, not findings; the papers do not establish that this strain treats or prevents any condition.
Where it's been studied Tags come from a conservative keyword scan of each paper's title, abstract, and summary. A tag is research coverage, not measured effect. How we classify this →
Share of this strain's 163 body-system-tagged papers that concern each system. Research coverage, not measured effect.
Symptoms in the research A tag means the paper's text names the symptom or condition — research coverage, not evidence of benefit. How we classify this →
Share of this strain's 40 symptom-tagged papers that mention each symptom or condition. Research coverage, not evidence of benefit.
Research Study-type filters use AI-classified labels, audited but not guaranteed — check the paper itself before leaning on one. How we classify this →
763 papers reference this strain in the probiotic database.
Discussion
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Citations
Selected papers that name this strain.
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[1]
Source →Poster Session II - A234 DIETARY ENHANCEMENT OF MICROBIAL TRYPTOPHAN METABOLISM RESTORES AHR SIGNALLING AND REDUCES COLITIS· Journal of the Canadian Association of Gastroenterology · 2026
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[2]
Source →Effects of Clostridium sporogenes on Myeloid-Derived Suppressor Cells and Inflammatory Factors in Mice with Graves' Disease· ScienceDB · 2026
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[3]
PMID 41222166 →Phages infecting Clostridium sporogenes· Microbiology Resource Announcements · 2025
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[4]
PMID 39606796 →The gut microbiota‐derived metabolite indole‐3‐propionic acid enhances leptin sensitivity by targeting STAT3 against diet‐induced obesity· Clinical and Translational Medicine · 2024
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[5]
PMID 38455064 →Editorial: Recombinant microbes-mediated cancer immunotherapy· Frontiers in Immunology · 2024
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[6]
PMID 37185230 →Indole-3-Propionic Acid, a Gut Microbiota Metabolite, Protects Against the Development of Postoperative Delirium· Annals of Surgery · 2023
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[7]
Source →Studying novel sporulation genes in Clostridium sporogenes· Nottingham ePrints (University of Nottingham) · 2020
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[8]
Source →A119 THE MICROBIAL METABOLITE SENSOR PREGNANE X RECEPTOR (PXR) RESTRAINS FIBROBLASTS FROM PROMOTING INTESTINAL INFLAMMATION AND FIBROSIS IN MICE· Journal of the Canadian Association of Gastroenterology · 2018
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[9]
Source →The Microbial Metabolite Sensor Pregnane X Receptor (PXR) Restrains Fibroblasts from Promoting Gastrointestinal Inflammation and Fibrosis in Mice· The FASEB Journal · 2017
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[10]
Source →Development of bacterial nitroreductase enzymes for noninvasive imaging in cancer gene therapy· · 2013