Bacillus subtilis ATCC 6633
Bacillus subtilis ATCC 6633 is a spore-forming aerobic bacterium widely used in research and biotechnology. In vitro and animal studies have examined this strain for antimicrobial peptide production, probiotic potential in gastrointestinal cell models and aquaculture settings, and technological applications including sterilization and bacterial decontamination. Research has also characterized its growth rates in enrichment media and bacteriocin production, including interactions with pathogenic bacteria in cell culture models. 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 16 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 3 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 →
782 papers reference this strain in the probiotic database.
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Citations
Selected papers that name this strain.
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[1]
Source →BIODEGRADATION OF POLYSTYRENE AND POLYPROPYLENE BY BACILLUS SUBTILIS SUBSP. SPIZIZENI: INFLUENCE OF TEMPERATURE AND GROWTH MEDIA· Applied Ecology and Environmental Research · 2025
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[2]
Source →Studi Perbandingan Efektivitas Probiotik Lactobacillus sp dan Isolat Bacillus subtilis ATCC 6643 Terhadap Serangan Vibrio parahaemolyticus Pada Budidaya Udang Vaname (Litopenaeus vannamei)· Digilib Repository Unila (Lampung University) · 2025
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[3]
PMID 33889367 →Interaction between the probiotic Bacillus subtilis and Salmonella Typhimurium in Caco-2 cell culture· Iranian Journal of Microbiology · 2021
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[4]
PMID 32672713 →OBTAINING OF BACTERIOCINES FROM BACTERIA BACILLUS SUBTILIS ATCC 6633 STRAIN BY ORIGINAL METHODS.· PubMed · 2020
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[5]
PMID 30830751 →Molecular Basis of Bacillus subtilis ATCC 6633 Self-Resistance to the Phosphono-oligopeptide Antibiotic Rhizocticin· ACS Chemical Biology · 2019
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[6]
Source →Le pathosystème Lin (Linum usitatissimum) - Fusarium oxysporum : Impact du champignon et d'un agent de biocontrôle sur des réponses moléculaires de la plante et le développement de la fusariose· theses.fr (ABES) · 2018
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[7]
PMID 28676033 →The effects of probiotic Bacillus subtilis on the cytotoxicity of Clostridium perfringens type a in Caco-2 cell culture· BMC Microbiology · 2017
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[8]
PMID 29072586 →Impact of 3–Aminopropyltriethoxysilane-Coated Iron Oxide Nanoparticles on Menaquinone-7 Production Using B. subtilis· Nanomaterials · 2017
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[9]
Source →Synthèse et étude biologique des phosphonopeptides: les rhizocticines, les plumbemycines et leurs analogues· Open Repository and Bibliography (University of Liège) · 2013
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[10]
PMID 23519163 →Characterization of an antimicrobial peptide produced by Bacillus subtilis subsp. spizezinii showing inhibitory activity towards Haemophilus parasuis· Microbiology · 2013