{"@context":{"@vocab":"https://cir.nii.ac.jp/schema/1.0/","rdfs":"http://www.w3.org/2000/01/rdf-schema#","dc":"http://purl.org/dc/elements/1.1/","dcterms":"http://purl.org/dc/terms/","foaf":"http://xmlns.com/foaf/0.1/","prism":"http://prismstandard.org/namespaces/basic/2.0/","cinii":"http://ci.nii.ac.jp/ns/1.0/","datacite":"https://schema.datacite.org/meta/kernel-4/","ndl":"http://ndl.go.jp/dcndl/terms/","jpcoar":"https://github.com/JPCOAR/schema/blob/master/2.0/"},"@id":"https://cir.nii.ac.jp/crid/1360848656889838720.json","@type":"Article","productIdentifier":[{"identifier":{"@type":"DOI","@value":"10.1016/j.anaerobe.2012.01.001"}},{"identifier":{"@type":"URI","@value":"https://api.elsevier.com/content/article/PII:S1075996412000042?httpAccept=text/xml"}},{"identifier":{"@type":"URI","@value":"https://api.elsevier.com/content/article/PII:S1075996412000042?httpAccept=text/plain"}},{"identifier":{"@type":"PMID","@value":"22252100"}},{"identifier":{"@type":"NAID","@value":"20001398518"}}],"resourceType":"学術雑誌論文(journal article)","dc:title":[{"@value":"Synergistic effect on biofilm formation between Fusobacterium nucleatum and Capnocytophaga ochracea"}],"description":[{"notation":[{"@value":"The formation of dental plaque biofilm by specific Gram-negative rods and spirochetes plays an important role in the development of periodontal disease. The aim of this study was to characterize biofilm formation by Fusobacterium nucleatum and Capnocytophaga ochracea. Coaggregation between F. nucleatum and Capnocytophaga species was determined by visual assay. Biofilm formation was assessed by crystal violet staining. Enhancement of biofilm formation by F. nucleatum via soluble factor of C. ochracea was evaluated by addition of culture supernatant and a two-compartment separated co-culture system. Production of autoinducer-2 by the tested organisms was evaluated using Vibrio harveyi BB170. F. nucleatum strains coaggregated with C. ochracea ATCC 33596 or ONO-26 strains. Ethylenediamine tetraacetic acid, N-acetyl-d-galactosamine or lysine inhibited coaggregation. Heating or proteinase K treatment of F. nucleatum cells affected coaggregation, whereas the same treatment of C. ochracea cells did not. Co-culture of F. nucleatum with C. ochracea in the same well resulted in a statistically significant increase in biofilm formation. Enhancement of F. nucleatum biofilm formation by a soluble component of C. ochracea was observed using the two-compartment co-culture system (P0.05) and confirmed by addition of culture supernatant of C. ochracea (P0.01). The present findings indicate that induction of coaggregation and intracellular interaction by release of a diffusible molecule by C. ochracea play a significant role in the formation of biofilm by F. nucleatum and C. ochracea."}]}],"creator":[{"@id":"https://cir.nii.ac.jp/crid/1380848656889838721","@type":"Researcher","foaf:name":[{"@value":"Tamaki Okuda"}]},{"@id":"https://cir.nii.ac.jp/crid/1380848656889838592","@type":"Researcher","foaf:name":[{"@value":"Katsuji 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Ishihara"}]}],"publication":{"publicationIdentifier":[{"@type":"PISSN","@value":"10759964"}],"prism:publicationName":[{"@value":"Anaerobe"}],"dc:publisher":[{"@value":"Elsevier BV"}],"prism:publicationDate":"2012-02","prism:volume":"18","prism:number":"1","prism:startingPage":"157","prism:endingPage":"161"},"reviewed":"false","dc:rights":["https://www.elsevier.com/tdm/userlicense/1.0/"],"url":[{"@id":"https://api.elsevier.com/content/article/PII:S1075996412000042?httpAccept=text/xml"},{"@id":"https://api.elsevier.com/content/article/PII:S1075996412000042?httpAccept=text/plain"}],"createdAt":"2012-01-11","modifiedAt":"2020-06-30","foaf:topic":[{"@id":"https://cir.nii.ac.jp/all?q=Hot%20Temperature","dc:title":"Hot Temperature"},{"@id":"https://cir.nii.ac.jp/all?q=Fusobacterium%20nucleatum","dc:title":"Fusobacterium nucleatum"},{"@id":"https://cir.nii.ac.jp/all?q=Carbohydrates","dc:title":"Carbohydrates"},{"@id":"https://cir.nii.ac.jp/all?q=Bacterial%20Adhesion","dc:title":"Bacterial Adhesion"},{"@id":"https://cir.nii.ac.jp/all?q=Coculture%20Techniques","dc:title":"Coculture Techniques"},{"@id":"https://cir.nii.ac.jp/all?q=Lactones","dc:title":"Lactones"},{"@id":"https://cir.nii.ac.jp/all?q=Biofilms","dc:title":"Biofilms"},{"@id":"https://cir.nii.ac.jp/all?q=Homoserine","dc:title":"Homoserine"},{"@id":"https://cir.nii.ac.jp/all?q=Amino%20Acids","dc:title":"Amino Acids"},{"@id":"https://cir.nii.ac.jp/all?q=Endopeptidase%20K","dc:title":"Endopeptidase K"},{"@id":"https://cir.nii.ac.jp/all?q=Symbiosis","dc:title":"Symbiosis"},{"@id":"https://cir.nii.ac.jp/all?q=Capnocytophaga","dc:title":"Capnocytophaga"},{"@id":"https://cir.nii.ac.jp/all?q=Edetic%20Acid","dc:title":"Edetic Acid"},{"@id":"https://cir.nii.ac.jp/all?q=Chelating%20Agents","dc:title":"Chelating 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bacteria"}]}],"relatedProduct":[{"@id":"https://cir.nii.ac.jp/crid/1050001337712265088","@type":"Article","resourceType":"学術雑誌論文(journal article)","relationType":["isReferencedBy"],"jpcoar:relatedTitle":[{"@value":"Involvement of the Type IX Secretion System in Capnocytophaga ochracea Gliding Motility and Biofilm Formation"}]},{"@id":"https://cir.nii.ac.jp/crid/1050296298824795648","@type":"Article","resourceType":"学術雑誌論文(journal article)","relationType":["isReferencedBy"],"jpcoar:relatedTitle":[{"@value":"OxyR inactivation reduces the growth rate and oxidative stress defense in Capnocytophaga ochracea"}]},{"@id":"https://cir.nii.ac.jp/crid/1050564287664173440","@type":"Article","resourceType":"学術雑誌論文(journal article)","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"Stimulation of Fusobacterium nucleatum biofilm formation by Porphyromonas gingivalis"}]},{"@id":"https://cir.nii.ac.jp/crid/1050845762640737152","@type":"Article","resourceType":"学術雑誌論文(journal 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development"}]},{"@id":"https://cir.nii.ac.jp/crid/1361418520131984768","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"Coaggregation of Porphyromonas gingivalis and Fusobacterium nucleatum PK 1594 is mediated by capsular polysaccharide and lipopolysaccharide"}]},{"@id":"https://cir.nii.ac.jp/crid/1361699993673276800","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"Identification of a Fusobacterium nucleatum PK1594 galactose-binding adhesin which mediates coaggregation with periopathogenic bacteria and hemagglutination"}]},{"@id":"https://cir.nii.ac.jp/crid/1361699995675536384","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"Quorum sensing in\n            <i>Escherichia coli</i>\n            ,\n            <i>Salmonella typhimurium</i>\n            , and\n            <i>Vibrio harveyi</i>\n            : A new family of genes responsible for autoinducer 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naeslundii"}]},{"@id":"https://cir.nii.ac.jp/crid/1362544419433803520","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"Identification of a galactose-binding lectin on Fusobacterium nucleatum FN-2"}]},{"@id":"https://cir.nii.ac.jp/crid/1362544419471911552","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"Nutritional interactions between two suspected periodontopathogens, Treponema denticola and Porphyromonas gingivalis"}]},{"@id":"https://cir.nii.ac.jp/crid/1362544419800066688","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"Periodontal Pathogens Produce Quorum Sensing Signal Molecules"}]},{"@id":"https://cir.nii.ac.jp/crid/1362544420240203904","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"<i>Capnocytophaga</i> spp. in Periodontitis Patients Manifesting Diabetes Mellitus"}]},{"@id":"https://cir.nii.ac.jp/crid/1362544420936802944","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"Inhibition of coaggregation between Fusobacterium nucleatum and Porphyromonas (Bacteroides) gingivalis by lactose and related sugars"}]},{"@id":"https://cir.nii.ac.jp/crid/1362544421418598144","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"The predominant cultivable microbiota of active and inactive lesions of destructive periodontal diseases"}]},{"@id":"https://cir.nii.ac.jp/crid/1362825895998290048","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"Microbiological goals of periodontal therapy"}]},{"@id":"https://cir.nii.ac.jp/crid/1363107368253284480","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"Microbial complexes in subgingival plaque"}]},{"@id":"https://cir.nii.ac.jp/crid/1363107369379758976","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"LuxS-Based Signaling Affects\n                    <i>Streptococcus mutans</i>\n                    Biofilm Formation"}]},{"@id":"https://cir.nii.ac.jp/crid/1363388843984971904","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"Coaggregation of human oral Cytophaga species and Actinomyces israelii"}]},{"@id":"https://cir.nii.ac.jp/crid/1363388844430216960","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"Evidence for the existence of two classes of corncob (coaggregation) receptor in <i>Fusobacterium nucleatum</i>"}]},{"@id":"https://cir.nii.ac.jp/crid/1363670318660614912","@type":"Article","relationType":["references"],"jpcoar:relatedTitle":[{"@value":"Oral Microbial Communities: Biofilms, Interactions, and Genetic 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