Steven K Uttech, Ronald Ordinola-Zapata, W Craig Noblett, Maria Martell, Bruno Lima, Christopher Staley
{"title":"根管封闭剂或氢氧化钙处理多物种生物膜:抗菌活性和群落组成的变化。","authors":"Steven K Uttech, Ronald Ordinola-Zapata, W Craig Noblett, Maria Martell, Bruno Lima, Christopher Staley","doi":"10.1111/iej.70015","DOIUrl":null,"url":null,"abstract":"<p><strong>Introduction: </strong>To evaluate the antimicrobial activity and changes in community composition in biofilms treated with two root canal sealers or calcium hydroxide.</p><p><strong>Material and methods: </strong>Forty-nine extracted bovine dentine cylinders were inoculated with subgingival dental plaque for 2 weeks in a CDC biofilm reactor. Three treatment groups were assigned: AH Plus, BC Sealer, and calcium hydroxide. Propylene glycol inert vehicle (PG) and untreated contaminated samples were used as controls. The infected root canal space was in direct contact with the materials for 7 days under anaerobic incubation. Anaerobic culture (colony forming units, CFU), quantification PCR (qPCR), and next generation sequencing were used to assess the effect of each material. Differences in the number of molecules (qPCR), CFU, and abundances of genera were evaluated using the Kruskal-Wallis test. The Shannon and Chao1 indices were used to measure alpha diversity. Differences in community composition were evaluated using non-parametric analysis of similarity (ANOSIM).</p><p><strong>Results: </strong>The CFU, Shannon, and Chao1 indices revealed significant differences between BC Sealer, AH Plus, and calcium hydroxide groups versus the untreated control group and PG (p < 0.003). Calcium hydroxide and BC Sealer significantly reduced the qPCR values compared to the control group and PG. The biofilm composition (98.5%) was primarily composed of Peptostreptococcus, Streptococcus, Parvimonas, Fusobacterium, Veillonela, Mogibacterium, Lancefieldella, Eubacterium, Slackia, and Prevotella. Significant differences in overall community composition and beta diversity between untreated controls and AH Plus were observed (ANOSIM R = 0.674, p < 0.001). Parvimonas, Streptococcus, Eubacterium, and Lancefieldella were not affected by any of the materials tested.</p><p><strong>Conclusion: </strong>Calcium hydroxide and BC Sealer significantly reduced the viability and the total number of DNA copies. AH Plus sealer reduced the bacterial viability but did not affect the DNA concentration. AH Plus significantly alters overall biofilm community composition compared to other groups. None of the materials tested eliminated the multispecies biofilm completely.</p>","PeriodicalId":13724,"journal":{"name":"International endodontic journal","volume":" ","pages":""},"PeriodicalIF":7.1000,"publicationDate":"2025-08-13","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Multispecies Biofilms Treated With Endodontic Sealers or Calcium Hydroxide: Antimicrobial Activity and Changes in Community Composition.\",\"authors\":\"Steven K Uttech, Ronald Ordinola-Zapata, W Craig Noblett, Maria Martell, Bruno Lima, Christopher Staley\",\"doi\":\"10.1111/iej.70015\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<p><strong>Introduction: </strong>To evaluate the antimicrobial activity and changes in community composition in biofilms treated with two root canal sealers or calcium hydroxide.</p><p><strong>Material and methods: </strong>Forty-nine extracted bovine dentine cylinders were inoculated with subgingival dental plaque for 2 weeks in a CDC biofilm reactor. Three treatment groups were assigned: AH Plus, BC Sealer, and calcium hydroxide. Propylene glycol inert vehicle (PG) and untreated contaminated samples were used as controls. The infected root canal space was in direct contact with the materials for 7 days under anaerobic incubation. Anaerobic culture (colony forming units, CFU), quantification PCR (qPCR), and next generation sequencing were used to assess the effect of each material. Differences in the number of molecules (qPCR), CFU, and abundances of genera were evaluated using the Kruskal-Wallis test. The Shannon and Chao1 indices were used to measure alpha diversity. Differences in community composition were evaluated using non-parametric analysis of similarity (ANOSIM).</p><p><strong>Results: </strong>The CFU, Shannon, and Chao1 indices revealed significant differences between BC Sealer, AH Plus, and calcium hydroxide groups versus the untreated control group and PG (p < 0.003). Calcium hydroxide and BC Sealer significantly reduced the qPCR values compared to the control group and PG. The biofilm composition (98.5%) was primarily composed of Peptostreptococcus, Streptococcus, Parvimonas, Fusobacterium, Veillonela, Mogibacterium, Lancefieldella, Eubacterium, Slackia, and Prevotella. Significant differences in overall community composition and beta diversity between untreated controls and AH Plus were observed (ANOSIM R = 0.674, p < 0.001). Parvimonas, Streptococcus, Eubacterium, and Lancefieldella were not affected by any of the materials tested.</p><p><strong>Conclusion: </strong>Calcium hydroxide and BC Sealer significantly reduced the viability and the total number of DNA copies. AH Plus sealer reduced the bacterial viability but did not affect the DNA concentration. AH Plus significantly alters overall biofilm community composition compared to other groups. 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Multispecies Biofilms Treated With Endodontic Sealers or Calcium Hydroxide: Antimicrobial Activity and Changes in Community Composition.
Introduction: To evaluate the antimicrobial activity and changes in community composition in biofilms treated with two root canal sealers or calcium hydroxide.
Material and methods: Forty-nine extracted bovine dentine cylinders were inoculated with subgingival dental plaque for 2 weeks in a CDC biofilm reactor. Three treatment groups were assigned: AH Plus, BC Sealer, and calcium hydroxide. Propylene glycol inert vehicle (PG) and untreated contaminated samples were used as controls. The infected root canal space was in direct contact with the materials for 7 days under anaerobic incubation. Anaerobic culture (colony forming units, CFU), quantification PCR (qPCR), and next generation sequencing were used to assess the effect of each material. Differences in the number of molecules (qPCR), CFU, and abundances of genera were evaluated using the Kruskal-Wallis test. The Shannon and Chao1 indices were used to measure alpha diversity. Differences in community composition were evaluated using non-parametric analysis of similarity (ANOSIM).
Results: The CFU, Shannon, and Chao1 indices revealed significant differences between BC Sealer, AH Plus, and calcium hydroxide groups versus the untreated control group and PG (p < 0.003). Calcium hydroxide and BC Sealer significantly reduced the qPCR values compared to the control group and PG. The biofilm composition (98.5%) was primarily composed of Peptostreptococcus, Streptococcus, Parvimonas, Fusobacterium, Veillonela, Mogibacterium, Lancefieldella, Eubacterium, Slackia, and Prevotella. Significant differences in overall community composition and beta diversity between untreated controls and AH Plus were observed (ANOSIM R = 0.674, p < 0.001). Parvimonas, Streptococcus, Eubacterium, and Lancefieldella were not affected by any of the materials tested.
Conclusion: Calcium hydroxide and BC Sealer significantly reduced the viability and the total number of DNA copies. AH Plus sealer reduced the bacterial viability but did not affect the DNA concentration. AH Plus significantly alters overall biofilm community composition compared to other groups. None of the materials tested eliminated the multispecies biofilm completely.
期刊介绍:
The International Endodontic Journal is published monthly and strives to publish original articles of the highest quality to disseminate scientific and clinical knowledge; all manuscripts are subjected to peer review. Original scientific articles are published in the areas of biomedical science, applied materials science, bioengineering, epidemiology and social science relevant to endodontic disease and its management, and to the restoration of root-treated teeth. In addition, review articles, reports of clinical cases, book reviews, summaries and abstracts of scientific meetings and news items are accepted.
The International Endodontic Journal is essential reading for general dental practitioners, specialist endodontists, research, scientists and dental teachers.