f nucleatum atcc 51191  (ATCC)


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    ATCC f nucleatum atcc 51191
    F Nucleatum Atcc 51191, supplied by ATCC, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    f nucleatum subsp animalis atcc 51191  (ATCC)


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    ATCC f nucleatum subsp animalis atcc 51191
    A) Location of subspecies-/species-specific primer sets in each Fusobacterium genome. Genes are labeled with their annotated function if available, while hypothetical proteins are unlabeled. Forward and reverse primer locations are illustrated with red arrows. Genes and primers are not drawn to scale. B) Representative example of subspecies/species primer specificity. All reactions were performed using a mixture of gDNA from the four F. <t>nucleatum</t> subspecies and F. periodonticum . A DNA ladder is shown on the left.
    F Nucleatum Subsp Animalis Atcc 51191, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    1) Product Images from "The prevalence of Fusobacterium nucleatum subspecies in the oral cavity stratifies by local health status"

    Article Title: The prevalence of Fusobacterium nucleatum subspecies in the oral cavity stratifies by local health status

    Journal: bioRxiv

    doi: 10.1101/2023.10.25.563997

    A) Location of subspecies-/species-specific primer sets in each Fusobacterium genome. Genes are labeled with their annotated function if available, while hypothetical proteins are unlabeled. Forward and reverse primer locations are illustrated with red arrows. Genes and primers are not drawn to scale. B) Representative example of subspecies/species primer specificity. All reactions were performed using a mixture of gDNA from the four F. nucleatum subspecies and F. periodonticum . A DNA ladder is shown on the left.
    Figure Legend Snippet: A) Location of subspecies-/species-specific primer sets in each Fusobacterium genome. Genes are labeled with their annotated function if available, while hypothetical proteins are unlabeled. Forward and reverse primer locations are illustrated with red arrows. Genes and primers are not drawn to scale. B) Representative example of subspecies/species primer specificity. All reactions were performed using a mixture of gDNA from the four F. nucleatum subspecies and F. periodonticum . A DNA ladder is shown on the left.

    Techniques Used: Labeling

    f nucleatum subsp animalis atcc 51191  (ATCC)


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    ATCC f nucleatum subsp animalis atcc 51191
    <t>Fusobacterium</t> <t>nucleatum</t> tends to adhere to colorectal cancer cells and promote their proliferation. (A) A schematic diagram of bacterial adherence detection by SPRi. HCT 116 cells were taken as the example. Scale bar: 20 μm. (B) The bacterial adherence to CCD 841 CoN and HCT 116 cells at the single‐bacteria‐cell level. The adherence and deviation of F. nucleatum are shown, respectively. (C) The electrochemical response of Caco‐2 cells after in situ lysis. The cells were preincubated with F. nucleatum or mFadA protein for 24 h. Scan rate: 0.1 V/s. Temperature: 37 ± 0.5°C. (D) Wound‐healing assay and the quantification of wound area in CCD 841 CoN cells after treatment with F. nucleatum or mFadA. (E) Wound‐healing assay and the quantification of wound area in Caco‐2 cells after treatment with F. nucleatum or mFadA. (F) Cell cycle analysis of Caco‐2 cells detected by flow cytometry. The cells underwent a 24 h preincubation with F. nucleatum or mFadA. Data are expressed as mean with SD. * p < 0.05; ** p < 0.01; *** p < 0.001; **** p < 0.0001. The F. nucleatum , mFadA, and control groups are respectively marked in blue, yellow, and gray.
    F Nucleatum Subsp Animalis Atcc 51191, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    1) Product Images from "Disease‐associated gut microbiome and critical metabolomic alterations in patients with colorectal cancer"

    Article Title: Disease‐associated gut microbiome and critical metabolomic alterations in patients with colorectal cancer

    Journal: Cancer Medicine

    doi: 10.1002/cam4.6194

    Fusobacterium nucleatum tends to adhere to colorectal cancer cells and promote their proliferation. (A) A schematic diagram of bacterial adherence detection by SPRi. HCT 116 cells were taken as the example. Scale bar: 20 μm. (B) The bacterial adherence to CCD 841 CoN and HCT 116 cells at the single‐bacteria‐cell level. The adherence and deviation of F. nucleatum are shown, respectively. (C) The electrochemical response of Caco‐2 cells after in situ lysis. The cells were preincubated with F. nucleatum or mFadA protein for 24 h. Scan rate: 0.1 V/s. Temperature: 37 ± 0.5°C. (D) Wound‐healing assay and the quantification of wound area in CCD 841 CoN cells after treatment with F. nucleatum or mFadA. (E) Wound‐healing assay and the quantification of wound area in Caco‐2 cells after treatment with F. nucleatum or mFadA. (F) Cell cycle analysis of Caco‐2 cells detected by flow cytometry. The cells underwent a 24 h preincubation with F. nucleatum or mFadA. Data are expressed as mean with SD. * p < 0.05; ** p < 0.01; *** p < 0.001; **** p < 0.0001. The F. nucleatum , mFadA, and control groups are respectively marked in blue, yellow, and gray.
    Figure Legend Snippet: Fusobacterium nucleatum tends to adhere to colorectal cancer cells and promote their proliferation. (A) A schematic diagram of bacterial adherence detection by SPRi. HCT 116 cells were taken as the example. Scale bar: 20 μm. (B) The bacterial adherence to CCD 841 CoN and HCT 116 cells at the single‐bacteria‐cell level. The adherence and deviation of F. nucleatum are shown, respectively. (C) The electrochemical response of Caco‐2 cells after in situ lysis. The cells were preincubated with F. nucleatum or mFadA protein for 24 h. Scan rate: 0.1 V/s. Temperature: 37 ± 0.5°C. (D) Wound‐healing assay and the quantification of wound area in CCD 841 CoN cells after treatment with F. nucleatum or mFadA. (E) Wound‐healing assay and the quantification of wound area in Caco‐2 cells after treatment with F. nucleatum or mFadA. (F) Cell cycle analysis of Caco‐2 cells detected by flow cytometry. The cells underwent a 24 h preincubation with F. nucleatum or mFadA. Data are expressed as mean with SD. * p < 0.05; ** p < 0.01; *** p < 0.001; **** p < 0.0001. The F. nucleatum , mFadA, and control groups are respectively marked in blue, yellow, and gray.

    Techniques Used: In Situ, Lysis, Wound Healing Assay, Cell Cycle Assay, Flow Cytometry

    Fusobacterium nucleatum regulates the expression of the CHK2 gene in Caco‐2 cells. (A) Quantitative real‐time RT‐PCR assay of CHK2 gene expression in Caco‐2 cells. Based on the comparison with respective control samples, data are expressed as mean with SD. ** p < 0.01; *** p < 0.001; **** p < 0.0001. (B) Western blotting results showing the protein expression of Caco‐2 cells. (C) The detection of gene expression changes in Caco‐2 cells by flow cytometry. The cells were preincubated with F. nucleatum or mFadA for 24 h prior to the experiments.
    Figure Legend Snippet: Fusobacterium nucleatum regulates the expression of the CHK2 gene in Caco‐2 cells. (A) Quantitative real‐time RT‐PCR assay of CHK2 gene expression in Caco‐2 cells. Based on the comparison with respective control samples, data are expressed as mean with SD. ** p < 0.01; *** p < 0.001; **** p < 0.0001. (B) Western blotting results showing the protein expression of Caco‐2 cells. (C) The detection of gene expression changes in Caco‐2 cells by flow cytometry. The cells were preincubated with F. nucleatum or mFadA for 24 h prior to the experiments.

    Techniques Used: Expressing, Quantitative RT-PCR, Western Blot, Flow Cytometry

    f nucleatum subsp animalis atcc 51191  (ATCC)


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    ATCC f nucleatum subsp animalis atcc 51191
    F Nucleatum Subsp Animalis Atcc 51191, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    fna strain atcc 51191  (ATCC)


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    ATCC fna strain atcc 51191
    Fna Strain Atcc 51191, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    nucleatum atcc 51191  (ATCC)


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    ATCC nucleatum atcc 51191
    Nucleatum Atcc 51191, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    f nucleatum atcc 51191  (ATCC)


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    ATCC f nucleatum atcc 51191
    F Nucleatum Atcc 51191, supplied by ATCC, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    trisaccharide  (ATCC)


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    ATCC trisaccharide
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    f nucleatum strains  (ATCC)


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    ATCC f nucleatum strains
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    f nucleatum subsp animalis  (ATCC)


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    ATCC f nucleatum subsp animalis
    Number of Species used for Database Upgrade and Analysis
    F Nucleatum Subsp Animalis, supplied by ATCC, used in various techniques. Bioz Stars score: 94/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    1) Product Images from "Identification of Fusobacterium Species Using Matrix-Assisted Laser Desorption/Ionization-Time-of-Flight Mass Spectrometry by Updating ASTA CoreDB"

    Article Title: Identification of Fusobacterium Species Using Matrix-Assisted Laser Desorption/Ionization-Time-of-Flight Mass Spectrometry by Updating ASTA CoreDB

    Journal: Yonsei Medical Journal

    doi: 10.3349/ymj.2022.0271

    Number of Species used for Database Upgrade and Analysis
    Figure Legend Snippet: Number of Species used for Database Upgrade and Analysis

    Techniques Used:

    Comparison of Identification Results of the 182 Fusobacterium Isolates by ASTA MicroIDSys and Reference Method
    Figure Legend Snippet: Comparison of Identification Results of the 182 Fusobacterium Isolates by ASTA MicroIDSys and Reference Method

    Techniques Used:

    fusobacterium nucleatum subsp  (ATCC)


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    ATCC fusobacterium nucleatum subsp
    Distribution of urea amidolyase and related proteins in eubacterial species. a
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    1) Product Images from "Molecular evolution of urea amidolyase and urea carboxylase in fungi"

    Article Title: Molecular evolution of urea amidolyase and urea carboxylase in fungi

    Journal: BMC Evolutionary Biology

    doi: 10.1186/1471-2148-11-80

    Distribution of urea amidolyase and related proteins in eubacterial species. a
    Figure Legend Snippet: Distribution of urea amidolyase and related proteins in eubacterial species. a

    Techniques Used:

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    ATCC f nucleatum atcc 51191
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    ATCC f nucleatum subsp animalis atcc 51191
    A) Location of subspecies-/species-specific primer sets in each Fusobacterium genome. Genes are labeled with their annotated function if available, while hypothetical proteins are unlabeled. Forward and reverse primer locations are illustrated with red arrows. Genes and primers are not drawn to scale. B) Representative example of subspecies/species primer specificity. All reactions were performed using a mixture of gDNA from the four F. <t>nucleatum</t> subspecies and F. periodonticum . A DNA ladder is shown on the left.
    F Nucleatum Subsp Animalis Atcc 51191, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC fna strain atcc 51191
    A) Location of subspecies-/species-specific primer sets in each Fusobacterium genome. Genes are labeled with their annotated function if available, while hypothetical proteins are unlabeled. Forward and reverse primer locations are illustrated with red arrows. Genes and primers are not drawn to scale. B) Representative example of subspecies/species primer specificity. All reactions were performed using a mixture of gDNA from the four F. <t>nucleatum</t> subspecies and F. periodonticum . A DNA ladder is shown on the left.
    Fna Strain Atcc 51191, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC nucleatum atcc 51191
    A) Location of subspecies-/species-specific primer sets in each Fusobacterium genome. Genes are labeled with their annotated function if available, while hypothetical proteins are unlabeled. Forward and reverse primer locations are illustrated with red arrows. Genes and primers are not drawn to scale. B) Representative example of subspecies/species primer specificity. All reactions were performed using a mixture of gDNA from the four F. <t>nucleatum</t> subspecies and F. periodonticum . A DNA ladder is shown on the left.
    Nucleatum Atcc 51191, supplied by ATCC, used in various techniques. Bioz Stars score: 86/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC trisaccharide
    A) Location of subspecies-/species-specific primer sets in each Fusobacterium genome. Genes are labeled with their annotated function if available, while hypothetical proteins are unlabeled. Forward and reverse primer locations are illustrated with red arrows. Genes and primers are not drawn to scale. B) Representative example of subspecies/species primer specificity. All reactions were performed using a mixture of gDNA from the four F. <t>nucleatum</t> subspecies and F. periodonticum . A DNA ladder is shown on the left.
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    ATCC f nucleatum strains
    A) Location of subspecies-/species-specific primer sets in each Fusobacterium genome. Genes are labeled with their annotated function if available, while hypothetical proteins are unlabeled. Forward and reverse primer locations are illustrated with red arrows. Genes and primers are not drawn to scale. B) Representative example of subspecies/species primer specificity. All reactions were performed using a mixture of gDNA from the four F. <t>nucleatum</t> subspecies and F. periodonticum . A DNA ladder is shown on the left.
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    ATCC f nucleatum subsp animalis
    Number of Species used for Database Upgrade and Analysis
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    ATCC fusobacterium nucleatum subsp
    Distribution of urea amidolyase and related proteins in eubacterial species. a
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    A) Location of subspecies-/species-specific primer sets in each Fusobacterium genome. Genes are labeled with their annotated function if available, while hypothetical proteins are unlabeled. Forward and reverse primer locations are illustrated with red arrows. Genes and primers are not drawn to scale. B) Representative example of subspecies/species primer specificity. All reactions were performed using a mixture of gDNA from the four F. nucleatum subspecies and F. periodonticum . A DNA ladder is shown on the left.

    Journal: bioRxiv

    Article Title: The prevalence of Fusobacterium nucleatum subspecies in the oral cavity stratifies by local health status

    doi: 10.1101/2023.10.25.563997

    Figure Lengend Snippet: A) Location of subspecies-/species-specific primer sets in each Fusobacterium genome. Genes are labeled with their annotated function if available, while hypothetical proteins are unlabeled. Forward and reverse primer locations are illustrated with red arrows. Genes and primers are not drawn to scale. B) Representative example of subspecies/species primer specificity. All reactions were performed using a mixture of gDNA from the four F. nucleatum subspecies and F. periodonticum . A DNA ladder is shown on the left.

    Article Snippet: The znpA and 16S V3V4 rDNA gene sequences were obtained from the following strains: F. nucleatum subsp. nucleatum ATCC 25586, F. nucleatum subsp. animalis ATCC 51191, F. nucleatum subsp. polymorphum ATCC 10953, and F. nucleatum subsp. fusiforme strain ATCC 51190.

    Techniques: Labeling

    Number of Species used for Database Upgrade and Analysis

    Journal: Yonsei Medical Journal

    Article Title: Identification of Fusobacterium Species Using Matrix-Assisted Laser Desorption/Ionization-Time-of-Flight Mass Spectrometry by Updating ASTA CoreDB

    doi: 10.3349/ymj.2022.0271

    Figure Lengend Snippet: Number of Species used for Database Upgrade and Analysis

    Article Snippet: Five isolates of ATCC, one F. nucleatum subsp. animalis (ATCC 51191), two F. nucleatum subsp. nucleatum (ATCC 25586 and ATCC23726), one F. nucleatum subsp. polymorphum (ATCC10953), and one F. nucleatum subsp. vincentii (ATCC49256) were also included.

    Techniques:

    Comparison of Identification Results of the 182 Fusobacterium Isolates by ASTA MicroIDSys and Reference Method

    Journal: Yonsei Medical Journal

    Article Title: Identification of Fusobacterium Species Using Matrix-Assisted Laser Desorption/Ionization-Time-of-Flight Mass Spectrometry by Updating ASTA CoreDB

    doi: 10.3349/ymj.2022.0271

    Figure Lengend Snippet: Comparison of Identification Results of the 182 Fusobacterium Isolates by ASTA MicroIDSys and Reference Method

    Article Snippet: Five isolates of ATCC, one F. nucleatum subsp. animalis (ATCC 51191), two F. nucleatum subsp. nucleatum (ATCC 25586 and ATCC23726), one F. nucleatum subsp. polymorphum (ATCC10953), and one F. nucleatum subsp. vincentii (ATCC49256) were also included.

    Techniques:

    Distribution of urea amidolyase and related proteins in eubacterial species. a

    Journal: BMC Evolutionary Biology

    Article Title: Molecular evolution of urea amidolyase and urea carboxylase in fungi

    doi: 10.1186/1471-2148-11-80

    Figure Lengend Snippet: Distribution of urea amidolyase and related proteins in eubacterial species. a

    Article Snippet: Fusobacteria , Fusobacterium nucleatum subsp. Nucleatum ATCC 25586 , - , - , - , -.

    Techniques: