e coli j5  (ATCC)


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    ATCC e coli j5
    Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, <t>E.</t> <t>coli</t> <t>J5</t> LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.
    E Coli J5, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    1) Product Images from "Structural and biological characteristics of different forms of V. filiformis lipid A: use of MS to highlight structural discrepancies"

    Article Title: Structural and biological characteristics of different forms of V. filiformis lipid A: use of MS to highlight structural discrepancies

    Journal: Journal of Lipid Research

    doi: 10.1194/jlr.M072900

    Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, E. coli J5 LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.
    Figure Legend Snippet: Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, E. coli J5 LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.

    Techniques Used: Purification, SDS Page, High Performance Thin Layer Chromatography, Electrophoresis, Migration

    Lipid A structures of the major molecular species present in the purified LPS samples. The structures presented with the corresponding MWT given masses correspond to published data for all LPSs. The dashed lines indicate elements missing in the structures for each LPS sample used in this paper and corresponding to MWS. E. coli J5 (A), H. influenzae (B), R. gelatinosa (C), P. aeruginosa (D), N. meningitis (E), B. pertussis 1414 (F), B. pertussis 18-323 (G), V. filiformis V.f5-6 (H), V. filiformis V.f6+2PEA (I).
    Figure Legend Snippet: Lipid A structures of the major molecular species present in the purified LPS samples. The structures presented with the corresponding MWT given masses correspond to published data for all LPSs. The dashed lines indicate elements missing in the structures for each LPS sample used in this paper and corresponding to MWS. E. coli J5 (A), H. influenzae (B), R. gelatinosa (C), P. aeruginosa (D), N. meningitis (E), B. pertussis 1414 (F), B. pertussis 18-323 (G), V. filiformis V.f5-6 (H), V. filiformis V.f6+2PEA (I).

    Techniques Used: Purification

    ROS production and caspase 3/7 activation induced by LPS stimulation. Cell viability (A) and caspase 3/7 activation (B) were assessed after 24 h THP-1 stimulation. C: ROS production by THP-1 cells after 1 h stimulation. N-acetyl-l-cysteine was used to inhibit ROS production in E. coli J5 stimulation. *P < 0.05 compared to no LPS.
    Figure Legend Snippet: ROS production and caspase 3/7 activation induced by LPS stimulation. Cell viability (A) and caspase 3/7 activation (B) were assessed after 24 h THP-1 stimulation. C: ROS production by THP-1 cells after 1 h stimulation. N-acetyl-l-cysteine was used to inhibit ROS production in E. coli J5 stimulation. *P < 0.05 compared to no LPS.

    Techniques Used: Activation Assay

    e coli 43745 j5  (ATCC)


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    ATCC e coli 43745 j5
    E Coli 43745 J5, 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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    e coli 43745 j5  (ATCC)


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    ATCC e coli 43745 j5
    E Coli 43745 J5, 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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    e coli j5  (ATCC)


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    ATCC e coli j5
    Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, <t>E.</t> <t>coli</t> <t>J5</t> LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.
    E Coli J5, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    1) Product Images from "Structural and biological characteristics of different forms of V. filiformis lipid A: use of MS to highlight structural discrepancies"

    Article Title: Structural and biological characteristics of different forms of V. filiformis lipid A: use of MS to highlight structural discrepancies

    Journal: Journal of Lipid Research

    doi: 10.1194/jlr.M072900

    Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, E. coli J5 LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.
    Figure Legend Snippet: Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, E. coli J5 LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.

    Techniques Used: Purification, SDS Page, High Performance Thin Layer Chromatography, Electrophoresis, Migration

    Lipid A structures of the major molecular species present in the purified LPS samples. The structures presented with the corresponding MWT given masses correspond to published data for all LPSs. The dashed lines indicate elements missing in the structures for each LPS sample used in this paper and corresponding to MWS. E. coli J5 (A), H. influenzae (B), R. gelatinosa (C), P. aeruginosa (D), N. meningitis (E), B. pertussis 1414 (F), B. pertussis 18-323 (G), V. filiformis V.f5-6 (H), V. filiformis V.f6+2PEA (I).
    Figure Legend Snippet: Lipid A structures of the major molecular species present in the purified LPS samples. The structures presented with the corresponding MWT given masses correspond to published data for all LPSs. The dashed lines indicate elements missing in the structures for each LPS sample used in this paper and corresponding to MWS. E. coli J5 (A), H. influenzae (B), R. gelatinosa (C), P. aeruginosa (D), N. meningitis (E), B. pertussis 1414 (F), B. pertussis 18-323 (G), V. filiformis V.f5-6 (H), V. filiformis V.f6+2PEA (I).

    Techniques Used: Purification

    ROS production and caspase 3/7 activation induced by LPS stimulation. Cell viability (A) and caspase 3/7 activation (B) were assessed after 24 h THP-1 stimulation. C: ROS production by THP-1 cells after 1 h stimulation. N-acetyl-l-cysteine was used to inhibit ROS production in E. coli J5 stimulation. *P < 0.05 compared to no LPS.
    Figure Legend Snippet: ROS production and caspase 3/7 activation induced by LPS stimulation. Cell viability (A) and caspase 3/7 activation (B) were assessed after 24 h THP-1 stimulation. C: ROS production by THP-1 cells after 1 h stimulation. N-acetyl-l-cysteine was used to inhibit ROS production in E. coli J5 stimulation. *P < 0.05 compared to no LPS.

    Techniques Used: Activation Assay

    e coli j5  (ATCC)


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    ATCC e coli j5
    Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, <t>E.</t> <t>coli</t> <t>J5</t> LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.
    E Coli J5, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    1) Product Images from "Structural and biological characteristics of different forms of V. filiformis lipid A: use of MS to highlight structural discrepancies"

    Article Title: Structural and biological characteristics of different forms of V. filiformis lipid A: use of MS to highlight structural discrepancies

    Journal: Journal of Lipid Research

    doi: 10.1194/jlr.M072900

    Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, E. coli J5 LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.
    Figure Legend Snippet: Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, E. coli J5 LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.

    Techniques Used: Purification, SDS Page, High Performance Thin Layer Chromatography, Electrophoresis, Migration

    Lipid A structures of the major molecular species present in the purified LPS samples. The structures presented with the corresponding MWT given masses correspond to published data for all LPSs. The dashed lines indicate elements missing in the structures for each LPS sample used in this paper and corresponding to MWS. E. coli J5 (A), H. influenzae (B), R. gelatinosa (C), P. aeruginosa (D), N. meningitis (E), B. pertussis 1414 (F), B. pertussis 18-323 (G), V. filiformis V.f5-6 (H), V. filiformis V.f6+2PEA (I).
    Figure Legend Snippet: Lipid A structures of the major molecular species present in the purified LPS samples. The structures presented with the corresponding MWT given masses correspond to published data for all LPSs. The dashed lines indicate elements missing in the structures for each LPS sample used in this paper and corresponding to MWS. E. coli J5 (A), H. influenzae (B), R. gelatinosa (C), P. aeruginosa (D), N. meningitis (E), B. pertussis 1414 (F), B. pertussis 18-323 (G), V. filiformis V.f5-6 (H), V. filiformis V.f6+2PEA (I).

    Techniques Used: Purification

    ROS production and caspase 3/7 activation induced by LPS stimulation. Cell viability (A) and caspase 3/7 activation (B) were assessed after 24 h THP-1 stimulation. C: ROS production by THP-1 cells after 1 h stimulation. N-acetyl-l-cysteine was used to inhibit ROS production in E. coli J5 stimulation. *P < 0.05 compared to no LPS.
    Figure Legend Snippet: ROS production and caspase 3/7 activation induced by LPS stimulation. Cell viability (A) and caspase 3/7 activation (B) were assessed after 24 h THP-1 stimulation. C: ROS production by THP-1 cells after 1 h stimulation. N-acetyl-l-cysteine was used to inhibit ROS production in E. coli J5 stimulation. *P < 0.05 compared to no LPS.

    Techniques Used: Activation Assay

    bacterial strains e coli j5  (ATCC)


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    ATCC bacterial strains e coli j5
    Bacterial Strains E Coli J5, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    e coli j5  (ATCC)


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    ATCC e coli j5
    Schematic of the organization of <t>Escherichia</t> <t>coli</t> LPS. Kdo, 2-keto-3-deoxyoctonoic acid; Hep, l -gycero- d -manno heptose; Glc, glucose; Gal, galactose. The lipid A tails consist of five myristoyl chains and one palmitoyl chain. Additional phosphates and ethanolamines on the Kdo and Hep have been omitted for clarity.
    E Coli J5, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    1) Product Images from "Structural Characterization of a Model Gram-Negative Bacterial Surface Using Lipopolysaccharides from Rough Strains of Escherichia coli"

    Article Title: Structural Characterization of a Model Gram-Negative Bacterial Surface Using Lipopolysaccharides from Rough Strains of Escherichia coli

    Journal: Biomacromolecules

    doi: 10.1021/bm400356m

    Schematic of the organization of Escherichia coli LPS. Kdo, 2-keto-3-deoxyoctonoic acid; Hep, l -gycero- d -manno heptose; Glc, glucose; Gal, galactose. The lipid A tails consist of five myristoyl chains and one palmitoyl chain. Additional phosphates and ethanolamines on the Kdo and Hep have been omitted for clarity.
    Figure Legend Snippet: Schematic of the organization of Escherichia coli LPS. Kdo, 2-keto-3-deoxyoctonoic acid; Hep, l -gycero- d -manno heptose; Glc, glucose; Gal, galactose. The lipid A tails consist of five myristoyl chains and one palmitoyl chain. Additional phosphates and ethanolamines on the Kdo and Hep have been omitted for clarity.

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    rc mutant e coli j5 15  (ATCC)


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    ATCC rc mutant e coli j5 15
    Rc Mutant E Coli J5 15, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC e coli j5
    Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, <t>E.</t> <t>coli</t> <t>J5</t> LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.
    E Coli J5, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC e coli 43745 j5
    Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, <t>E.</t> <t>coli</t> <t>J5</t> LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.
    E Coli 43745 J5, 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 bacterial strains e coli j5
    Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, <t>E.</t> <t>coli</t> <t>J5</t> LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.
    Bacterial Strains E Coli J5, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    ATCC rc mutant e coli j5 15
    Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, <t>E.</t> <t>coli</t> <t>J5</t> LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.
    Rc Mutant E Coli J5 15, supplied by ATCC, used in various techniques. Bioz Stars score: 99/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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    Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, E. coli J5 LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.

    Journal: Journal of Lipid Research

    Article Title: Structural and biological characteristics of different forms of V. filiformis lipid A: use of MS to highlight structural discrepancies

    doi: 10.1194/jlr.M072900

    Figure Lengend Snippet: Analyses of purified LPS from the two V. filiformis samples compared with LPS standards by SDS-PAGE (A) and HPTLC (B). A: 1, E. coli J5 LPS; 2, V. filiformis V.f5-6 LPS; 3, V. filiformis V.f6+2PEA LPS; 4, B. pertussis 1414 LPS; 5, P. aeruginosa serotype O6 LPS. One-tenth of a microgram of each LPS was loaded per well for the SDS-PAGE electrophoresis. B: 1, B. pertussis 1414 LPS; 2, E. coli J5; 3, V. filiformis V.f5-6; 4, V. filiformis V.f6+2PEA. Twenty micrograms were deposited for HPTLC migration.

    Article Snippet: E. coli J5 (ATCC® 43745 TM ) was cultured in lysogeny broth at 37°C overnight in our laboratory.

    Techniques: Purification, SDS Page, High Performance Thin Layer Chromatography, Electrophoresis, Migration

    Lipid A structures of the major molecular species present in the purified LPS samples. The structures presented with the corresponding MWT given masses correspond to published data for all LPSs. The dashed lines indicate elements missing in the structures for each LPS sample used in this paper and corresponding to MWS. E. coli J5 (A), H. influenzae (B), R. gelatinosa (C), P. aeruginosa (D), N. meningitis (E), B. pertussis 1414 (F), B. pertussis 18-323 (G), V. filiformis V.f5-6 (H), V. filiformis V.f6+2PEA (I).

    Journal: Journal of Lipid Research

    Article Title: Structural and biological characteristics of different forms of V. filiformis lipid A: use of MS to highlight structural discrepancies

    doi: 10.1194/jlr.M072900

    Figure Lengend Snippet: Lipid A structures of the major molecular species present in the purified LPS samples. The structures presented with the corresponding MWT given masses correspond to published data for all LPSs. The dashed lines indicate elements missing in the structures for each LPS sample used in this paper and corresponding to MWS. E. coli J5 (A), H. influenzae (B), R. gelatinosa (C), P. aeruginosa (D), N. meningitis (E), B. pertussis 1414 (F), B. pertussis 18-323 (G), V. filiformis V.f5-6 (H), V. filiformis V.f6+2PEA (I).

    Article Snippet: E. coli J5 (ATCC® 43745 TM ) was cultured in lysogeny broth at 37°C overnight in our laboratory.

    Techniques: Purification

    ROS production and caspase 3/7 activation induced by LPS stimulation. Cell viability (A) and caspase 3/7 activation (B) were assessed after 24 h THP-1 stimulation. C: ROS production by THP-1 cells after 1 h stimulation. N-acetyl-l-cysteine was used to inhibit ROS production in E. coli J5 stimulation. *P < 0.05 compared to no LPS.

    Journal: Journal of Lipid Research

    Article Title: Structural and biological characteristics of different forms of V. filiformis lipid A: use of MS to highlight structural discrepancies

    doi: 10.1194/jlr.M072900

    Figure Lengend Snippet: ROS production and caspase 3/7 activation induced by LPS stimulation. Cell viability (A) and caspase 3/7 activation (B) were assessed after 24 h THP-1 stimulation. C: ROS production by THP-1 cells after 1 h stimulation. N-acetyl-l-cysteine was used to inhibit ROS production in E. coli J5 stimulation. *P < 0.05 compared to no LPS.

    Article Snippet: E. coli J5 (ATCC® 43745 TM ) was cultured in lysogeny broth at 37°C overnight in our laboratory.

    Techniques: Activation Assay