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Publication Year
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  • Kalb, Suzanne R. (29)
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Resource Type General
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  • Proposed BoNTA and B Peptide Substrates Cannot Detect Multiple Subtypes in the EndopepMS Assay
    Proposed BoNT/A and /B Peptide Substrates Cannot Detect Multiple Subtypes in the Endopep-MS Assay
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  • Enhanced detection of type C botulinum neurotoxin by the EndopepMS assay through optimization of peptide substrates
    Enhanced detection of type C botulinum neurotoxin by the Endopep-MS assay through optimization of peptide substrates
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  • Mass Spectrometric Detection of Bacterial Protein Toxins and Their Enzymatic Activity
    Mass Spectrometric Detection of Bacterial Protein Toxins and Their Enzymatic Activity
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  • Recommended Mass SpectrometryBased Strategies to Identify Botulinum NeurotoxinContaining Samples
    Recommended Mass Spectrometry-Based Strategies to Identify Botulinum Neurotoxin-Containing Samples
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  • Recommended Mass SpectrometryBased Strategies to Identify RicinContaining Samples
    Recommended Mass Spectrometry-Based Strategies to Identify Ricin-Containing Samples
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  • Purification and Characterization of Botulinum Neurotoxin FA from a Genetically Modified Clostridium botulinum Strain
    Purification and Characterization of Botulinum Neurotoxin FA from a Genetically Modified Clostridium botulinum Strain
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  • Detection of the HA33 protein in botulinum neurotoxin type G complex by mass spectrometry
    Detection of the HA-33 protein in botulinum neurotoxin type G complex by mass spectrometry
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  • Optimization of peptide substrates for botulinum neurotoxin E improves detection sensitivity in the EndopepMS assay
    Optimization of peptide substrates for botulinum neurotoxin E improves detection sensitivity in the Endopep-MS assay
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  • Comparison of the Catalytic Properties of the Botulinum Neurotoxin subtypes A1 and A5
    Comparison of the Catalytic Properties of the Botulinum Neurotoxin subtypes A1 and A5
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  • De novo subtype and strain identification of botulinum neurotoxin type B through toxin proteomics
    De novo subtype and strain identification of botulinum neurotoxin type B through toxin proteomics
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  • Validation of the EndopepMS method for qualitative detection of active botulinum neurotoxins in human and chicken serum
    Validation of the Endopep-MS method for qualitative detection of active botulinum neurotoxins in human and chicken serum
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  • A Twostage Multiplex Method for Quantitative Analysis of Botulinum Neurotoxin type A B E and F by MALDITOF Mass Spectrometry
    A Two-stage Multiplex Method for Quantitative Analysis of Botulinum Neurotoxin type A, B, E, and F by MALDI-TOF Mass Spectrometry
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  • Subtyping Botulinum Neurotoxins by Sequential Multiple Endoproteases Ingel Digestion Coupled with Mass Spectrometry
    Subtyping Botulinum Neurotoxins by Sequential Multiple Endoproteases In-gel Digestion Coupled with Mass Spectrometry
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  • Botulinum Neurotoxin Detection and Differentiation by Mass Spectrometry
    Botulinum Neurotoxin Detection and Differentiation by Mass Spectrometry
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  • Mass Spectrometric Identification and Differentiation of Botulinum Neurotoxins through Toxin Proteomics
    Mass Spectrometric Identification and Differentiation of Botulinum Neurotoxins through Toxin Proteomics
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  • Detection of Botulinum Toxins A B E and F in Foods by EndopepMS
    Detection of Botulinum Toxins A, B, E, and F in Foods by Endopep-MS
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  • Improved Sensitivity for the Qualitative and Quantitative Analysis of Active Ricin by MALDITOF Mass Spectrometry
    Improved Sensitivity for the Qualitative and Quantitative Analysis of Active Ricin by MALDI-TOF Mass Spectrometry
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  • Clostridium botulinum strain Af84 produces three enzymatically active neurotoxins BoNTA2 BoNTF4 and BoNTF5
    Clostridium botulinum strain Af84 produces three enzymatically active neurotoxins: BoNT/A2, BoNT/F4, and BoNT/F5
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  • Functional Characterization of Botulinum Neurotoxin Serotype H as a Hybrid of Known Serotypes F and A BoNT FA
    Functional Characterization of Botulinum Neurotoxin Serotype H as a Hybrid of Known Serotypes F and A (BoNT F/A)
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  • Extraction and Inhibition of Enzymatic Activity of Botulinum NeurotoxinsA1 A2 and A3 by a Panel of Monoclonal AntiBoNTA Antibodies
    Extraction and Inhibition of Enzymatic Activity of Botulinum Neurotoxins/A1, /A2, and /A3 by a Panel of Monoclonal Anti-BoNT/A Antibodies
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