pepperchip ® infectious disease epitope microarray Search Results


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PEPperPRINT gmbh pepperchip® infectious disease epitope microarray
High throughput analyses of reactivity of bat antibodies. a . Plots depicting the mean fluorescence intensity of the raw signal from <t>microarray</t> chips. Each spot indicates the binding intensity of bat antibodies to a single peptide. b . Heat-map of MFI values obtained after subtraction of the background. Each line in the graph represents the reactivity to a single peptide in the array. Statistical analyses were performed by a Wilcoxon two-tailed test to compare the mean antibody binding reactivity for the indicated conditions. c . Plots depicting the values of Z scores. The dashed gray lines correspond to Z score of 2, which is considered as a threshold of significance. Each dot in the plots corresponds to the Z score of antibody reactivity to a single peptide. d . Heat map and hierarchical clustering of Z scores depicting the reactivity of bat antibodies to peptides in microarrays. Each column in the heat maps displays the binding intensity of a single peptide. The average of each column in the map is always equal to 0. The map distinguished six clusters of peptides.
Pepperchip® Infectious Disease Epitope Microarray, supplied by PEPperPRINT gmbh, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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PEPperPRINT gmbh pepperchip autoimmune epitope microarray
High throughput analyses of reactivity of bat antibodies. a . Plots depicting the mean fluorescence intensity of the raw signal from <t>microarray</t> chips. Each spot indicates the binding intensity of bat antibodies to a single peptide. b . Heat-map of MFI values obtained after subtraction of the background. Each line in the graph represents the reactivity to a single peptide in the array. Statistical analyses were performed by a Wilcoxon two-tailed test to compare the mean antibody binding reactivity for the indicated conditions. c . Plots depicting the values of Z scores. The dashed gray lines correspond to Z score of 2, which is considered as a threshold of significance. Each dot in the plots corresponds to the Z score of antibody reactivity to a single peptide. d . Heat map and hierarchical clustering of Z scores depicting the reactivity of bat antibodies to peptides in microarrays. Each column in the heat maps displays the binding intensity of a single peptide. The average of each column in the map is always equal to 0. The map distinguished six clusters of peptides.
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PEPperPRINT gmbh pepperchip® human epitome microarray
High throughput analyses of reactivity of bat antibodies. a . Plots depicting the mean fluorescence intensity of the raw signal from <t>microarray</t> chips. Each spot indicates the binding intensity of bat antibodies to a single peptide. b . Heat-map of MFI values obtained after subtraction of the background. Each line in the graph represents the reactivity to a single peptide in the array. Statistical analyses were performed by a Wilcoxon two-tailed test to compare the mean antibody binding reactivity for the indicated conditions. c . Plots depicting the values of Z scores. The dashed gray lines correspond to Z score of 2, which is considered as a threshold of significance. Each dot in the plots corresponds to the Z score of antibody reactivity to a single peptide. d . Heat map and hierarchical clustering of Z scores depicting the reactivity of bat antibodies to peptides in microarrays. Each column in the heat maps displays the binding intensity of a single peptide. The average of each column in the map is always equal to 0. The map distinguished six clusters of peptides.
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Mimotopes pepperchip human epitome microarray
High throughput analyses of reactivity of bat antibodies. a . Plots depicting the mean fluorescence intensity of the raw signal from <t>microarray</t> chips. Each spot indicates the binding intensity of bat antibodies to a single peptide. b . Heat-map of MFI values obtained after subtraction of the background. Each line in the graph represents the reactivity to a single peptide in the array. Statistical analyses were performed by a Wilcoxon two-tailed test to compare the mean antibody binding reactivity for the indicated conditions. c . Plots depicting the values of Z scores. The dashed gray lines correspond to Z score of 2, which is considered as a threshold of significance. Each dot in the plots corresponds to the Z score of antibody reactivity to a single peptide. d . Heat map and hierarchical clustering of Z scores depicting the reactivity of bat antibodies to peptides in microarrays. Each column in the heat maps displays the binding intensity of a single peptide. The average of each column in the map is always equal to 0. The map distinguished six clusters of peptides.
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Abnova peptide microarray for epitope mapping
High throughput analyses of reactivity of bat antibodies. a . Plots depicting the mean fluorescence intensity of the raw signal from <t>microarray</t> chips. Each spot indicates the binding intensity of bat antibodies to a single peptide. b . Heat-map of MFI values obtained after subtraction of the background. Each line in the graph represents the reactivity to a single peptide in the array. Statistical analyses were performed by a Wilcoxon two-tailed test to compare the mean antibody binding reactivity for the indicated conditions. c . Plots depicting the values of Z scores. The dashed gray lines correspond to Z score of 2, which is considered as a threshold of significance. Each dot in the plots corresponds to the Z score of antibody reactivity to a single peptide. d . Heat map and hierarchical clustering of Z scores depicting the reactivity of bat antibodies to peptides in microarrays. Each column in the heat maps displays the binding intensity of a single peptide. The average of each column in the map is always equal to 0. The map distinguished six clusters of peptides.
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PEPperPRINT gmbh pepperprint epitope microarray
High throughput analyses of reactivity of bat antibodies. a . Plots depicting the mean fluorescence intensity of the raw signal from <t>microarray</t> chips. Each spot indicates the binding intensity of bat antibodies to a single peptide. b . Heat-map of MFI values obtained after subtraction of the background. Each line in the graph represents the reactivity to a single peptide in the array. Statistical analyses were performed by a Wilcoxon two-tailed test to compare the mean antibody binding reactivity for the indicated conditions. c . Plots depicting the values of Z scores. The dashed gray lines correspond to Z score of 2, which is considered as a threshold of significance. Each dot in the plots corresponds to the Z score of antibody reactivity to a single peptide. d . Heat map and hierarchical clustering of Z scores depicting the reactivity of bat antibodies to peptides in microarrays. Each column in the heat maps displays the binding intensity of a single peptide. The average of each column in the map is always equal to 0. The map distinguished six clusters of peptides.
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PEPperPRINT gmbh peppermap® (peptide microarrays) linear epitope mapping
High throughput analyses of reactivity of bat antibodies. a . Plots depicting the mean fluorescence intensity of the raw signal from <t>microarray</t> chips. Each spot indicates the binding intensity of bat antibodies to a single peptide. b . Heat-map of MFI values obtained after subtraction of the background. Each line in the graph represents the reactivity to a single peptide in the array. Statistical analyses were performed by a Wilcoxon two-tailed test to compare the mean antibody binding reactivity for the indicated conditions. c . Plots depicting the values of Z scores. The dashed gray lines correspond to Z score of 2, which is considered as a threshold of significance. Each dot in the plots corresponds to the Z score of antibody reactivity to a single peptide. d . Heat map and hierarchical clustering of Z scores depicting the reactivity of bat antibodies to peptides in microarrays. Each column in the heat maps displays the binding intensity of a single peptide. The average of each column in the map is always equal to 0. The map distinguished six clusters of peptides.
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PEPperPRINT gmbh epitope microarrays
High throughput analyses of reactivity of bat antibodies. a . Plots depicting the mean fluorescence intensity of the raw signal from <t>microarray</t> chips. Each spot indicates the binding intensity of bat antibodies to a single peptide. b . Heat-map of MFI values obtained after subtraction of the background. Each line in the graph represents the reactivity to a single peptide in the array. Statistical analyses were performed by a Wilcoxon two-tailed test to compare the mean antibody binding reactivity for the indicated conditions. c . Plots depicting the values of Z scores. The dashed gray lines correspond to Z score of 2, which is considered as a threshold of significance. Each dot in the plots corresponds to the Z score of antibody reactivity to a single peptide. d . Heat map and hierarchical clustering of Z scores depicting the reactivity of bat antibodies to peptides in microarrays. Each column in the heat maps displays the binding intensity of a single peptide. The average of each column in the map is always equal to 0. The map distinguished six clusters of peptides.
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Filgen Inc peptide microarray f-pepcem-3
High throughput analyses of reactivity of bat antibodies. a . Plots depicting the mean fluorescence intensity of the raw signal from <t>microarray</t> chips. Each spot indicates the binding intensity of bat antibodies to a single peptide. b . Heat-map of MFI values obtained after subtraction of the background. Each line in the graph represents the reactivity to a single peptide in the array. Statistical analyses were performed by a Wilcoxon two-tailed test to compare the mean antibody binding reactivity for the indicated conditions. c . Plots depicting the values of Z scores. The dashed gray lines correspond to Z score of 2, which is considered as a threshold of significance. Each dot in the plots corresponds to the Z score of antibody reactivity to a single peptide. d . Heat map and hierarchical clustering of Z scores depicting the reactivity of bat antibodies to peptides in microarrays. Each column in the heat maps displays the binding intensity of a single peptide. The average of each column in the map is always equal to 0. The map distinguished six clusters of peptides.
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JPT Peptide Technologies GmbH peptide microarrays
High throughput analyses of reactivity of bat antibodies. a . Plots depicting the mean fluorescence intensity of the raw signal from <t>microarray</t> chips. Each spot indicates the binding intensity of bat antibodies to a single peptide. b . Heat-map of MFI values obtained after subtraction of the background. Each line in the graph represents the reactivity to a single peptide in the array. Statistical analyses were performed by a Wilcoxon two-tailed test to compare the mean antibody binding reactivity for the indicated conditions. c . Plots depicting the values of Z scores. The dashed gray lines correspond to Z score of 2, which is considered as a threshold of significance. Each dot in the plots corresponds to the Z score of antibody reactivity to a single peptide. d . Heat map and hierarchical clustering of Z scores depicting the reactivity of bat antibodies to peptides in microarrays. Each column in the heat maps displays the binding intensity of a single peptide. The average of each column in the map is always equal to 0. The map distinguished six clusters of peptides.
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PEPperPRINT gmbh fine epitope mapping
High throughput analyses of reactivity of bat antibodies. a . Plots depicting the mean fluorescence intensity of the raw signal from <t>microarray</t> chips. Each spot indicates the binding intensity of bat antibodies to a single peptide. b . Heat-map of MFI values obtained after subtraction of the background. Each line in the graph represents the reactivity to a single peptide in the array. Statistical analyses were performed by a Wilcoxon two-tailed test to compare the mean antibody binding reactivity for the indicated conditions. c . Plots depicting the values of Z scores. The dashed gray lines correspond to Z score of 2, which is considered as a threshold of significance. Each dot in the plots corresponds to the Z score of antibody reactivity to a single peptide. d . Heat map and hierarchical clustering of Z scores depicting the reactivity of bat antibodies to peptides in microarrays. Each column in the heat maps displays the binding intensity of a single peptide. The average of each column in the map is always equal to 0. The map distinguished six clusters of peptides.
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PEPperPRINT gmbh peptide microarray
High throughput analyses of reactivity of bat antibodies. a . Plots depicting the mean fluorescence intensity of the raw signal from <t>microarray</t> chips. Each spot indicates the binding intensity of bat antibodies to a single peptide. b . Heat-map of MFI values obtained after subtraction of the background. Each line in the graph represents the reactivity to a single peptide in the array. Statistical analyses were performed by a Wilcoxon two-tailed test to compare the mean antibody binding reactivity for the indicated conditions. c . Plots depicting the values of Z scores. The dashed gray lines correspond to Z score of 2, which is considered as a threshold of significance. Each dot in the plots corresponds to the Z score of antibody reactivity to a single peptide. d . Heat map and hierarchical clustering of Z scores depicting the reactivity of bat antibodies to peptides in microarrays. Each column in the heat maps displays the binding intensity of a single peptide. The average of each column in the map is always equal to 0. The map distinguished six clusters of peptides.
Peptide Microarray, supplied by PEPperPRINT gmbh, used in various techniques. Bioz Stars score: 90/100, based on 1 PubMed citations. ZERO BIAS - scores, article reviews, protocol conditions and more
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Image Search Results


High throughput analyses of reactivity of bat antibodies. a . Plots depicting the mean fluorescence intensity of the raw signal from microarray chips. Each spot indicates the binding intensity of bat antibodies to a single peptide. b . Heat-map of MFI values obtained after subtraction of the background. Each line in the graph represents the reactivity to a single peptide in the array. Statistical analyses were performed by a Wilcoxon two-tailed test to compare the mean antibody binding reactivity for the indicated conditions. c . Plots depicting the values of Z scores. The dashed gray lines correspond to Z score of 2, which is considered as a threshold of significance. Each dot in the plots corresponds to the Z score of antibody reactivity to a single peptide. d . Heat map and hierarchical clustering of Z scores depicting the reactivity of bat antibodies to peptides in microarrays. Each column in the heat maps displays the binding intensity of a single peptide. The average of each column in the map is always equal to 0. The map distinguished six clusters of peptides.

Journal: bioRxiv

Article Title: An integrative approach for profiling antibody responses in bats to human pathogens

doi: 10.1101/2024.11.29.626104

Figure Lengend Snippet: High throughput analyses of reactivity of bat antibodies. a . Plots depicting the mean fluorescence intensity of the raw signal from microarray chips. Each spot indicates the binding intensity of bat antibodies to a single peptide. b . Heat-map of MFI values obtained after subtraction of the background. Each line in the graph represents the reactivity to a single peptide in the array. Statistical analyses were performed by a Wilcoxon two-tailed test to compare the mean antibody binding reactivity for the indicated conditions. c . Plots depicting the values of Z scores. The dashed gray lines correspond to Z score of 2, which is considered as a threshold of significance. Each dot in the plots corresponds to the Z score of antibody reactivity to a single peptide. d . Heat map and hierarchical clustering of Z scores depicting the reactivity of bat antibodies to peptides in microarrays. Each column in the heat maps displays the binding intensity of a single peptide. The average of each column in the map is always equal to 0. The map distinguished six clusters of peptides.

Article Snippet: The PEPperCHIP® Infectious Disease Epitope Microarray (PEPperPRINT GmbH, Heidelberg, Germany) presents over 3,700 linear B-cell epitopes derived from 196 human pathogens.

Techniques: High Throughput Screening Assay, Fluorescence, Microarray, Binding Assay, Two Tailed Test